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1790: 1513: 38: 2288:Мы обновили модель. В роли нашего научного консультанта выступил доктор биологических наук, специалист в области вирусологии, Никитин Н. А. и к.х.н специалист по молекулярному моделированию поверхностных вирусных белков Борисевич С.С. Под их руководством в модель были внесены следующие правки: Изменено количество S-белков с 90 до 38, количество M-белков было увеличено до 1000, а E-белков, как минорных компонентов мембраны, снижено до 15, HE-белок удалён. Также была принята во внимание шарни... 1937: 1243: 1533:","P2093":"AlexeySolodovnikov"}},"text\/plain":{"en":{"P4174":"AlexeySolodovnikov","P2093":"AlexeySolodovnikov"}}},"{\"value\":{\"entity-type\":\"property\",\"numeric-id\":2093,\"id\":\"P2093\"},\"type\":\"wikibase-entityid\"}":{"text\/html":{"en":{"":" 1106: 1230: 1256: 1214: 1111: 1222: 94: 1525:"}},"text\/plain":{"en":{"P2699":"https:\/\/commons.wikimedia.org\/wiki\/user:AlexeySolodovnikov"}}},"{\"value\":{\"entity-type\":\"property\",\"numeric-id\":4174,\"id\":\"P4174\"},\"type\":\"wikibase-entityid\"}":{"text\/html":{"en":{"":" 2921: 1798:"}},"text\/plain":{"en":{"P6731":"Wikimedia Commons quality image"}}},"{\"value\":{\"entity-type\":\"item\",\"numeric-id\":63348040,\"id\":\"Q63348040\"},\"type\":\"wikibase-entityid\"}":{"text\/html":{"en":{"P6731":" 1794:"}},"text\/plain":{"en":{"":"Commons quality assessment"}}},"{\"value\":{\"entity-type\":\"item\",\"numeric-id\":63348069,\"id\":\"Q63348069\"},\"type\":\"wikibase-entityid\"}":{"text\/html":{"en":{"P6731":" 1802:"}},"text\/plain":{"en":{"P6731":"Wikimedia Commons valued image"}}},"{\"value\":{\"entity-type\":\"property\",\"numeric-id\":580,\"id\":\"P580\"},\"type\":\"wikibase-entityid\"}":{"text\/html":{"en":{"":" 1945:"}},"text\/plain":{"en":{"":"determination method"}}},"{\"value\":{\"entity-type\":\"item\",\"numeric-id\":13414952,\"id\":\"Q13414952\"},\"type\":\"wikibase-entityid\"}":{"text\/html":{"en":{"P459":" 2008:"}},"text\/plain":{"en":{"":"data size"}}},"{\"value\":{\"amount\":\"+4765767\",\"unit\":\"http:\\\/\\\/www.wikidata.org\\\/entity\\\/Q8799\"},\"type\":\"quantity\"}":{"text\/html":{"en":{"P3575":"4,765,767 1668:"}},"text\/plain":{"en":{"":"copyright license"}}},"{\"value\":{\"entity-type\":\"item\",\"numeric-id\":18199165,\"id\":\"Q18199165\"},\"type\":\"wikibase-entityid\"}":{"text\/html":{"en":{"P275":" 1624:"}},"text\/plain":{"en":{"":"copyright status"}}},"{\"value\":{\"entity-type\":\"item\",\"numeric-id\":50423863,\"id\":\"Q50423863\"},\"type\":\"wikibase-entityid\"}":{"text\/html":{"en":{"P6216":" 1903:"}},"text\/plain":{"en":{"":"media type"}}},"{\"value\":\"image\\\/png\",\"type\":\"string\"}":{"text\/html":{"en":{"P1163":"image\/png"}},"text\/plain":{"en":{"P1163":"image\/png"}}}}": --> 1712:"}},"text\/plain":{"en":{"":"source of file"}}},"{\"value\":{\"entity-type\":\"item\",\"numeric-id\":66458942,\"id\":\"Q66458942\"},\"type\":\"wikibase-entityid\"}":{"text\/html":{"en":{"P7482":" 2053:"}},"text\/plain":{"en":{"":"height"}}},"{\"value\":{\"amount\":\"+2048\",\"unit\":\"http:\\\/\\\/www.wikidata.org\\\/entity\\\/Q355198\"},\"type\":\"quantity\"}":{"text\/html":{"en":{"P2048":"2,048 2098:"}},"text\/plain":{"en":{"":"width"}}},"{\"value\":{\"amount\":\"+2048\",\"unit\":\"http:\\\/\\\/www.wikidata.org\\\/entity\\\/Q355198\"},\"type\":\"quantity\"}":{"text\/html":{"en":{"P2049":"2,048 1470:"}},"text\/plain":{"en":{"":"depicts"}}},"{\"value\":{\"entity-type\":\"item\",\"numeric-id\":82069695,\"id\":\"Q82069695\"},\"type\":\"wikibase-entityid\"}":{"text\/html":{"en":{"P180":" 1517:"}},"text\/plain":{"en":{"":"creator"}}},"{\"value\":{\"entity-type\":\"property\",\"numeric-id\":2699,\"id\":\"P2699\"},\"type\":\"wikibase-entityid\"}":{"text\/html":{"en":{"":" 2094: 2271: 2241: 2301: 2331: 2911: 3021: 1521:"}},"text\/plain":{"en":{"":"URL"}}},"{\"value\":\"https:\\\/\\\/commons.wikimedia.org\\\/wiki\\\/user:AlexeySolodovnikov\",\"type\":\"string\"}":{"text\/html":{"en":{"P2699":" 2181: 594:
Choi, Y. K., Cao, Y., Frank, M., Woo, H., Park, S. J., Yeom, M. S., Croll, T. I., Seok, C., Im, W. Structure, Dynamics, Receptor Binding, and Antibody Binding of the Fully Glycosylated Full-Length SARS-CoV-2 Spike Protein in a Viral Membrane. // J. Chem. Theory Comput. – 2021. – Vol. 17. – N. 4. – P.
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Neuman, B. W., Kiss, G., Kunding, A. H., Bhella, D., Baksh, M. F., Connelly, S., Droese, B., Klaus, J. P., Makino, S., Sawicki, S. G., Siddell, S. G., Stamou, D. G., Wilson, I. A., Kuhn, P., Buchmeier, M. J. A structural analysis of M protein in coronavirus assembly and morphology. // J. Struct.
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Yao, H., Song, Y., Chen, Y., Wu, N., Xu, J., Sun, C., Zhang, J., Weng, T., Zhang, Z., Wu, Z., Cheng, L., Shi, D., Lu, X., Lei, J., Crispin, M., Shi, Y., Li, L., Li, S. Molecular architecture of the SARS-CoV-2 virus. // Cell. – 2020. – Vol. 183. – N. 3. – P.
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Yao, H., Song, Y., Chen, Y., Wu, N., Xu, J., Sun, C., Zhang, J., Weng, T., Zhang, Z., Wu, Z., Cheng, L., Shi, D., Lu, X., Lei, J., Crispin, M., Shi, Y., Li, L., Li, S. Molecular Architecture of the SARS-CoV-2 Virus. // Cell. – 2020. – Vol. 183. – N. 3. – P.
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Koppisetti, R. K., Fulcher, Y. G., Jurkevich, A., Prior, S. H., Xu, J., Lenoir, M., Overduin, M., Van Doren, S. R. Ambidextrous binding of cell and membrane bilayers by soluble matrix metalloproteinase-12. // Nat. Commun. – 2014. – Vol. 5. – P.
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Javitt, G., Khmelnitsky, L., Albert, L., Bigman, L. S., Elad, N., Morgenstern, D., Ilani, T., Levy, Y., Diskin, R., Fass, D. Assembly Mechanism of Mucin and von Willebrand Factor Polymers. // Cell. – 2020. – Vol. 183. – N. 3. – P.
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Almond, A., DeAngelis, P. L., Blundell, C. D. Hyaluronan: The Local Solution Conformation Determined by NMR and Computer Modeling is Close to a Contracted Left-handed 4-Fold Helix. // J. Mol. Biol. – 2006. – Vol. 358. – N. 5. – P.
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Wang, M. Y., Zhao, R., Gao, L. J., Gao, X. F., Wang, D. P., Cao, J. M. SARS-CoV-2: Structure, Biology, and Structure-Based Therapeutics Development. // Front. Cell. Infect. Microbiol. – 2020. – Vol. 10. – N. November. – P.
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Oostra, M., de Haan, C. A. M., de Groot, R. J., Rottier, P. J. M. Glycosylation of the Severe Acute Respiratory Syndrome Coronavirus Triple-Spanning Membrane Proteins 3a and M. // J. Virol. – 2006. – Vol. 80. – N. 5. – P.
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Yu, A., Pak, A. J., He, P., Monje-Galvan, V., Casalino, L., Gaieb, Z., Dommer, A. C., Amaro, R. E., Voth, G. A. A multiscale coarse-grained model of the SARS-CoV-2 virion. // Biophys. J. – 2021. – Vol. 120. – N. 6. – P.
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Neuman, B. W., Kiss, G., Kunding, A. H., Bhella, D., Baksh, M. F., Connelly, S., Droese, B., Klaus, J. P., Makino, S., Sawicki, S. G., Siddell, S. G., Stamou, D. G., Wilson, I. A., Kuhn, P., Buchmeier, M. J.
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Yan, Renhong, Yuanyuan Zhang, Yaning Li, Lu Xia, Yingying Guo, Q. Z. Structural basis for the recognition of SARS-CoV-2 by full-length human ACE2. // Science (80-. ). – 2020. – Vol. 3. – N. 3. – P. 1–8.
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https://www.researchgate.net/publication/349986293_Structure_Dynamics_Receptor_Binding_and_Antibody_Binding_of_the_Fully_Glycosylated_Full-Length_SARS-CoV-2_Spike_Protein_in_a_Viral_Membrane
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Noreng, S., Bharadwaj, A., Posert, R., Yoshioka, C., Baconguis, I. Structure of the human epithelial sodium channel by cryo-electron microscopy. // Elife. – 2018. – Vol. 7. – P. 1–23.
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Hillen, H. S., Kokic, G., Farnung, L., Dienemann, C., Tegunov, D., Cramer, P. Structure of replicating SARS-CoV-2 polymerase. // Nature. – 2020. – Vol. 584. – N. 7819. – P. 154–156.
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Surya, W., Li, Y., Torres, J. Structural model of the SARS coronavirus E channel in LMPG micelles. // Biochim. Biophys. Acta - Biomembr. – 2018. – Vol. 1860. – N. 6. – P. 1309–1317.
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Harris, L. J., Larson, S. B., Hasel, K. W., McPherson, A. Refined structure of an intact IgG2a monoclonal antibody. // Biochemistry. – 1997. – Vol. 36. – N. 7. – P. 1581–1597.
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Yao, H., Song, Y., Chen, Y., Wu, N., Xu, J., Sun, C., Zhang, J., Weng, T., Zhang, Z., Wu, Z., Cheng, L., Shi, D., Lu, X., Lei, J., Crispin, M., Shi, Y., Li, L., Li, S.
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Structure, Dynamics, Receptor Binding, and Antibody Binding of the Fully Glycosylated Full-Length SARS-CoV-2 Spike Protein in a Viral Membrane
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Daniel Wrapp, Nianshuang Wang, Kizzmekia S. Corbett, Jory A. Goldsmith, Ching-Lin Hsieh, Olubukola Abiona, B. S. G., McLellan, and J. S.
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Cryo-EM structure of coronavirus-HKU1 haemagglutinin esterase reveals architectural changes arising from prolonged circulation in humans
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Hyaluronan: The Local Solution Conformation Determined by NMR and Computer Modeling is Close to a Contracted Left-handed 4-Fold Helix
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Hurdiss, D. L., Drulyte, I., Lang, Y., Shamorkina, T. M., Pronker, M. F., van Kuppeveld, F. J. M., Snijder, J., de Groot, R. J.
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B.W. Neuman, M. J. B. Supramolecular Architecture of the Coronavirus Particle. // Adv. Virus Res. – 2020. – Vol. 96. – P. 1–27.
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Javitt, G., Khmelnitsky, L., Albert, L., Bigman, L. S., Elad, N., Morgenstern, D., Ilani, T., Levy, Y., Diskin, R., Fass, D.
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Koppisetti, R. K., Fulcher, Y. G., Jurkevich, A., Prior, S. H., Xu, J., Lenoir, M., Overduin, M., Van Doren, S. R.
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Yu, A., Pak, A. J., He, P., Monje-Galvan, V., Casalino, L., Gaieb, Z., Dommer, A. C., Amaro, R. E., Voth, G. A.
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Glycosylation of the Severe Acute Respiratory Syndrome Coronavirus Triple-Spanning Membrane Proteins 3a and M
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Modello atomico scientificamente accurato del coronavirus (SARS-CoV-2). Ogni "pallino" rappresenta un atomo.
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More than 100 pages use this file. The following list shows the first 100 pages that use this file only. A
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Modèle atomique scientifiquement exact du coronavirus (SARS-CoV-2). Chaque "balle" représente un atome.
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https://search.bvsalud.org/global-literature-on-novel-coronavirus-2019-ncov/resource/en/covidwho-947143
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Mudell atomiku bir-reqqa xjentifika tal-istruttura esterna tas-SARS-CoV-2. Kull "ballun" huwa atomu.
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Choi, Y. K., Cao, Y., Frank, M., Woo, H., Park, S. J., Yeom, M. S., Croll, T. I., Seok, C., Im, W.
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Wissenschaftlich genaues Atommodell des Coronavirus (SARS-CoV-2). Jede "Kugel" ist ein Atom.
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Modelo atómico cientificamente preciso do coronavírus (SARS-CoV-2). Cada "bola" é um átomo.
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Wetenschappelijk accuraat model van het coronavirus (SARS-CoV-2). Elke "bal" is een atoom.
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User:Breawycker/sandbox/Impact of the 2019–20 coronavirus pandemic on the retail industry
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Ambidextrous binding of cell and membrane bilayers by soluble matrix metalloproteinase-12
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Arkhipova V.I., specialization in Fundamental and Applied chemistry, senior engineer,
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The following structures from open sources were used in the work, Protein Data Bank (
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I, the copyright holder of this work, hereby publish it under the following license:
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Borisevich S.S. Candidate of Chemical Sciences, Specialist in Molecular Modeling of
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Chemistry Laboratory, Institute of chemical biology and fundamental medicine SB RAS
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User:Chief of Staff/Archives Room/List of people with coronavirus disease 2019
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Hillen, H. S., Kokic, G., Farnung, L., Dienemann, C., Tegunov, D., Cramer, P.
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SARS-CoV-2: Structure, Biology, and Structure-Based Therapeutics Development
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Structural basis for the recognition of SARS-CoV-2 by full-length human ACE2
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Structure of the human epithelial sodium channel by cryo-electron microscopy
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A structural analysis of M protein in coronavirus assembly and morphology
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Wang, M. Y., Zhao, R., Gao, L. J., Gao, X. F., Wang, D. P., Cao, J. M.
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Protein Data Bank: 2mls, 6y3y, 5x29, 6yyt Charmm-gui: 6vsb_1_1_1_S309
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If you have an image of similar quality that can be published under a
1078:// J. Chem. Theory Comput. – 2021. – Vol. 17. – N. 4. – P. 2479–2487 ( 987:
Cryo-EM structure of the 2019-nCoV spike in the prefusion conformation
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Scientifically accurate atomic model of the external structure of the
214:(genetische Variante) des Coronavirus, der die Coronavirus-Krankheit ( 971:
Yan, Renhong, Yuanyuan Zhang, Yaning Li, Lu Xia, Yingying Guo, Q. Z.
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Click on a date/time to view the file as it appeared at that time.
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https://www.sciencedirect.com/science/article/pii/S0092867420311594
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Noreng, S., Bharadwaj, A., Posert, R., Yoshioka, C., Baconguis, I.
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Structural model of the SARS coronavirus E channel in LMPG micelles
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Oostra, M., de Haan, C. A. M., de Groot, R. J., Rottier, P. J. M.
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Impact of the COVID-19 pandemic on the arts and cultural heritage
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https:\/\/commons.wikimedia.org\/wiki\/user:AlexeySolodovnikov
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Assembly Mechanism of Mucin and von Willebrand Factor Polymers
631:(freely available for both non-commercial and commercial use). 463:(доктор биологических наук, специалист в области вирусологии) 2786: 2366: 1041:// J. Struct. Biol. – 2011. – Vol. 174. – N. 1. – P. 11–22. ( 760:(freely available for both non-commercial and commercial use) 292: 202:
Wissenschaftlich genaues Atommodell der äußeren Struktur des
961:// J. Mol. Biol. – 2006. – Vol. 358. – N. 5. – P. 1256–1269. 700: 693:,Laboratory of Chemical Physics, Ufa Institute of Chemistry 2647:
Impact of the COVID-19 pandemic on commercial air transport
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Nikitin N.A., Doctor of Biological Sciences, Department of
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Impact of the COVID-19 pandemic on the video game industry
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A multiscale coarse-grained model of the SARS-CoV-2 virion
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Harris, L. J., Larson, S. B., Hasel, K. W., McPherson, A.
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Impact of the COVID-19 pandemic on science and technology
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Creative Commons Attribution-ShareAlike 4.0 International
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Creative Commons Attribution-ShareAlike 4.0 International
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Refined structure of an intact IgG2a monoclonal antibody
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Supramolecular Architecture of the Coronavirus Particle
975:// Science (80-. ). – 2020. – Vol. 3. – N. 3. – P. 1–8. 940:// Nature. – 2020. – Vol. 584. – N. 7819. – P. 154–156. 844: 2797:
Xenophobia and racism related to the COVID-19 pandemic
1007:// Cell. – 2020. – Vol. 183. – N. 3. – P. 730-738.e13. 982:// Cell. – 2020. – Vol. 183. – N. 3. – P. 717-729.e16. 78:(2,048 × 2,048 pixels, file size: 4.54 MB, MIME type: 2587:
COVID-19 pandemic in the United States Virgin Islands
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COVID-19 pandemic in Saint Vincent and the Grenadines
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https://commons.wikimedia.org/user:AlexeySolodovnikov
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https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7489918/
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https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7605623/
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https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7098027/
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https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7489918/
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Impact of the COVID-19 pandemic on the food industry
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Human rights issues related to the COVID-19 pandemic
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1368: 1365: 1364: 1361: 1360: 1284:August 8, 2021 1261: 1260: 1251: 1249: 1189: 1186: 1166: 1165: 1164: 1163: 1153: 1144: 1143: 1142: 1136: 1129:You are free: 1116: 1115: 1097: 1091: 1090: 1088: 1085: 1084: 1083: 1072: 1061: 1046: 1034: 1019: 1008: 1001: 990: 983: 976: 969: 962: 955: 948: 941: 934: 927: 916: 915: 909: 892: 876: 863: 841: 840: 835: 830: 820: 817: 813: 812: 811: 810: 807: 792: 790: 787: 771: 767: 766:Other versions 763: 762: 751:protein models 734: 722: 721: 711: 707: 706: 705: 704: 697: 683: 664: 660: 659: 654: 650: 649: 617: 616: 611: 606: 597: 596: 592: 588: 584: 580: 577: 573: 569: 565: 561: 557: 554: 550: 546: 543: 540: 537: 533: 529: 524: 523: 518: 517: 512: 511: 506: 505: 500: 499: 494: 493: 492: 491: 484: 483: 466:Борисевич С.С. 440: 439: 434: 433: 431: 426: 425: 423: 418: 417: 415: 410: 409: 407: 402: 401: 399: 372: 371: 358: 357: 349: 348: 340: 339: 331: 330: 281:Spike-Proteine 276: 275: 262: 261: 258:Matrixproteine 253: 252: 244: 243: 235: 234: 194: 185: 183: 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2773: 2770: 2768: 2765: 2763: 2760: 2758: 2755: 2753: 2750: 2748: 2747:Spike protein 2745: 2743: 2740: 2738: 2735: 2733: 2730: 2728: 2725: 2723: 2720: 2718: 2715: 2713: 2710: 2708: 2705: 2703: 2700: 2698: 2695: 2693: 2690: 2688: 2685: 2683: 2680: 2678: 2675: 2673: 2670: 2668: 2665: 2663: 2660: 2658: 2655: 2653: 2650: 2648: 2645: 2643: 2640: 2638: 2635: 2633: 2630: 2628: 2625: 2623: 2620: 2618: 2615: 2613: 2610: 2608: 2605: 2603: 2600: 2598: 2595: 2593: 2590: 2588: 2585: 2583: 2580: 2578: 2575: 2573: 2570: 2568: 2565: 2563: 2560: 2558: 2555: 2553: 2550: 2548: 2545: 2543: 2540: 2538: 2535: 2533: 2530: 2528: 2525: 2523: 2520: 2518: 2515: 2513: 2510: 2508: 2505: 2503: 2500: 2498: 2495: 2493: 2490: 2488: 2485: 2483: 2480: 2478: 2475: 2473: 2470: 2468: 2465: 2463: 2460: 2458: 2455: 2453: 2450: 2448: 2445: 2443: 2440: 2438: 2435: 2433: 2430: 2428: 2425: 2423: 2420: 2418: 2415: 2413: 2410: 2408: 2405: 2403: 2400: 2398: 2395: 2393: 2390: 2388: 2385: 2383: 2380: 2378: 2375: 2373: 2370: 2368: 2365: 2364: 2363: 2361: 2345: 2340: 2334: 2332: 2329: 2327: 2324: 2322: 2321: 2315: 2310: 2304: 2302: 2299: 2297: 2294: 2292: 2291: 2285: 2280: 2274: 2272: 2269: 2267: 2264: 2262: 2261: 2258:fix color bug 2255: 2250: 2244: 2242: 2239: 2237: 2234: 2232: 2231: 2225: 2220: 2214: 2212: 2209: 2207: 2204: 2202: 2201: 2195: 2190: 2184: 2182: 2179: 2177: 2174: 2171: 2170: 2166: 2163: 2160: 2157: 2154: 2152: 2151: 2149: 2123: 2111: 2107: 2078: 2066: 2062: 2033: 2021: 2017: 1992: 1985: 1970: 1958: 1954: 1924: 1912: 1908: 1888: 1884: 1865: 1852: 1848: 1835: 1831: 1819: 1815: 1777: 1765: 1761: 1741: 1737: 1725: 1721: 1697: 1693: 1681: 1677: 1653: 1649: 1637: 1633: 1603: 1595: 1588: 1580: 1573: 1558: 1546: 1542: 1502: 1498: 1486: 1482: 1479: 1388: 1381: 1359: 1358: 1356: 1352: 1348: 1345:, be sure to 1344: 1339: 1338: 1336: 1332: 1330: 1329: 1323: 1322: 1317: 1313: 1311: 1307: 1306: 1305:quality image 1301: 1299: 1295: 1291: 1287: 1285: 1281: 1280: 1275: 1273: 1272: 1267: 1263: 1262: 1259: 1250: 1238:Quality image 1223: 1215: 1210: 1207: 1206: 1203: 1202: 1199: 1198: 1195: 1194: 1172:CC BY-SA 4.0 1161: 1157: 1154: 1151: 1148: 1147: 1145: 1140: 1137: 1134: 1131: 1130: 1128: 1127: 1123: 1120: 1103: 1081: 1077: 1073: 1070: 1066: 1062: 1059: 1055: 1051: 1047: 1044: 1040: 1035: 1032: 1028: 1024: 1020: 1017: 1013: 1009: 1006: 1002: 999: 995: 991: 988: 984: 981: 977: 974: 970: 967: 963: 960: 956: 953: 949: 946: 942: 939: 935: 932: 928: 925: 921: 920: 919: 913: 910: 907: 906: 902: 899:Structure of 896: 893: 890: 889: 886: 880: 877: 874: 873: 867: 864: 861: 859: 853: 850: 849: 848: 846: 839: 836: 834: 831: 829: 826: 825: 824: 791: 770: 769: 768: 764: 761: 757: 754: 752: 748: 744: 740: 737:Published by 735: 731: 726: 723: 719: 715: 712: 708: 702: 698: 696: 692: 688: 684: 681: 677: 673: 672: 671: 665: 661: 651: 646: 642: 637: 630: 626: 620: 619: 615: 612: 610: 607: 605: 602: 601: 600: 593: 589: 585: 581: 578: 574: 570: 566: 562: 558: 555: 551: 547: 544: 541: 538: 534: 531: 530: 489: 488: 487: 481: 480: 479: 478: 476: 475:Архипова В.И. 473: 471: 467: 464: 462: 461:Никитин Н. А. 459: 455: 451: 446: 432: 424: 416: 408: 400: 397: 396: 394: 390: 385: 378: 368: 364: 355: 346: 337: 329: 327: 321: 317: 313: 309: 305: 301: 297: 296:CoronaVirus 2 294: 289: 282: 272: 268: 259: 250: 241: 233: 231: 225: 221: 217: 213: 209: 205: 200: 195: 188: 176: 168: 166: 158: 156: 148: 146: 138: 137: 115: 108: 107: 102: 98: 91: 90: 84: 75: 74:Original file 66: 62: 58: 54: 50: 44: 39: 33: 30: 28: 25: 23: 20: 18: 15: 3143: 2902:فيروس كورونا 2878: 2866: 2357: 2147: 2144:File history 1340: 1326: 1325: 1321:valued image 1319: 1303: 1289: 1277: 1269: 1265: 1253: 1246:Valued image 1155: 1149: 1138: 1132: 917: 898: 882: 869: 855: 842: 822: 756:free license 736: 666: 636:Українська: 635: 623:Производные 618: 598: 572:730-738.e13. 560:717-729.e16. 485: 457: 450:Опубликовано 444: 383: 323: 310:that caused 287: 249:Hüllproteine 227: 198: 114:You can help 104: 72: 22:File history 2612:Coronavirus 1870:27 May 2021 1652:copyrighted 1626:copyrighted 1355:nominate it 1156:share alike 1150:attribution 903:SARS-CoV-2 901:replicating 888:ion channel 308:coronavirus 247:purpurrot: 190:Description 2869:more links 2737:SARS-CoV-2 2354:File usage 2337:(16.04 MB) 2307:(16.04 MB) 2161:Dimensions 2035:4,765,767 1911:media type 1901:media type 1864:start time 1804:start time 1779:4 May 2021 1560:some value 1501:SARS-CoV-2 1472:SARS-CoV-2 1441:Portuguese 1328:SARS-CoV-2 1302:This is a 1288:This is a 1188:Assessment 912:Charmm-gui 905:polymerase 885:pentameric 725:Permission 657:4 May 2021 641:SARS-CoV-2 595:2479–2487. 587:1097–1104. 576:2326–2336. 549:1256–1269. 389:SARS-CoV-2 240:Virushülle 208:SARS-CoV-2 174:Assessment 27:File usage 2360:full list 2318:add alpha 2277:(5.34 MB) 2247:(5.34 MB) 2187:(4.54 MB) 2158:Thumbnail 2155:Date/Time 2020:data size 2006:data size 1926:image/png 1764:inception 1754:inception 1449:Hungarian 1087:Licensing 788:animation 445:Русский: 384:Español: 354:M protein 345:E protein 343:crimson: 306:) of the 288:English: 210:), einem 199:Deutsch: 164:Licensing 80:image/png 2372:COVID-19 2217:(4.6 MB) 1957:checksum 1939:checksum 1389:Captions 1353:it, and 1266:finalist 1139:to remix 1133:to share 1124:license. 676:Virology 668:Own work 591:730–738. 398:Leyenda: 361:orange: 336:membrane 334:cobalt: 326:molecule 279:türkis: 265:orange: 238:kobalt: 216:COVID-19 130:Contents 2172:current 2167:Comment 1545:creator 1515:creator 1485:depicts 1468:depicts 1457:Russian 1409:Italian 1401:Maltese 1393:English 819:Sources 363:glucose 352:green: 271:Glycane 267:Glucose 182:Summary 154:Sources 144:Summary 76:‎ 2223:Iketsi 2193:Jul059 2125:2,048 2080:2,048 2065:height 2051:height 1433:French 1417:German 1347:upload 710:Author 663:Source 519:  513:  507:  501:  495:  435:  427:  419:  411:  403:  373:  367:glycan 359:  350:  341:  332:  300:strain 277:  263:  256:grün: 254:  245:  236:  3144:View 2867:View 2787:Virus 2367:AGILE 2127:pixel 2110:width 2100:pixel 2096:width 2082:pixel 2055:pixel 1991:SHA-1 1947:SHA-1 1425:Dutch 758:site 568:1–17. 536:1–14. 393:átomo 320:China 316:Wuhan 232:von: 224:China 220:Wuhan 212:Stamm 2164:User 2037:byte 2010:byte 1349:it, 1335:here 1298:here 1181:true 1178:true 895:6yyt 879:5x29 866:6y3y 852:2mls 847:): 653:Date 645:атом 564:1–9. 328:of: 230:Atom 204:SARS 17:File 1572:URL 1519:URL 1351:tag 1282:on 1268:in 749:), 739:N+1 701:RNA 695:RAS 454:N+1 452:на 1987:: 1867:: 1605:: 1590:: 1575:: 1056:, 1029:, 741:a 456:. 395:. 318:, 222:, 63:| 59:| 55:| 51:| 45:. 1357:. 1337:. 1312:. 1300:. 1286:. 1274:. 1082:) 1071:) 1060:) 1045:) 1033:) 1018:) 1000:) 897:( 881:( 868:( 854:( 732:) 728:( 682:. 647:. 369:) 365:( 302:( 273:) 269:( 171:4 161:3 151:2 141:1 116:. 82:) 67:.

Index

File
File history
File usage
Global file usage
File:Coronavirus. SARS-CoV-2.png
600 × 600 pixels
240 × 240 pixels
480 × 480 pixels
768 × 768 pixels
1,024 × 1,024 pixels
2,048 × 2,048 pixels
Original file
Wikimedia Commons
description page there
You can help
1 Summary
2 Sources
3 Licensing
4 Assessment
SARS
SARS-CoV-2
Stamm
COVID-19
Wuhan
China
Atom
Virushülle
Hüllproteine
Matrixproteine
Glucose

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