Serveur d'exploration SRAS - Curation (Ncbi)

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Cell Fractionation < Cell Fusion < Cell Fusion (physiology)  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 36.
[0-20] [0 - 20][0 - 36][20-35][20-40]
Ident.Authors (with country if any)Title
000002 (1999) Z. Luo [États-Unis] ; A M Matthews ; S R WeissAmino acid substitutions within the leucine zipper domain of the murine coronavirus spike protein cause defects in oligomerization and the ability to induce cell-to-cell fusion.
000006 (2000) G J Godeke [Pays-Bas] ; C A De Haan ; J W Rossen ; H. Vennema ; P J RottierAssembly of spikes into coronavirus particles is mediated by the carboxy-terminal domain of the spike protein.
000008 (2000) S. Matsuyama [Japon] ; F. TaguchiImpaired entry of soluble receptor-resistant mutants of mouse hepatitis virus into cells expressing MHVR2 receptor.
000009 (2000) Fumihiro Taguchi ; Yohko K. ShimazakiFunctional analysis of an epitope in the S2 subunit of the murine coronavirus spike protein: involvement in fusion activity.
000645 (2004) Graham Simmons [États-Unis] ; Jacqueline D. Reeves ; Andrew J. Rennekamp ; Sean M. Amberg ; Andrew J. Piefer ; Paul BatesCharacterization of severe acute respiratory syndrome-associated coronavirus (SARS-CoV) spike glycoprotein-mediated viral entry.
000B87 (2004) X. Xiao [États-Unis] ; D S DimitrovThe SARS-CoV S glycoprotein.
001102 (2005) Chad M. Petit [États-Unis] ; Jeffrey M. Melancon ; Vladimir N. Chouljenko ; Robin Colgrove ; Michael Farzan ; David M. Knipe ; K G KousoulasGenetic analysis of the SARS-coronavirus spike glycoprotein functional domains involved in cell-surface expression and cell-to-cell fusion.
001169 (2005) Olen M. Stephens [États-Unis] ; Sunghwan Kim ; Brett D. Welch ; Michael E. Hodsdon ; Michael S. Kay ; Alanna SchepartzInhibiting HIV fusion with a beta-peptide foldamer.
001411 (2006) Kathryn E. Follis [États-Unis] ; Joanne York ; Jack H. NunbergFurin cleavage of the SARS coronavirus spike glycoprotein enhances cell-cell fusion but does not affect virion entry.
001628 (2006) Yonggang Sha [République populaire de Chine] ; Yingliang Wu ; Zhijian Cao ; Xiuling Xu ; Wenlan Wu ; Dahe Jiang ; Xin Mao ; Hui Liu ; Ying Zhu ; Rui Gong ; Wenxin LiA convenient cell fusion assay for the study of SARS-CoV entry and inhibition.
001779 (2007) Chad M. Petit [États-Unis] ; Vladimir N. Chouljenko ; Arun Iyer ; Robin Colgrove ; Michael Farzan ; David M. Knipe ; K G KousoulasPalmitoylation of the cysteine-rich endodomain of the SARS-coronavirus spike glycoprotein is important for spike-mediated cell fusion.
001990 (2007) Chih-Fong Chou [Singapour] ; Shuo Shen ; Geetha Mahadevappa ; Seng Gee Lim ; Wanjin Hong ; Yee-Joo TanThe use of hepatitis C virus NS3/4A and secreted alkaline phosphatase to quantitate cell-cell membrane fusion mediated by severe acute respiratory syndrome coronavirus S protein and the receptor angiotensin-converting enzyme 2.
001A14 (2007) Zhongyu Zhu [États-Unis] ; Samitabh Chakraborti [États-Unis] ; Yuxian He [États-Unis] ; Anjeanette Roberts ; Tim Sheahan [États-Unis] ; Xiaodong Xiao ; Lisa E. Hensley [États-Unis] ; Ponraj Prabakaran ; Barry Rockx [États-Unis] ; Igor A. Sidorov ; Davide Corti ; Leatrice Vogel ; Yang Feng ; Jae-Ouk Kim [États-Unis] ; Lin-Fa Wang [Australie] ; Ralph Baric [États-Unis] ; Antonio Lanzavecchia ; Kristopher M. Curtis [États-Unis] ; Gary J. Nabel [États-Unis] ; Kanta Subbarao ; Shibo Jiang [États-Unis] ; Dimiter S. DimitrovPotent cross-reactive neutralization of SARS coronavirus isolates by human monoclonal antibodies
001B59 (2008) Megan W. Howard [États-Unis] ; Emily A. Travanty ; Scott A. Jeffers ; M K Smith ; Sonia T. Wennier ; Larissa B. Thackray ; Kathryn V. HolmesAromatic amino acids in the juxtamembrane domain of severe acute respiratory syndrome coronavirus spike glycoprotein are important for receptor-dependent virus entry and cell-cell fusion.
001D44 (2008) Rie Watanabe [Japon] ; Shutoku Matsuyama ; Kazuya Shirato ; Masami Maejima ; Shuetsu Fukushi ; Shigeru Morikawa ; Fumihiro TaguchiEntry from the cell surface of severe acute respiratory syndrome coronavirus with cleaved S protein as revealed by pseudotype virus bearing cleaved S protein.
001E80 (2009) Sandrine Belouzard [États-Unis] ; Victor C. Chu ; Gary R. WhittakerActivation of the SARS coronavirus spike protein via sequential proteolytic cleavage at two distinct sites.
001F17 (2009) Ikenna G. Madu [États-Unis] ; Shoshannah L. Roth [États-Unis] ; Sandrine Belouzard [États-Unis] ; Gary R. Whittaker [États-Unis]Characterization of a Highly Conserved Domain within the Severe Acute Respiratory Syndrome Coronavirus Spike Protein S2 Domain with Characteristics of a Viral Fusion Peptide▿
001F51 (2009) Yoshiyuki Yamada ; Ding Xiang LiuProteolytic activation of the spike protein at a novel RRRR/S motif is implicated in furin-dependent entry, syncytium formation, and infectivity of coronavirus infectious bronchitis virus in cultured cells.
001F60 (2009) Yoshiyuki Yamada [Singapour] ; Xiao Bo Liu ; Shou Guo Fang ; Felicia P L. Tay ; Ding Xiang LiuAcquisition of cell-cell fusion activity by amino acid substitutions in spike protein determines the infectivity of a coronavirus in cultured cells.
001F90 (2009) Ikenna G. Madu ; Sandrine Belouzard ; Gary R. WhittakerSARS-coronavirus spike S2 domain flanked by cysteine residues C822 and C833 is important for activation of membrane fusion
002054 (2009) Jeroen Corver [Pays-Bas] ; Rene Broer ; Puck Van Kasteren ; Willy SpaanMutagenesis of the transmembrane domain of the SARS coronavirus spike glycoprotein: refinement of the requirements for SARS coronavirus cell entry.

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