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Legacy flatfile-incompatible PDB entries - Protein Data Bank Japan

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Search</a><a title="PDBj Omni Search Help" href="/help/omni-search">Search help</a></div></div></header><div><main id=""><div class="sNP"><a title="Legacy flatfile-incompatible PDB entries" href="/help/large-structures" target="mD_*">Legacy flatfile-incompatible PDB entries</a><div id="SEARCH_pdb"><table><tbody><tr><td><a href="/mine/summary/1bos">1BOS</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/bo/1bos.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%201bos;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/1bos"><img alt="BU of 1bos by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/1bos"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/1bos">SHIGA-LIKE TOXIN COMPLEXED WITH ITS RECEPTOR</a></td></tr><tr><td>Descriptor: </td><td>SHIGA-LIKE TOXIN I B SUBUNIT, alpha-D-galactopyranose-(1-4)-beta-D-galactopyranose, alpha-D-galactopyranose-(1-4)-beta-D-galactopyranose-(1-4)-beta-D-glucopyranose, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Ling,%20H%22">Ling, H</a>, <a href="/search/pdb?d_authors=%22Boodhoo,%20A%22"> Boodhoo, A</a>, <a href="/search/pdb?d_authors=%22Hazes,%20B%22"> Hazes, B</a>, <a href="/search/pdb?d_authors=%22Cummings,%20M.D%22"> Cummings, M.D</a>, <a href="/search/pdb?d_authors=%22Armstrong,%20G.D%22"> Armstrong, G.D</a>, <a href="/search/pdb?d_authors=%22Brunton,%20J.L%22"> Brunton, J.L</a>, <a href="/search/pdb?d_authors=%22Read,%20R.J.%22"> Read, R.J.</a></td></tr><tr><td>Deposit date:</td><td>1998-01-13</td></tr><tr><td>Release date:</td><td>1999-02-02</td></tr><tr><td>Last modified:</td><td>2024-11-06</td></tr><tr><td>Method:</td><td>X-RAY DIFFRACTION (2.8 Å)</td></tr><tr><td>Cite:</td><td><b>Structure of the shiga-like toxin I B-pentamer complexed with an analogue of its receptor Gb3.</b><br>Biochemistry, 37, 1998<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/1vvj">1VVJ</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/vv/1vvj.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%201vvj;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/1vvj"><img alt="BU of 1vvj by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/1vvj"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/1vvj">Crystal Structure of Frameshift Suppressor tRNA SufA6 bound to Codon CCC-G on the Ribosome</a></td></tr><tr><td>Descriptor: </td><td>16S rRNA, 23S rRNA, 30S ribosomal protein S10, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Maehigashi,%20T%22">Maehigashi, T</a>, <a href="/search/pdb?d_authors=%22Dunkle,%20J.A%22"> Dunkle, J.A</a>, <a href="/search/pdb?d_authors=%22Dunham,%20C.M.%22"> Dunham, C.M.</a></td></tr><tr><td>Deposit date:</td><td>2013-05-24</td></tr><tr><td>Release date:</td><td>2014-08-06</td></tr><tr><td>Last modified:</td><td>2024-11-13</td></tr><tr><td>Method:</td><td>X-RAY DIFFRACTION (3.44000111574 Å)</td></tr><tr><td>Cite:</td><td><b>Structural insights into +1 frameshifting promoted by expanded or modification-deficient anticodon stem loops.</b><br>Proc.Natl.Acad.Sci.USA, 111, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/1vy4">1VY4</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/vy/1vy4.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%201vy4;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/1vy4"><img alt="BU of 1vy4 by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/1vy4"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/1vy4">Crystal structure of the Thermus thermophilus 70S ribosome in the pre-attack state of peptide bond formation containing acylated tRNA-substrates in the A and P sites.</a></td></tr><tr><td>Descriptor: </td><td>16S Ribosomal RNA, 23S Ribosomal RNA, 30S ribosomal protein S10, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Polikanov,%20Y.S%22">Polikanov, Y.S</a>, <a href="/search/pdb?d_authors=%22Steitz,%20T.A%22"> Steitz, T.A</a>, <a href="/search/pdb?d_authors=%22Innis,%20C.A.%22"> Innis, C.A.</a></td></tr><tr><td>Deposit date:</td><td>2014-05-13</td></tr><tr><td>Release date:</td><td>2014-08-20</td></tr><tr><td>Last modified:</td><td>2023-12-27</td></tr><tr><td>Method:</td><td>X-RAY DIFFRACTION (2.6 Å)</td></tr><tr><td>Cite:</td><td><b>A proton wire to couple aminoacyl-tRNA accommodation and peptide-bond formation on the ribosome.</b><br>Nat.Struct.Mol.Biol., 21, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/1vy5">1VY5</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/vy/1vy5.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%201vy5;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/1vy5"><img alt="BU of 1vy5 by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/1vy5"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/1vy5">Crystal structure of the Thermus thermophilus 70S ribosome in the post-catalysis state of peptide bond formation containing dipeptydil-tRNA in the A site and deacylated tRNA in the P site.</a></td></tr><tr><td>Descriptor: </td><td>16S Ribosomal RNA, 23S Ribosomal RNA, 30S ribosomal protein S10, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Polikanov,%20Y.S%22">Polikanov, Y.S</a>, <a href="/search/pdb?d_authors=%22Steitz,%20T.A%22"> Steitz, T.A</a>, <a href="/search/pdb?d_authors=%22Innis,%20C.A.%22"> Innis, C.A.</a></td></tr><tr><td>Deposit date:</td><td>2014-05-13</td></tr><tr><td>Release date:</td><td>2014-08-20</td></tr><tr><td>Last modified:</td><td>2023-12-27</td></tr><tr><td>Method:</td><td>X-RAY DIFFRACTION (2.55 Å)</td></tr><tr><td>Cite:</td><td><b>A proton wire to couple aminoacyl-tRNA accommodation and peptide-bond formation on the ribosome.</b><br>Nat.Struct.Mol.Biol., 21, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/1vy6">1VY6</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/vy/1vy6.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%201vy6;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/1vy6"><img alt="BU of 1vy6 by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/1vy6"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/1vy6">Crystal structure of the Thermus thermophilus 70S ribosome in the pre-attack state of peptide bond formation containing short substrate-mimic Cytidine-Puromycin in the A site and acylated tRNA in the P site.</a></td></tr><tr><td>Descriptor: </td><td>16S Ribosomal RNA, 23S Ribosomal RNA, 30S ribosomal protein S10, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Polikanov,%20Y.S%22">Polikanov, Y.S</a>, <a href="/search/pdb?d_authors=%22Steitz,%20T.A%22"> Steitz, T.A</a>, <a href="/search/pdb?d_authors=%22Innis,%20C.A.%22"> Innis, C.A.</a></td></tr><tr><td>Deposit date:</td><td>2014-05-13</td></tr><tr><td>Release date:</td><td>2014-08-20</td></tr><tr><td>Last modified:</td><td>2023-12-27</td></tr><tr><td>Method:</td><td>X-RAY DIFFRACTION (2.9 Å)</td></tr><tr><td>Cite:</td><td><b>A proton wire to couple aminoacyl-tRNA accommodation and peptide-bond formation on the ribosome.</b><br>Nat.Struct.Mol.Biol., 21, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/1vy7">1VY7</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/vy/1vy7.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%201vy7;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/1vy7"><img alt="BU of 1vy7 by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/1vy7"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/1vy7">Crystal structure of the Thermus thermophilus 70S ribosome in the pre-attack state of peptide bond formation containing short substrate-mimic Cytidine-Cytidine-Puromycin in the A site and acylated tRNA in the P site.</a></td></tr><tr><td>Descriptor: </td><td>16S Ribosomal RNA, 23S Ribosomal RNA, 30S ribosomal protein S10, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Polikanov,%20Y.S%22">Polikanov, Y.S</a>, <a href="/search/pdb?d_authors=%22Steitz,%20T.A%22"> Steitz, T.A</a>, <a href="/search/pdb?d_authors=%22Innis,%20C.A.%22"> Innis, C.A.</a></td></tr><tr><td>Deposit date:</td><td>2014-05-13</td></tr><tr><td>Release date:</td><td>2014-08-20</td></tr><tr><td>Last modified:</td><td>2024-11-13</td></tr><tr><td>Method:</td><td>X-RAY DIFFRACTION (2.8 Å)</td></tr><tr><td>Cite:</td><td><b>A proton wire to couple aminoacyl-tRNA accommodation and peptide-bond formation on the ribosome.</b><br>Nat.Struct.Mol.Biol., 21, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/2btj">2BTJ</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/bt/2btj.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%202btj;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/2btj"><img alt="BU of 2btj by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/2btj"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/2btj">Fluorescent Protein EosFP - red form</a></td></tr><tr><td>Descriptor: </td><td>Green to red photoconvertible GFP-like protein EosFP</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Nar,%20H%22">Nar, H</a>, <a href="/search/pdb?d_authors=%22Nienhaus,%20K%22"> Nienhaus, K</a>, <a href="/search/pdb?d_authors=%22Wiedenmann,%20J%22"> Wiedenmann, J</a>, <a href="/search/pdb?d_authors=%22Nienhaus,%20G.U.%22"> Nienhaus, G.U.</a></td></tr><tr><td>Deposit date:</td><td>2005-06-01</td></tr><tr><td>Release date:</td><td>2005-06-23</td></tr><tr><td>Last modified:</td><td>2023-12-13</td></tr><tr><td>Method:</td><td>X-RAY DIFFRACTION (2 Å)</td></tr><tr><td>Cite:</td><td><b>Structural Basis for Photo-Induced Protein Cleavage and Green-to-Red Conversion of Fluorescent Protein Eosfp.</b><br>Proc.Natl.Acad.Sci.USA, 102, 2005<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/2n6z">2N6Z</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/n6/2n6z.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%202n6z;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/2n6z"><img alt="BU of 2n6z by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/2n6z"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/2n6z">Solution structure of the salicylate-loaded ArCP from yersiniabactin synthetase</a></td></tr><tr><td>Descriptor: </td><td>HMWP2 nonribosomal peptide synthetase, S-{2-[(N-{(2R)-2-hydroxy-3,3-dimethyl-4-[(trihydroxy-lambda~5~-phosphanyl)oxy]butanoyl}-beta-alanyl)amino]ethyl} 2-hydroxybenzene-1-carbothioate</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Goodrich,%20A.C%22">Goodrich, A.C</a>, <a href="/search/pdb?d_authors=%22Harden,%20B.J%22"> Harden, B.J</a>, <a href="/search/pdb?d_authors=%22Frueh,%20D.P.%22"> Frueh, D.P.</a></td></tr><tr><td>Deposit date:</td><td>2015-08-31</td></tr><tr><td>Release date:</td><td>2015-09-23</td></tr><tr><td>Last modified:</td><td>2024-10-30</td></tr><tr><td>Method:</td><td>SOLUTION NMR</td></tr><tr><td>Cite:</td><td><b>Solution Structure of a Nonribosomal Peptide Synthetase Carrier Protein Loaded with Its Substrate Reveals Transient, Well-Defined Contacts.</b><br>J.Am.Chem.Soc., 137, 2015<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/2vvj">2VVJ</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/vv/2vvj.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%202vvj;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/2vvj"><img alt="BU of 2vvj by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/2vvj"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/2vvj">IrisFP fluorescent protein in its red form, cis conformation</a></td></tr><tr><td>Descriptor: </td><td>Green to red photoconvertible GFP-like protein EosFP, SULFATE ION, SULFITE ION</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Adam,%20V%22">Adam, V</a>, <a href="/search/pdb?d_authors=%22Lelimousin,%20M%22"> Lelimousin, M</a>, <a href="/search/pdb?d_authors=%22Boehme,%20S%22"> Boehme, S</a>, <a href="/search/pdb?d_authors=%22Desfonds,%20G%22"> Desfonds, G</a>, <a href="/search/pdb?d_authors=%22Nienhaus,%20K%22"> Nienhaus, K</a>, <a href="/search/pdb?d_authors=%22Field,%20M.J%22"> Field, M.J</a>, <a href="/search/pdb?d_authors=%22Wiedenmann,%20J%22"> Wiedenmann, J</a>, <a href="/search/pdb?d_authors=%22McSweeney,%20S%22"> McSweeney, S</a>, <a href="/search/pdb?d_authors=%22Nienhaus,%20G.U%22"> Nienhaus, G.U</a>, <a href="/search/pdb?d_authors=%22Bourgeois,%20D.%22"> Bourgeois, D.</a></td></tr><tr><td>Deposit date:</td><td>2008-06-09</td></tr><tr><td>Release date:</td><td>2008-08-12</td></tr><tr><td>Last modified:</td><td>2023-12-13</td></tr><tr><td>Method:</td><td>X-RAY DIFFRACTION (2 Å)</td></tr><tr><td>Cite:</td><td><b>Structural Characterization of Irisfp, an Optical Highlighter Undergoing Multiple Photo-Induced Transformations.</b><br>Proc.Natl.Acad.Sci.USA, 105, 2008<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3bcr">3BCR</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/bc/3bcr.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203bcr;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3bcr"><img alt="BU of 3bcr by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3bcr"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3bcr">Glycogen Phosphorylase b in complex with AZT</a></td></tr><tr><td>Descriptor: </td><td>3'-azido-3'-deoxythymidine, Glycogen phosphorylase, muscle form</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Sovantzis,%20D.A%22">Sovantzis, D.A</a>, <a href="/search/pdb?d_authors=%22Hadjiloi,%20T%22"> Hadjiloi, T</a>, <a href="/search/pdb?d_authors=%22Hayes,%20J.M%22"> Hayes, J.M</a>, <a href="/search/pdb?d_authors=%22Zographos,%20S.E%22"> Zographos, S.E</a>, <a href="/search/pdb?d_authors=%22Chrysina,%20E.D%22"> Chrysina, E.D</a>, <a href="/search/pdb?d_authors=%22Oikonomakos,%20N.G.%22"> Oikonomakos, N.G.</a></td></tr><tr><td>Deposit date:</td><td>2007-11-13</td></tr><tr><td>Release date:</td><td>2008-11-18</td></tr><tr><td>Last modified:</td><td>2023-11-15</td></tr><tr><td>Method:</td><td>X-RAY DIFFRACTION (2.14 Å)</td></tr><tr><td>Cite:</td><td><b>D-Glucopyranosyl pyrimidine nucleoside binding to muscle glycogen phosphorylase b</b><br>To be Published<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j3q">3J3Q</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j3/3j3q.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j3q;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j3q"><img alt="BU of 3j3q by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j3q"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j3q">Atomic-level structure of the entire HIV-1 capsid</a></td></tr><tr><td>Descriptor: </td><td>capsid protein</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Perilla,%20J.R%22">Perilla, J.R</a>, <a href="/search/pdb?d_authors=%22Zhao,%20G%22"> Zhao, G</a>, <a href="/search/pdb?d_authors=%22Zhang,%20P%22"> Zhang, P</a>, <a href="/search/pdb?d_authors=%22Schulten,%20K.J.%22"> Schulten, K.J.</a></td></tr><tr><td>Deposit date:</td><td>2013-04-12</td></tr><tr><td>Release date:</td><td>2013-05-29</td></tr><tr><td>Last modified:</td><td>2024-11-06</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY</td></tr><tr><td>Cite:</td><td><b>Mature HIV-1 capsid structure by cryo-electron microscopy and all-atom molecular dynamics.</b><br>Nature, 497, 2013<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j3y">3J3Y</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j3/3j3y.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j3y;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j3y"><img alt="BU of 3j3y by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j3y"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j3y">Atomic-level structure of the entire HIV-1 capsid (186 hexamers + 12 pentamers)</a></td></tr><tr><td>Descriptor: </td><td>capsid protein</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Perilla,%20J.R%22">Perilla, J.R</a>, <a href="/search/pdb?d_authors=%22Zhao,%20G%22"> Zhao, G</a>, <a href="/search/pdb?d_authors=%22Zhang,%20P%22"> Zhang, P</a>, <a href="/search/pdb?d_authors=%22Schulten,%20K.J.%22"> Schulten, K.J.</a></td></tr><tr><td>Deposit date:</td><td>2013-05-06</td></tr><tr><td>Release date:</td><td>2013-05-29</td></tr><tr><td>Last modified:</td><td>2024-11-06</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY</td></tr><tr><td>Cite:</td><td><b>Mature HIV-1 capsid structure by cryo-electron microscopy and all-atom molecular dynamics.</b><br>Nature, 497, 2013<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j6b">3J6B</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j6/3j6b.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j6b;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j6b"><img alt="BU of 3j6b by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j6b"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j6b">Structure of the yeast mitochondrial large ribosomal subunit</a></td></tr><tr><td>Descriptor: </td><td>21S ribosomal RNA, 54S ribosomal protein IMG1, mitochondrial, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Amunts,%20A%22">Amunts, A</a>, <a href="/search/pdb?d_authors=%22Brown,%20A%22"> Brown, A</a>, <a href="/search/pdb?d_authors=%22Bai,%20X.C%22"> Bai, X.C</a>, <a href="/search/pdb?d_authors=%22Llacer,%20J.L%22"> Llacer, J.L</a>, <a href="/search/pdb?d_authors=%22Hussain,%20T%22"> Hussain, T</a>, <a href="/search/pdb?d_authors=%22Emsley,%20P%22"> Emsley, P</a>, <a href="/search/pdb?d_authors=%22Long,%20F%22"> Long, F</a>, <a href="/search/pdb?d_authors=%22Murshudov,%20G%22"> Murshudov, G</a>, <a href="/search/pdb?d_authors=%22Scheres,%20S.H.W%22"> Scheres, S.H.W</a>, <a href="/search/pdb?d_authors=%22Ramakrishnan,%20V.%22"> Ramakrishnan, V.</a></td></tr><tr><td>Deposit date:</td><td>2014-01-22</td></tr><tr><td>Release date:</td><td>2014-04-09</td></tr><tr><td>Last modified:</td><td>2024-02-21</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY (3.2 Å)</td></tr><tr><td>Cite:</td><td><b>Structure of the yeast mitochondrial large ribosomal subunit.</b><br>Science, 343, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j6x">3J6X</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j6/3j6x.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j6x;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j6x"><img alt="BU of 3j6x by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j6x"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j6x">S. cerevisiae 80S ribosome bound with Taura syndrome virus (TSV) IRES, 5 degree rotation (Class II)</a></td></tr><tr><td>Descriptor: </td><td>18S ribosomal RNA, 25S ribosomal RNA, 40S ribosomal protein S0, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Koh,%20C.S%22">Koh, C.S</a>, <a href="/search/pdb?d_authors=%22Brilot,%20A.F%22"> Brilot, A.F</a>, <a href="/search/pdb?d_authors=%22Grigorieff,%20N%22"> Grigorieff, N</a>, <a href="/search/pdb?d_authors=%22Korostelev,%20A.A.%22"> Korostelev, A.A.</a></td></tr><tr><td>Deposit date:</td><td>2014-04-16</td></tr><tr><td>Release date:</td><td>2014-06-11</td></tr><tr><td>Last modified:</td><td>2024-02-21</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY (6.1 Å)</td></tr><tr><td>Cite:</td><td><b>Taura syndrome virus IRES initiates translation by binding its tRNA-mRNA-like structural element in the ribosomal decoding center.</b><br>Proc.Natl.Acad.Sci.USA, 111, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j6y">3J6Y</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j6/3j6y.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j6y;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j6y"><img alt="BU of 3j6y by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j6y"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j6y">S. cerevisiae 80S ribosome bound with Taura syndrome virus (TSV) IRES, 2 degree rotation (Class I)</a></td></tr><tr><td>Descriptor: </td><td>18S ribosomal RNA, 25S ribosomal RNA, 40S ribosomal protein S0, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Koh,%20C.S%22">Koh, C.S</a>, <a href="/search/pdb?d_authors=%22Brilot,%20A.F%22"> Brilot, A.F</a>, <a href="/search/pdb?d_authors=%22Grigorieff,%20N%22"> Grigorieff, N</a>, <a href="/search/pdb?d_authors=%22Korostelev,%20A.A.%22"> Korostelev, A.A.</a></td></tr><tr><td>Deposit date:</td><td>2014-04-16</td></tr><tr><td>Release date:</td><td>2014-06-11</td></tr><tr><td>Last modified:</td><td>2024-02-21</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY (6.1 Å)</td></tr><tr><td>Cite:</td><td><b>Taura syndrome virus IRES initiates translation by binding its tRNA-mRNA-like structural element in the ribosomal decoding center.</b><br>Proc.Natl.Acad.Sci.USA, 111, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j77">3J77</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j7/3j77.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j77;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j77"><img alt="BU of 3j77 by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j77"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j77">Structures of yeast 80S ribosome-tRNA complexes in the rotated and non-rotated conformations (Class II - rotated ribosome with 1 tRNA)</a></td></tr><tr><td>Descriptor: </td><td>18S ribosomal RNA, 25S ribosomal RNA, 40S ribosomal protein S0, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Svidritskiy,%20E%22">Svidritskiy, E</a>, <a href="/search/pdb?d_authors=%22Brilot,%20A.F%22"> Brilot, A.F</a>, <a href="/search/pdb?d_authors=%22Koh,%20C.S%22"> Koh, C.S</a>, <a href="/search/pdb?d_authors=%22Grigorieff,%20N%22"> Grigorieff, N</a>, <a href="/search/pdb?d_authors=%22Korostelev,%20A.A.%22"> Korostelev, A.A.</a></td></tr><tr><td>Deposit date:</td><td>2014-05-29</td></tr><tr><td>Release date:</td><td>2014-08-06</td></tr><tr><td>Last modified:</td><td>2024-02-21</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY (6.2 Å)</td></tr><tr><td>Cite:</td><td><b>Structures of Yeast 80S Ribosome-tRNA Complexes in the Rotated and Nonrotated Conformations.</b><br>Structure, 22, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j78">3J78</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j7/3j78.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j78;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j78"><img alt="BU of 3j78 by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j78"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j78">Structures of yeast 80S ribosome-tRNA complexes in the rotated and non-rotated conformations (Class I - non-rotated ribosome with 2 tRNAs)</a></td></tr><tr><td>Descriptor: </td><td>18S ribosomal RNA, 25S ribosomal RNA, 40S ribosomal protein S0, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Svidritskiy,%20E%22">Svidritskiy, E</a>, <a href="/search/pdb?d_authors=%22Brilot,%20A.F%22"> Brilot, A.F</a>, <a href="/search/pdb?d_authors=%22Koh,%20C.S%22"> Koh, C.S</a>, <a href="/search/pdb?d_authors=%22Grigorieff,%20N%22"> Grigorieff, N</a>, <a href="/search/pdb?d_authors=%22Korostelev,%20A.A.%22"> Korostelev, A.A.</a></td></tr><tr><td>Deposit date:</td><td>2014-05-29</td></tr><tr><td>Release date:</td><td>2014-08-06</td></tr><tr><td>Last modified:</td><td>2024-02-21</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY (6.3 Å)</td></tr><tr><td>Cite:</td><td><b>Structures of Yeast 80S Ribosome-tRNA Complexes in the Rotated and Nonrotated Conformations.</b><br>Structure, 22, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j79">3J79</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j7/3j79.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j79;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j79"><img alt="BU of 3j79 by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j79"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j79">Cryo-EM structure of the Plasmodium falciparum 80S ribosome bound to the anti-protozoan drug emetine, large subunit</a></td></tr><tr><td>Descriptor: </td><td>28S ribosomal RNA, 5.8S ribosomal RNA, 5S ribosomal RNA, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Wong,%20W%22">Wong, W</a>, <a href="/search/pdb?d_authors=%22Bai,%20X.C%22"> Bai, X.C</a>, <a href="/search/pdb?d_authors=%22Brown,%20A%22"> Brown, A</a>, <a href="/search/pdb?d_authors=%22Fernandez,%20I.S%22"> Fernandez, I.S</a>, <a href="/search/pdb?d_authors=%22Hanssen,%20E%22"> Hanssen, E</a>, <a href="/search/pdb?d_authors=%22Condron,%20M%22"> Condron, M</a>, <a href="/search/pdb?d_authors=%22Tan,%20Y.H%22"> Tan, Y.H</a>, <a href="/search/pdb?d_authors=%22Baum,%20J%22"> Baum, J</a>, <a href="/search/pdb?d_authors=%22Scheres,%20S.H.W.%22"> Scheres, S.H.W.</a></td></tr><tr><td>Deposit date:</td><td>2014-06-02</td></tr><tr><td>Release date:</td><td>2014-07-16</td></tr><tr><td>Last modified:</td><td>2024-02-21</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY (3.2 Å)</td></tr><tr><td>Cite:</td><td><b>Cryo-EM structure of the Plasmodium falciparum 80S ribosome bound to the anti-protozoan drug emetine.</b><br>Elife, 3, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j7o">3J7O</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j7/3j7o.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j7o;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j7o"><img alt="BU of 3j7o by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j7o"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j7o">Structure of the mammalian 60S ribosomal subunit</a></td></tr><tr><td>Descriptor: </td><td>28S ribosomal RNA, 5.8S ribosomal RNA, 5S ribosomal RNA, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Voorhees,%20R.M%22">Voorhees, R.M</a>, <a href="/search/pdb?d_authors=%22Fernandez,%20I.S%22"> Fernandez, I.S</a>, <a href="/search/pdb?d_authors=%22Scheres,%20S.H.W%22"> Scheres, S.H.W</a>, <a href="/search/pdb?d_authors=%22Hegde,%20R.S.%22"> Hegde, R.S.</a></td></tr><tr><td>Deposit date:</td><td>2014-08-01</td></tr><tr><td>Release date:</td><td>2014-09-03</td></tr><tr><td>Last modified:</td><td>2024-11-20</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY (3.4 Å)</td></tr><tr><td>Cite:</td><td><b>Structure of the Mammalian ribosome-sec61 complex to 3.4 a resolution.</b><br>Cell(Cambridge,Mass.), 157, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j7p">3J7P</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j7/3j7p.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j7p;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j7p"><img alt="BU of 3j7p by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j7p"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j7p">Structure of the 80S mammalian ribosome bound to eEF2</a></td></tr><tr><td>Descriptor: </td><td>18S ribosomal RNA, 28S ribosomal RNA, 5.8S ribosomal RNA, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Voorhees,%20R.M%22">Voorhees, R.M</a>, <a href="/search/pdb?d_authors=%22Fernandez,%20I.S%22"> Fernandez, I.S</a>, <a href="/search/pdb?d_authors=%22Scheres,%20S.H.W%22"> Scheres, S.H.W</a>, <a href="/search/pdb?d_authors=%22Hegde,%20R.S.%22"> Hegde, R.S.</a></td></tr><tr><td>Deposit date:</td><td>2014-08-01</td></tr><tr><td>Release date:</td><td>2014-09-03</td></tr><tr><td>Last modified:</td><td>2024-11-20</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY (3.5 Å)</td></tr><tr><td>Cite:</td><td><b>Structure of the Mammalian ribosome-sec61 complex to 3.4 a resolution.</b><br>Cell(Cambridge,Mass.), 157, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j7q">3J7Q</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j7/3j7q.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j7q;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j7q"><img alt="BU of 3j7q by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j7q"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j7q">Structure of the idle mammalian ribosome-Sec61 complex</a></td></tr><tr><td>Descriptor: </td><td>28S ribosomal RNA, 5.8S ribosomal RNA, 5S ribosomal RNA, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Voorhees,%20R.M%22">Voorhees, R.M</a>, <a href="/search/pdb?d_authors=%22Fernandez,%20I.S%22"> Fernandez, I.S</a>, <a href="/search/pdb?d_authors=%22Scheres,%20S.H.W%22"> Scheres, S.H.W</a>, <a href="/search/pdb?d_authors=%22Hegde,%20R.S.%22"> Hegde, R.S.</a></td></tr><tr><td>Deposit date:</td><td>2014-08-01</td></tr><tr><td>Release date:</td><td>2014-09-03</td></tr><tr><td>Last modified:</td><td>2024-10-16</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY (3.4 Å)</td></tr><tr><td>Cite:</td><td><b>Structure of the Mammalian ribosome-sec61 complex to 3.4 a resolution.</b><br>Cell(Cambridge,Mass.), 157, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j7r">3J7R</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j7/3j7r.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j7r;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j7r"><img alt="BU of 3j7r by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j7r"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j7r">Structure of the translating mammalian ribosome-Sec61 complex</a></td></tr><tr><td>Descriptor: </td><td>18S ribosomal RNA, 28S ribosomal RNA, 5.8S ribosomal RNA, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Voorhees,%20R.M%22">Voorhees, R.M</a>, <a href="/search/pdb?d_authors=%22Fernandez,%20I.S%22"> Fernandez, I.S</a>, <a href="/search/pdb?d_authors=%22Scheres,%20S.H.W%22"> Scheres, S.H.W</a>, <a href="/search/pdb?d_authors=%22Hegde,%20R.S.%22"> Hegde, R.S.</a></td></tr><tr><td>Deposit date:</td><td>2014-08-01</td></tr><tr><td>Release date:</td><td>2014-09-03</td></tr><tr><td>Last modified:</td><td>2024-11-20</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY (3.9 Å)</td></tr><tr><td>Cite:</td><td><b>Structure of the Mammalian ribosome-sec61 complex to 3.4 a resolution.</b><br>Cell(Cambridge,Mass.), 157, 2014<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j8h">3J8H</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j8/3j8h.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j8h;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j8h"><img alt="BU of 3j8h by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j8h"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j8h">Structure of the rabbit ryanodine receptor RyR1 in complex with FKBP12 at 3.8 Angstrom resolution</a></td></tr><tr><td>Descriptor: </td><td>Peptidyl-prolyl cis-trans isomerase FKBP1A, Ryanodine receptor 1, ZINC ION</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Yan,%20Z%22">Yan, Z</a>, <a href="/search/pdb?d_authors=%22Bai,%20X%22"> Bai, X</a>, <a href="/search/pdb?d_authors=%22Yan,%20C%22"> Yan, C</a>, <a href="/search/pdb?d_authors=%22Wu,%20J%22"> Wu, J</a>, <a href="/search/pdb?d_authors=%22Scheres,%20S.H.W%22"> Scheres, S.H.W</a>, <a href="/search/pdb?d_authors=%22Shi,%20Y%22"> Shi, Y</a>, <a href="/search/pdb?d_authors=%22Yan,%20N.%22"> Yan, N.</a></td></tr><tr><td>Deposit date:</td><td>2014-10-26</td></tr><tr><td>Release date:</td><td>2014-12-10</td></tr><tr><td>Last modified:</td><td>2024-02-21</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY (3.8 Å)</td></tr><tr><td>Cite:</td><td><b>Structure of the rabbit ryanodine receptor RyR1 at near-atomic resolution.</b><br>Nature, 517, 2015<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j92">3J92</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j9/3j92.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j92;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j92"><img alt="BU of 3j92 by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j92"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j92">Structure and assembly pathway of the ribosome quality control complex</a></td></tr><tr><td>Descriptor: </td><td>28S rRNA, 5.8S rRNA, 5S rRNA, ...</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Shao,%20S%22">Shao, S</a>, <a href="/search/pdb?d_authors=%22Brown,%20A%22"> Brown, A</a>, <a href="/search/pdb?d_authors=%22Santhanam,%20B%22"> Santhanam, B</a>, <a href="/search/pdb?d_authors=%22Hegde,%20R.S.%22"> Hegde, R.S.</a></td></tr><tr><td>Deposit date:</td><td>2014-12-02</td></tr><tr><td>Release date:</td><td>2015-01-21</td></tr><tr><td>Last modified:</td><td>2024-10-30</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY (3.6 Å)</td></tr><tr><td>Cite:</td><td><b>Structure and Assembly Pathway of the Ribosome Quality Control Complex.</b><br>Mol.Cell, 57, 2015<br></td></tr></tbody></table></td></tr><tr><td><a href="/mine/summary/3j9g">3J9G</a><br><a download="" href="https://data.pdbj.org/pub/pdb/data/structures/divided/mmCIF/j9/3j9g.cif.gz"><img alt="Download" src="/newweb/media/icons/dl.png" width="32" height="32"></a><a target="_blank" href="/molmil2/#fetch%203j9g;%20repr%20bu;%20style-if%20bu;"><img alt="Visualize" src="/newweb/media/icons/hoh_3d.png"></a><br><a href="/mine/summary/3j9g"><img alt="BU of 3j9g by Molmil" loading="lazy" width="256" height="256" src="/molmil-images/mine/3j9g"></a></td><td><table><tbody><tr><td colspan="2"><a href="/mine/summary/3j9g">Atomic model of the VipA/VipB, the type six secretion system contractile sheath of Vibrio cholerae from cryo-EM</a></td></tr><tr><td>Descriptor: </td><td>VipA, VipB</td></tr><tr><td>Authors:</td><td><a href="/search/pdb?d_authors=%22Kudryashev,%20M%22">Kudryashev, M</a>, <a href="/search/pdb?d_authors=%22Wang,%20R.Y.-R%22"> Wang, R.Y.-R</a>, <a href="/search/pdb?d_authors=%22Brackmann,%20M%22"> Brackmann, M</a>, <a href="/search/pdb?d_authors=%22Scherer,%20S%22"> Scherer, S</a>, <a href="/search/pdb?d_authors=%22Maier,%20T%22"> Maier, T</a>, <a href="/search/pdb?d_authors=%22Baker,%20D%22"> Baker, D</a>, <a href="/search/pdb?d_authors=%22DiMaio,%20F%22"> DiMaio, F</a>, <a href="/search/pdb?d_authors=%22Stahlberg,%20H%22"> Stahlberg, H</a>, <a href="/search/pdb?d_authors=%22Egelman,%20E.H%22"> Egelman, E.H</a>, <a href="/search/pdb?d_authors=%22Basler,%20M.%22"> Basler, M.</a></td></tr><tr><td>Deposit date:</td><td>2015-01-16</td></tr><tr><td>Release date:</td><td>2015-03-11</td></tr><tr><td>Last modified:</td><td>2024-02-21</td></tr><tr><td>Method:</td><td>ELECTRON MICROSCOPY (3.5 Å)</td></tr><tr><td>Cite:</td><td><b>Structure of the Type VI Secretion System Contractile Sheath.</b><br>Cell(Cambridge,Mass.), 160, 2015<br></td></tr></tbody></table></td></tr></tbody></table><div id="searchpaginator"><p>&nbsp;</p><b>1</b><a href="/list/pdb-legacy-incompatible?lang=en&amp;page=2">2</a><a href="/list/pdb-legacy-incompatible?lang=en&amp;page=3">3</a><a href="/list/pdb-legacy-incompatible?lang=en&amp;page=4">4</a><a href="/list/pdb-legacy-incompatible?lang=en&amp;page=5">5</a><a href="/list/pdb-legacy-incompatible?lang=en&amp;page=6">6</a><a href="/list/pdb-legacy-incompatible?lang=en&amp;page=7">7</a><a 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