WikiJournal of Science/Structural Model of Bacteriophage T4/XML

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    <full_title>WikiJournal of Science/Structural Model of Bacteriophage T4</full_title>
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    <issn media_type='electronic'>2002-4436 / 2470-6345 / 2639-5347</issn>
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     <year>2022</year>  
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     <title>Structural Model of Bacteriophage T4</title>
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     <surname></surname>
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    <publication_date media_type='online'>     
     <year>2022</year>
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     <resource>https://en.wikiversity.org/wiki/WikiJournal of Science/Structural Model of Bacteriophage T4</resource>
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This is an open access article distributed under the&nbsp;[https://creativecommons.org/licenses/by/4.0/ Creative Commons Attribution License], which permits unrestricted use, distribution, and reproduction, provided the original author and source are credited.</license-p>
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   <abstract>
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Bacteriophage T4 is a virus that infects ''Escherichia coli'', having dimensions of 90 nm in width and 200 nm in length (head and tail in extended form).   It is a quite common model organism that has been studied for a century by many important virologists, and even Watson and Crick after their elucidation of DNA. Structural characterisation of the bacteriophage’s individual proteins began in the 1980s,   and complexes of multiple proteins in the 1990s.   However, it has not yet been possible to structurally characterise the complete phage in atomic detail (though some have begun to come closer)   with multiple overall schematic models published.    The increasing power of computers and the RCSB structural database have made possible the construction of a single combined model of the entire bacteriophage T4 organism with atomic resolution components as described here.
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  2. Weaver, L.H.; Matthews, B.W. (1987-01). "Structure of bacteriophage T4 lysozyme refined at 1.7 Å resolution". Journal of Molecular Biology 193 (1): 189–199. doi:10.1016/0022-2836(87)90636-X. https://linkinghub.elsevier.com/retrieve/pii/002228368790636X. 
  3. Hunt, John F; van der Vies, Saskia M; Henry, Lisa; Deisenhofer, Johann (1997-07). "Structural Adaptations in the Specialized Bacteriophage T4 Co-Chaperonin Gp31 Expand the Size of the Anfinsen Cage". Cell 90 (2): 361–371. doi:10.1016/S0092-8674(00)80343-8. https://linkinghub.elsevier.com/retrieve/pii/S0092867400803438. 
  4. Chen, Zhenguo; Sun, Lei; Zhang, Zhihong; Fokine, Andrei; Padilla-Sanchez, Victor; Hanein, Dorit; Jiang, Wen; Rossmann, Michael G. et al. (2017-09-26). "Cryo-EM structure of the bacteriophage T4 isometric head at 3.3-Å resolution and its relevance to the assembly of icosahedral viruses". Proceedings of the National Academy of Sciences 114 (39): E8184–E8193. doi:10.1073/pnas.1708483114. ISSN 0027-8424. PMID 28893988. PMC PMC5625921. http://www.pnas.org/lookup/doi/10.1073/pnas.1708483114. 
  5. Leiman, P. G.; Kanamaru, S.; Mesyanzhinov, V. V.; Arisaka, F.; Rossmann, M. G. (2003-11-01). "Structure and morphogenesis of bacteriophage T4". Cellular and Molecular Life Sciences (CMLS) 60 (11): 2356–2370. doi:10.1007/s00018-003-3072-1. ISSN 1420-682X. http://link.springer.com/10.1007/s00018-003-3072-1.