For: | Paul D, Bartenschlager R. Architecture and biogenesis of plus-strand RNA virus replication factories. World J Virol 2013; 2(2): 32-48 [PMID: 24175228 DOI: 10.5501/wjv.v2.i2.32] |
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URL: | https://www.wjgnet.com/2220-3249/full/v2/i2/32.htm |
Number | Citing Articles |
1 |
Dahai Luo, Subhash G. Vasudevan, Julien Lescar. The flavivirus NS2B–NS3 protease–helicase as a target for antiviral drug development. Antiviral Research 2015; 118: 148 doi: 10.1016/j.antiviral.2015.03.014
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Kenneth J Ertel, Desirée Benefield, Daniel Castaño-Diez, Janice G Pennington, Mark Horswill, Johan A den Boon, Marisa S Otegui, Paul Ahlquist. Cryo-electron tomography reveals novel features of a viral RNA replication compartment. eLife 2017; 6 doi: 10.7554/eLife.25940
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Masashi Arakawa, Eiji Morita. Flavivirus Replication Organelle Biogenesis in the Endoplasmic Reticulum: Comparison with Other Single-Stranded Positive-Sense RNA Viruses. International Journal of Molecular Sciences 2019; 20(9): 2336 doi: 10.3390/ijms20092336
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4 |
Pietro Scaturro, Mirko Cortese, Laurent Chatel-Chaix, Wolfgang Fischl, Ralf Bartenschlager, Ted C. Pierson. Dengue Virus Non-structural Protein 1 Modulates Infectious Particle Production via Interaction with the Structural Proteins. PLOS Pathogens 2015; 11(11): e1005277 doi: 10.1371/journal.ppat.1005277
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Margot Carocci, Jens H. Kuhn, Priscilla L. Yang. Global Virology I - Identifying and Investigating Viral Diseases. 2015; : 403 doi: 10.1007/978-1-4939-2410-3_15
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Ana-Belén Blázquez, Estela Escribano-Romero, Teresa Merino-Ramos, Juan-Carlos Saiz, Miguel A. MartÃn-Acebes. Stress responses in flavivirus-infected cells: activation of unfolded protein response and autophagy. Frontiers in Microbiology 2014; 5 doi: 10.3389/fmicb.2014.00266
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Christian Harak, Volker Lohmann. Ultrastructure of the replication sites of positive-strand RNA viruses. Virology 2015; : 418 doi: 10.1016/j.virol.2015.02.029
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8 |
William Bakhache, Aymeric Neyret, Eric Bernard, Andres Merits, Laurence Briant, Rebecca Ellis Dutch. Palmitoylated Cysteines in Chikungunya Virus nsP1 Are Critical for Targeting to Cholesterol-Rich Plasma Membrane Microdomains with Functional Consequences for Viral Genome Replication. Journal of Virology 2020; 94(10) doi: 10.1128/JVI.02183-19
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9 |
Xiuling Cao, Xuejiao Jin, Xiaofeng Zhang, Ying Li, Chunyan Wang, Xianbing Wang, Jian Hong, Xiaofeng Wang, Dawei Li, Yongliang Zhang, A. E. Simon. Morphogenesis of Endoplasmic Reticulum Membrane-Invaginated Vesicles during Beet Black Scorch Virus Infection: Role of Auxiliary Replication Protein and New Implications of Three-Dimensional Architecture. Journal of Virology 2015; 89(12): 6184 doi: 10.1128/JVI.00401-15
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10 |
Chunhong Yin, Niluka Goonawardane, Hazel Stewart, Mark Harris, Glenn Randall. A role for domain I of the hepatitis C virus NS5A protein in virus assembly. PLOS Pathogens 2018; 14(1): e1006834 doi: 10.1371/journal.ppat.1006834
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11 |
Hongyun Lu, Yumeng Zhan, Xiaorong Li, Xuehui Bai, Feifei Yuan, Lulu Ma, Xue Wang, Mengjia Xie, Wei Wu, Zhongzhou Chen. Novel insights into the function of an N-terminal region of DENV2 NS4B for the optimal helicase activity of NS3. Virus Research 2021; 295: 198318 doi: 10.1016/j.virusres.2021.198318
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12 |
Laura R. Delgui, María I. Colombo. A Novel Mechanism Underlying the Innate Immune Response Induction upon Viral-Dependent Replication of Host Cell mRNA: A Mistake of +sRNA Viruses' Replicases. Frontiers in Cellular and Infection Microbiology 2017; 7 doi: 10.3389/fcimb.2017.00005
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13 |
C Cheng Kao, Olve B Peersen. Editorial overview: Virus replication in animals and plants. Current Opinion in Virology 2014; 9: iv doi: 10.1016/j.coviro.2014.10.002
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14 |
Cristina M. Dorobantu, Lucian Albulescu, Christian Harak, Qian Feng, Mirjam van Kampen, Jeroen R. P. M. Strating, Alexander E. Gorbalenya, Volker Lohmann, Hilde M. van der Schaar, Frank J. M. van Kuppeveld, Bert L. Semler. Modulation of the Host Lipid Landscape to Promote RNA Virus Replication: The Picornavirus Encephalomyocarditis Virus Converges on the Pathway Used by Hepatitis C Virus. PLOS Pathogens 2015; 11(9): e1005185 doi: 10.1371/journal.ppat.1005185
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15 |
Kazuhiro Ishibashi, Masayasu Saruta, Takehiko Shimizu, Miao Shu, Toyoaki Anai, Kunihiko Komatsu, Naohiro Yamada, Yuichi Katayose, Masayuki Ishikawa, Masao Ishimoto, Akito Kaga. Soybean antiviral immunity conferred by dsRNase targets the viral replication complex. Nature Communications 2019; 10(1) doi: 10.1038/s41467-019-12052-5
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16 |
Maija K. Pietilä, Martijn J. van Hemert, Tero Ahola, Anne E. Simon. Purification of Highly Active Alphavirus Replication Complexes Demonstrates Altered Fractionation of Multiple Cellular Membranes. Journal of Virology 2018; 92(8) doi: 10.1128/JVI.01852-17
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17 |
Michael Niepmann, Lyudmila A. Shalamova, Gesche K. Gerresheim, Oliver Rossbach. Signals Involved in Regulation of Hepatitis C Virus RNA Genome Translation and Replication. Frontiers in Microbiology 2018; 9 doi: 10.3389/fmicb.2018.00395
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18 |
Eszter Balogh, Csilla Juhász, Tamás Dankó, József Fodor, István Tóbiás, Gábor Gullner. The expression of several pepper fatty acid desaturase genes is robustly activated in an incompatible pepper-tobamovirus interaction, but only weakly in a compatible interaction. Plant Physiology and Biochemistry 2020; 148: 347 doi: 10.1016/j.plaphy.2020.01.023
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19 |
Inés Romero-Brey, Ralf Bartenschlager. Membranous Replication Factories Induced by Plus-Strand RNA Viruses. Viruses 2014; 6(7): 2826 doi: 10.3390/v6072826
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20 |
Maija K. Pietilä, Irina C. Albulescu, Martijn J. van Hemert, Tero Ahola. Polyprotein Processing as a Determinant for in Vitro Activity of Semliki Forest Virus Replicase. Viruses 2017; 9(10): 292 doi: 10.3390/v9100292
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21 |
Andres Lõhmus, Markku Varjosalo, Kristiina Mäkinen. Protein composition of 6K2‐induced membrane structures formed during Potato virus A infection. Molecular Plant Pathology 2016; 17(6): 943 doi: 10.1111/mpp.12341
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22 |
Ryan Schuchman, Andy Kilianski, Amanda Piper, Ricardo Vancini, José M. C. Ribeiro, Thomas R. Sprague, Farooq Nasar, Gabrielle Boyd, Raquel Hernandez, Trevor Glaros, Rebecca Ellis Dutch. Comparative Characterization of the Sindbis Virus Proteome from Mammalian and Invertebrate Hosts Identifies nsP2 as a Component of the Virion and Sorting Nexin 5 as a Significant Host Factor for Alphavirus Replication. Journal of Virology 2018; 92(14) doi: 10.1128/JVI.00694-18
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23 |
Roberto Rossotti, Massimo Puoti. Sexually Transmitted Infections. 2020; : 255 doi: 10.1007/978-3-030-02200-6_13
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24 |
Yu Zhang, Qianda Cao, Mingshu Wang, Renyong Jia, Shun Chen, Dekang Zhu, Mafeng Liu, Kunfeng Sun, Qiao Yang, Ying Wu, Xinxin Zhao, Xiaoyue Chen, Anchun Cheng. The 3D protein of duck hepatitis A virus type 1 binds to a viral genomic 3′ UTR and shows RNA-dependent RNA polymerase activity. Virus Genes 2017; 53(6): 831 doi: 10.1007/s11262-017-1476-5
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25 |
Samuel Tong Jia Ming, Katrina Tan Yi Jun, Guillaume Carissimo.
Pathogenicity and virulence of O’nyong-nyong virus: A less studied
Togaviridae
with pandemic potential
. Virulence 2024; 15(1) doi: 10.1080/21505594.2024.2355201
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26 |
Li Yu, Kazuyo Takeda, Yamei Gao. Characterization of virus-specific vesicles assembled by West Nile virus non-structural proteins. Virology 2017; 506: 130 doi: 10.1016/j.virol.2017.03.016
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27 |
Jacob Beal, Tyler E. Wagner, Tasuku Kitada, Odisse Azizgolshani, Jordan Moberg Parker, Douglas Densmore, Ron Weiss. Model-Driven Engineering of Gene Expression from RNA Replicons. ACS Synthetic Biology 2015; 4(1): 48 doi: 10.1021/sb500173f
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28 |
Jianhui Li, Shai Fuchs, Jiantao Zhang, Sebastian Wellford, Maya Schuldiner, Xiaofeng Wang. An unrecognized function for COPII components in recruiting the viral replication protein BMV 1a to the perinuclear ER. Journal of Cell Science 2016; 129(19): 3597 doi: 10.1242/jcs.190082
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29 |
Tanner M. Tessier, Mackenzie J. Dodge, Martin A. Prusinkiewicz, Joe S. Mymryk. Viral Appropriation: Laying Claim to Host Nuclear Transport Machinery. Cells 2019; 8(6): 559 doi: 10.3390/cells8060559
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30 |
Kevin Maringer, Ana Fernandez-Sesma. Message in a bottle: lessons learned from antagonism of STING signalling during RNA virus infection. Cytokine & Growth Factor Reviews 2014; 25(6): 669 doi: 10.1016/j.cytogfr.2014.08.004
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31 |
Syam Mohan, Manal Mohamed Elhassan Taha, Hafiz A. Makeen, Hassan A. Alhazmi, Mohammed Al Bratty, Shahnaz Sultana, Waquar Ahsan, Asim Najmi, Asaad Khalid. Bioactive Natural Antivirals: An Updated Review of the Available Plants and Isolated Molecules. Molecules 2020; 25(21): 4878 doi: 10.3390/molecules25214878
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32 |
Pavel Montes de Oca-B. Evidence of mitochondria origin of SARS-CoV-2 double-membrane vesicles: a review.. F1000Research 2024; 10: 1009 doi: 10.12688/f1000research.73170.3
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33 |
C. Schmitt-Keichinger, C. Hemmer, F. Berthold, C. Ritzenthaler. Grapevine Viruses: Molecular Biology, Diagnostics and Management. 2017; : 83 doi: 10.1007/978-3-319-57706-7_4
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34 |
Inés Romero-Brey, Carola Berger, Stephanie Kallis, Androniki Kolovou, David Paul, Volker Lohmann, Ralf Bartenschlager, Michael J. Buchmeier. NS5A Domain 1 and Polyprotein Cleavage Kinetics Are Critical for Induction of Double-Membrane Vesicles Associated with Hepatitis C Virus Replication. mBio 2015; 6(4) doi: 10.1128/mBio.00759-15
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35 |
Kuohan Li, Wint Wint Phoo, Dahai Luo. Functional interplay among the flavivirus NS3 protease, helicase, and cofactors. Virologica Sinica 2014; 29(2): 74 doi: 10.1007/s12250-014-3438-6
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36 |
Tero Ahola, Vincent R. Racaniello. New Phylogenetic Grouping of Positive-Sense RNA Viruses Is Concordant with Replication Complex Morphology. mBio 2019; 10(4) doi: 10.1128/mBio.01402-19
|
37 |
Ho Him Wong, Sumana Sanyal. Manipulation of autophagy by (+) RNA viruses. Seminars in Cell & Developmental Biology 2020; 101: 3 doi: 10.1016/j.semcdb.2019.07.013
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38 |
Thomas Walsh. Primer on the Pathogenesis of Severe COVID-19: Part One. European Medical Journal 2020; doi: 10.33590/emj/20-00158
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39 |
Zhang Chengcheng, Zhao Fuxi, Guo Mengjiao, Ruan Baoyang, Wang Xuefeng, Wu Yantao, Zhang Xiaorong. CSFV protein NS5A activates the unfolded protein response to promote viral replication. Virology 2020; 541: 75 doi: 10.1016/j.virol.2019.12.006
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40 |
Kentaro Hanada. Metabolic channeling of lipids via the contact zones between different organelles. BioEssays 2024; 46(8) doi: 10.1002/bies.202400045
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41 |
Lingbao Kong, Haruyo Aoyagi, Zibing Yang, Tao Ouyang, Mami Matsuda, Akira Fujimoto, Koichi Watashi, Ryosuke Suzuki, Minetaro Arita, Satoshi Yamagoe, Naoshi Dohmae, Takehiro Suzuki, Tetsuro Suzuki, Masamichi Muramatsu, Takaji Wakita, Hideki Aizaki, J.-H. James Ou. Surfeit 4 Contributes to the Replication of Hepatitis C Virus Using Double-Membrane Vesicles. Journal of Virology 2020; 94(2) doi: 10.1128/JVI.00858-19
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42 |
Christine E. Peters, Jan E. Carette. Return of the Neurotropic Enteroviruses: Co-Opting Cellular Pathways for Infection. Viruses 2021; 13(2): 166 doi: 10.3390/v13020166
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43 |
Xueting Wang, Juncai Ma, Xuejiao Jin, Ning Yue, Peng Gao, Keith Ka Ki Mai, Xian‐Bing Wang, Dawei Li, Byung‐Ho Kang, Yongliang Zhang. Three‐dimensional reconstruction and comparison of vacuolar membranes in response to viral infection. Journal of Integrative Plant Biology 2021; 63(2): 353 doi: 10.1111/jipb.13027
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44 |
Heyrhyoung Lyoo, Hilde M. van der Schaar, Cristina M. Dorobantu, Huib H. Rabouw, Jeroen R. P. M. Strating, Frank J. M. van Kuppeveld, Vincent R. Racaniello. ACBD3 Is an Essential Pan-enterovirus Host Factor That Mediates the Interaction between Viral 3A Protein and Cellular Protein PI4KB. mBio 2019; 10(1) doi: 10.1128/mBio.02742-18
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45 |
Isabel Fernández-de-Castro, Cristina Risco. Imaging RNA Virus Replication Assemblies: Bunyaviruses and Reoviruses. Future Virology 2014; 9(12): 1089 doi: 10.2217/fvl.14.95
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46 |
Paloma Hidalgo, Lourdes Anzures, Armando Hernández-Mendoza, Adán Guerrero, Christopher D. Wood, Margarita Valdés, Thomas Dobner, Ramón A. Gonzalez, R. M. Sandri-Goldin. Morphological, Biochemical, and Functional Study of Viral Replication Compartments Isolated from Adenovirus-Infected Cells. Journal of Virology 2016; 90(7): 3411 doi: 10.1128/JVI.00033-16
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47 |
Claude Pasquier, Alain Robichon. Computational search of hybrid human/SARS-CoV-2 dsRNA reveals unique viral sequences that diverge from those of other coronavirus strains. Heliyon 2021; 7(6): e07284 doi: 10.1016/j.heliyon.2021.e07284
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48 |
Xuejiao Jin, Xiuling Cao, Xueting Wang, Jun Jiang, Juan Wan, Jean-François Laliberté, Yongliang Zhang. Three-Dimensional Architecture and Biogenesis of Membrane Structures Associated with Plant Virus Replication. Frontiers in Plant Science 2018; 9 doi: 10.3389/fpls.2018.00057
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49 |
Hyewon Byun, Yongqiang Gou, Adam Zook, Mary M. Lozano, Jaquelin P. Dudley. ERAD and how viruses exploit it. Frontiers in Microbiology 2014; 5 doi: 10.3389/fmicb.2014.00330
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50 |
Partha Chattopadhyay, Janani Srinivasa Vasudevan, Rajesh Pandey. Noncoding RNAs: modulators and modulatable players during infection-induced stress response. Briefings in Functional Genomics 2021; 20(1): 28 doi: 10.1093/bfgp/elaa026
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51 |
Keisuke Tabata, Christopher J. Neufeldt, Ralf Bartenschlager. Hepatitis C Virus Replication. Cold Spring Harbor Perspectives in Medicine 2020; 10(3): a037093 doi: 10.1101/cshperspect.a037093
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52 |
Maximilian Wei-Lin Popp, Hana Cho, Lynne E. Maquat. Viral subversion of nonsense-mediated mRNA decay. RNA 2020; 26(11): 1509 doi: 10.1261/rna.076687.120
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53 |
Sergey Y. Morozov, Andrey G. Solovyev. Small hydrophobic viral proteins involved in intercellular movement of diverse plant virus genomes. AIMS Microbiology 2020; 6(3): 305 doi: 10.3934/microbiol.2020019
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54 |
Zhenlu Zhang, Guijuan He, Gil-Soo Han, Jiantao Zhang, Nicholas Catanzaro, Arturo Diaz, Zujian Wu, George M. Carman, Lianhui Xie, Xiaofeng Wang, Aiming Wang. Host Pah1p phosphatidate phosphatase limits viral replication by regulating phospholipid synthesis. PLOS Pathogens 2018; 14(4): e1006988 doi: 10.1371/journal.ppat.1006988
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55 |
Mirko Cortese, Ji-Young Lee, Berati Cerikan, Christopher J. Neufeldt, Viola M.J. Oorschot, Sebastian Köhrer, Julian Hennies, Nicole L. Schieber, Paolo Ronchi, Giulia Mizzon, Inés Romero-Brey, Rachel Santarella-Mellwig, Martin Schorb, Mandy Boermel, Karel Mocaer, Marianne S. Beckwith, Rachel M. Templin, Viktoriia Gross, Constantin Pape, Christian Tischer, Jamie Frankish, Natalie K. Horvat, Vibor Laketa, Megan Stanifer, Steeve Boulant, Alessia Ruggieri, Laurent Chatel-Chaix, Yannick Schwab, Ralf Bartenschlager. Integrative Imaging Reveals SARS-CoV-2-Induced Reshaping of Subcellular Morphologies. Cell Host & Microbe 2020; 28(6): 853 doi: 10.1016/j.chom.2020.11.003
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56 |
Christopher J. Neufeldt, Michael A. Joyce, Nicholas Van Buuren, Aviad Levin, Karla Kirkegaard, Michael Gale Jr., D. Lorne J. Tyrrell, Richard W. Wozniak, Richard J. Kuhn. The Hepatitis C Virus-Induced Membranous Web and Associated Nuclear Transport Machinery Limit Access of Pattern Recognition Receptors to Viral Replication Sites. PLOS Pathogens 2016; 12(2): e1005428 doi: 10.1371/journal.ppat.1005428
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57 |
Weiwei Li, Yanming Zhang, C. Cheng Kao. The classic swine fever virus (CSFV) core protein can enhance de novo-initiated RNA synthesis by the CSFV polymerase NS5B. Virus Genes 2014; 49(1): 106 doi: 10.1007/s11262-014-1080-x
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58 |
Paloma Hidalgo, Ramón A. González. Molecular Medical Microbiology. 2024; : 2115 doi: 10.1016/B978-0-12-818619-0.00080-0
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59 |
Yifan Xing, Qian Zhang, Yaming Jiu. Virus Infected Cells. Subcellular Biochemistry 2023; 106: 333 doi: 10.1007/978-3-031-40086-5_12
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60 |
Jing Zou, Le Tian Lee, Qing Yin Wang, Xuping Xie, Siyan Lu, Yin Hoe Yau, Zhiming Yuan, Susana Geifman Shochat, Congbao Kang, Julien Lescar, Pei-Yong Shi, T. S. Dermody. Mapping the Interactions between the NS4B and NS3 Proteins of Dengue Virus. Journal of Virology 2015; 89(7): 3471 doi: 10.1128/JVI.03454-14
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61 |
Keerthi Gottipati, Michael Woodson, Kyung H. Choi. Membrane binding and rearrangement by chikungunya virus capping enzyme nsP1. Virology 2020; 544: 31 doi: 10.1016/j.virol.2020.02.006
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62 |
Carolin Zitzmann, Lars Kaderali, Alan S. Perelson, Kathryn Miller-Jensen. Mathematical modeling of hepatitis C RNA replication, exosome secretion and virus release. PLOS Computational Biology 2020; 16(11): e1008421 doi: 10.1371/journal.pcbi.1008421
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63 |
Peter D. Nagy, Jeroen R. P. M. Strating, Frank J. M. van Kuppeveld, Richard C. Condit. Building Viral Replication Organelles: Close Encounters of the Membrane Types. PLOS Pathogens 2016; 12(10): e1005912 doi: 10.1371/journal.ppat.1005912
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64 |
Kazuhiro Ishibashi, Masayuki Ishikawa. Mechanisms of tomato mosaic virus RNA replication and its inhibition by the host resistance factor Tm-1. Current Opinion in Virology 2014; 9: 8 doi: 10.1016/j.coviro.2014.08.005
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65 |
Hongliang Wang, Andrew Tai. Mechanisms of Cellular Membrane Reorganization to Support Hepatitis C Virus Replication. Viruses 2016; 8(5): 142 doi: 10.3390/v8050142
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66 |
Carolin Zitzmann, Christopher Dächert, Bianca Schmid, Hilde van der Schaar, Martijn van Hemert, Alan S. Perelson, Frank J. M. van Kuppeveld, Ralf Bartenschlager, Marco Binder, Lars Kaderali, Peter M. Kasson. Mathematical modeling of plus-strand RNA virus replication to identify broad-spectrum antiviral treatment strategies. PLOS Computational Biology 2023; 19(4): e1010423 doi: 10.1371/journal.pcbi.1010423
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67 |
Andrew M. Skidmore, Steven B. Bradfute. The life cycle of the alphaviruses: From an antiviral perspective. Antiviral Research 2023; 209: 105476 doi: 10.1016/j.antiviral.2022.105476
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68 |
David Paul, Ralf Bartenschlager. A sensor at the lipid‐protein interface: Lipid peroxidation controls hepatitis C virus replication. Hepatology 2015; 61(3): 1083 doi: 10.1002/hep.27637
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69 |
Kirsi Hellström, Katri Kallio, Age Utt, Tania Quirin, Eija Jokitalo, Andres Merits, Tero Ahola, Anne E. Simon. Partially Uncleaved Alphavirus Replicase Forms Spherule Structures in the Presence and Absence of RNA Template. Journal of Virology 2017; 91(18) doi: 10.1128/JVI.00787-17
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70 |
Hanne Merethe Haatveit, Ingvild B. Nyman, Turhan Markussen, Øystein Wessel, Maria Krudtaa Dahle, Espen Rimstad. The non-structural protein μNS of piscine orthoreovirus (PRV) forms viral factory-like structures. Veterinary Research 2016; 47(1) doi: 10.1186/s13567-015-0302-0
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71 |
Yaw Bia Tan, David Chmielewski, Michelle Cheok Yien Law, Kuo Zhang, Yu He, Muyuan Chen, Jing Jin, Dahai Luo. Molecular architecture of the Chikungunya virus replication complex. Science Advances 2022; 8(48) doi: 10.1126/sciadv.add2536
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72 |
Sonam Bhatia, Naveen Narayanan, Shilpi Nagpal, Deepak T. Nair. Antiviral therapeutics directed against RNA dependent RNA polymerases from positive-sense viruses. Molecular Aspects of Medicine 2021; 81: 101005 doi: 10.1016/j.mam.2021.101005
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73 |
Katri Kallio, Kirsi Hellström, Eija Jokitalo, Tero Ahola, A. Simon. RNA Replication and Membrane Modification Require the Same Functions of Alphavirus Nonstructural Proteins. Journal of Virology 2016; 90(3): 1687 doi: 10.1128/JVI.02484-15
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74 |
Helena J. Maier, Benjamin W. Neuman, Erica Bickerton, Sarah M. Keep, Hasan Alrashedi, Ross Hall, Paul Britton. Extensive coronavirus-induced membrane rearrangements are not a determinant of pathogenicity. Scientific Reports 2016; 6(1) doi: 10.1038/srep27126
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75 |
Isabel Fernández de Castro, Paula F. Zamora, Laura Ooms, José Jesús Fernández, Caroline M.-H. Lai, Bernardo A. Mainou, Terence S. Dermody, Cristina Risco, Anne Moscona. Reovirus Forms Neo-Organelles for Progeny Particle Assembly within Reorganized Cell Membranes. mBio 2014; 5(1) doi: 10.1128/mBio.00931-13
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76 |
Wei Zhang, Keren Chen, Xueqing Zhang, Chunhe Guo, Yaosheng Chen, Xiaohong Liu, Guihong Zhang. An integrated analysis of membrane remodeling during porcine reproductive and respiratory syndrome virus replication and assembly. PLOS ONE 2018; 13(7): e0200919 doi: 10.1371/journal.pone.0200919
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77 |
Thorsten G. Müller, Volkan Sakin, Barbara Müller. A Spotlight on Viruses—Application of Click Chemistry to Visualize Virus-Cell Interactions. Molecules 2019; 24(3): 481 doi: 10.3390/molecules24030481
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78 |
GUILHERME G. TRINDADE, SAMYRA M.C. CAXITO, ALESSANDRA REJANE E.O. XAVIER, MAURO A.S. XAVIER, FABIANA BRANDÃO. COVID-19: therapeutic approaches description and discussion. Anais da Academia Brasileira de Ciências 2020; 92(2) doi: 10.1590/0001-3765202020200466
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79 |
David Paul, Vanesa Madan, Ralf Bartenschlager. Hepatitis C Virus RNA Replication and Assembly: Living on the Fat of the Land. Cell Host & Microbe 2014; 16(5): 569 doi: 10.1016/j.chom.2014.10.008
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80 |
Laura Bankers, Caitlin Miller, Guoqi Liu, Chommanart Thongkittidilok, James Morrison, Eric M. Poeschla. Development of IFN-Stimulated Gene Expression from Embryogenesis through Adulthood, with and without Constitutive MDA5 Pathway Activation. The Journal of Immunology 2020; 204(10): 2791 doi: 10.4049/jimmunol.1901421
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81 |
Adam J. López-Denman, Daniel E. Tuipulotu, Jessica B. Ross, Alice M. Trenerry, Peter A. White, Jason M. Mackenzie. Nuclear localisation of West Nile virus NS5 protein modulates host gene expression. Virology 2021; 559: 131 doi: 10.1016/j.virol.2021.03.018
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82 |
Gerwyn Morris, Tatiana Barichello, Brendon Stubbs, Cristiano A. Köhler, André F. Carvalho, Michael Maes. Zika Virus as an Emerging Neuropathogen: Mechanisms of Neurovirulence and Neuro-Immune Interactions. Molecular Neurobiology 2018; 55(5): 4160 doi: 10.1007/s12035-017-0635-y
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83 |
Diede Oudshoorn, Barbara van der Hoeven, Ronald W. A. L. Limpens, Corrine Beugeling, Eric J. Snijder, Montserrat Bárcena, Marjolein Kikkert, Peter Palese, Adolfo García-Sastre, Inés Romero-Brey. Antiviral Innate Immune Response Interferes with the Formation of Replication-Associated Membrane Structures Induced by a Positive-Strand RNA Virus. mBio 2016; 7(6) doi: 10.1128/mBio.01991-16
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84 |
Woan-Ing Twu, Ji-Young Lee, Heeyoung Kim, Vibhu Prasad, Berati Cerikan, Uta Haselmann, Keisuke Tabata, Ralf Bartenschlager. Contribution of autophagy machinery factors to HCV and SARS-CoV-2 replication organelle formation. Cell Reports 2021; 37(8): 110049 doi: 10.1016/j.celrep.2021.110049
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85 |
Debora Stelitano, Mirko Cortese. Electron microscopy: The key to resolve RNA viruses replication organelles. Molecular Microbiology 2024; 121(4): 679 doi: 10.1111/mmi.15173
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86 |
Nadya Urakova, Tanja Strive, Michael Frese, Naomi Forrester. RNA-Dependent RNA Polymerases of Both Virulent and Benign Rabbit Caliciviruses Induce Striking Rearrangement of Golgi Membranes. PLOS ONE 2017; 12(1): e0169913 doi: 10.1371/journal.pone.0169913
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87 |
Wai-Lok Yau, Van Nguyen-Dinh, Elin Larsson, Richard Lindqvist, Anna K. Överby, Richard Lundmark, Julie K. Pfeiffer. Model System for the Formation of Tick-Borne Encephalitis Virus Replication Compartments without Viral RNA Replication. Journal of Virology 2019; 93(18) doi: 10.1128/JVI.00292-19
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88 |
Eliana G. Acosta, Anil Kumar, Ralf Bartenschlager. . Advances in Virus Research 2014; 88: 1 doi: 10.1016/B978-0-12-800098-4.00001-5
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89 |
Pavel Montes de Oca-B. Evidence of mitochondria origin of SARS-CoV-2 double-membrane vesicles: a review.. F1000Research 2022; 10: 1009 doi: 10.12688/f1000research.73170.2
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90 |
Katrien C. K. Poelaert, Regina G. D. M. van Kleef, Mengying Liu, Arno van Vliet, Heyrhyoung Lyoo, Lora-Sophie Gerber, Yoshiki Narimatsu, Christian Büll, Henrik Clausen, Erik de Vries, Remco H. S. Westerink, Frank J. M. van Kuppeveld, Carolyn B. Coyne. Enterovirus D-68 Infection of Primary Rat Cortical Neurons: Entry, Replication, and Functional Consequences. mBio 2023; 14(2) doi: 10.1128/mbio.00245-23
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