Serveur d'exploration SRAS - Exploration (Accueil)

Index « MeshFr.i » - entrée « Appareil de Golgi »
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Apoptose < Appareil de Golgi < Appareil respiratoire  Facettes :

List of bibliographic references indexed by Appareil de Golgi

Number of relevant bibliographic references: 28.
[0-20] [0 - 20][0 - 28][20-27][20-40]
Ident.Authors (with country if any)Title
000F27 (2016) Makoto Ujike ; Cheng Huang ; Kazuya Shirato ; Shinji Makino ; Fumihiro TaguchiThe contribution of the cytoplasmic retrieval signal of severe acute respiratory syndrome coronavirus to intracellular accumulation of S proteins and incorporation of S protein into virus-like particles
001542 (2014) Rinki Minakshi ; Kartika Padhan [Inde]The YXXΦ motif within the severe acute respiratory syndrome coronavirus (SARS-CoV) 3a protein is crucial for its intracellular transport.
001562 (2014) Kam-Leung Siu [Hong Kong] ; Chi-Ping Chan [Hong Kong] ; Kin-Hang Kok [Hong Kong] ; Patrick Chiu-Yat Woo [Hong Kong] ; Dong-Yan Jin [Hong Kong]Suppression of innate antiviral response by severe acute respiratory syndrome coronavirus M protein is mediated through the first transmembrane domain.
001566 (2014) Yan Li [Singapour] ; Wahyu Surya ; Stephanie Claudine ; Jaume TorresStructure of a conserved Golgi complex-targeting signal in coronavirus envelope proteins.
002036 (2011) Jose L. Nieto-Torres [Espagne] ; Marta L. Dediego [Espagne] ; Enrique Álvarez [Espagne] ; Jose M. Jiménez-Guarde O [Espagne] ; Jose A. Regla-Nava [Espagne] ; Mercedes Llorente [Espagne] ; Leonor Kremer [Espagne] ; Shen Shuo [Singapour] ; Luis Enjuanes [Espagne]Subcellular location and topology of severe acute respiratory syndrome coronavirus envelope protein
002102 (2011) Jennifer R. Cohen [États-Unis] ; Lisa D. Lin ; Carolyn E. MachamerIdentification of a Golgi complex-targeting signal in the cytoplasmic tail of the severe acute respiratory syndrome coronavirus envelope protein.
002420 (2010) Eric C. Freundt [États-Unis] ; Li Yu ; Cynthia S. Goldsmith ; Sarah Welsh ; Aaron Cheng ; Boyd Yount ; Wei Liu ; Matthew B. Frieman ; Ursula J. Buchholz ; Gavin R. Screaton ; Jennifer Lippincott-Schwartz ; Sherif R. Zaki ; Xiao-Ning Xu ; Ralph S. Baric ; Kanta Subbarao ; Michael J. LenardoThe open reading frame 3a protein of severe acute respiratory syndrome-associated coronavirus promotes membrane rearrangement and cell death.
002455 (2010) Ying-Tzu Tseng [Taïwan] ; Shiu-Mei Wang ; Kuo-Jung Huang ; Amber I-Ru Lee ; Chien-Cheng Chiang ; Chin-Tien WangSelf-assembly of severe acute respiratory syndrome coronavirus membrane protein.
002588 (2010) Corrin E. Mcbride [États-Unis] ; Carolyn E. MachamerA single tyrosine in the severe acute respiratory syndrome coronavirus membrane protein cytoplasmic tail is important for efficient interaction with spike protein.
002A07 (2009) Daniel Voss [Allemagne] ; Susanne Pfefferle ; Christian Drosten ; Lea Stevermann ; Elisabetta Traggiai ; Antonio Lanzavecchia ; Stephan BeckerStudies on membrane topology, N-glycosylation and functionality of SARS-CoV membrane protein.
002F84 (2008) Scott R. Schaecher [États-Unis] ; Michael S. Diamond ; Andrew PekoszThe transmembrane domain of the severe acute respiratory syndrome coronavirus ORF7b protein is necessary and sufficient for its retention in the Golgi complex.
003575 (2007) Silke Stertz [Allemagne] ; Mike Reichelt ; Martin Spiegel ; Thomas Kuri ; Luis Martínez-Sobrido ; Adolfo García-Sastre ; Friedemann Weber ; Georg KochsThe intracellular sites of early replication and budding of SARS-coronavirus.
003594 (2007) Kartika Padhan [Inde] ; Charu Tanwar ; Amjad Hussain ; Pui Yan Hui ; Man Yan Lee ; Chung Yan Cheung ; Joseph Sriyal Malik Peiris ; Shahid JameelSevere acute respiratory syndrome coronavirus Orf3a protein interacts with caveolin.
003B16 (2007) Corrin E. Mcbride [États-Unis] ; JIE LI [États-Unis] ; Carolyn E. Machamer [États-Unis]The cytoplasmic tail of the severe acute respiratory syndrome coronavirus spike protein contains a novel endoplasmic reticulum retrieval signal that binds COPI and promotes interaction with membrane protein
003B33 (2007) Matthew Frieman [États-Unis] ; Boyd Yount [États-Unis] ; Mark Heise [États-Unis] ; Sarah A. Kopecky-Bromberg [États-Unis] ; Peter Palese [États-Unis] ; Ralph S. Baric [États-Unis]Severe acute respiratory syndrome coronavirus ORF6 antagonizes STAT1 function by sequestering nuclear import factors on the rough endoplasmic reticulum/golgi membrane
003C87 (2006) Lisa A. Lopez [États-Unis] ; Ariel Jones ; William D. Arndt ; Brenda G. HogueSubcellular localization of SARS-CoV structural proteins.
003C89 (2006) Andrew Pekosz [États-Unis] ; Scott R. Schaecher ; Michael S. Diamond ; Daved H. Fremont ; Amy C. Sims ; Ralph S. BaricStructure, expression, and intracellular localization of the SARS-CoV accessory proteins 7a and 7b.
003F67 (2006) Y. Liao [Singapour] ; Q. Yuan ; J. Torres ; J P Tam ; D X LiuBiochemical and functional characterization of the membrane association and membrane permeabilizing activity of the severe acute respiratory syndrome coronavirus envelope protein.
003F78 (2006) Bianca M. Bussmann [Allemagne] ; Sven Reiche ; Lotta H. Jacob ; Jan Matthias Braun ; Christian JassoyAntigenic and cellular localisation analysis of the severe acute respiratory syndrome coronavirus nucleocapsid protein using monoclonal antibodies.
004015 (2006) Sarah A. Kopecky-Bromberg [États-Unis] ; Luis Martinez-Sobrido ; Peter Palese7a protein of severe acute respiratory syndrome coronavirus inhibits cellular protein synthesis and activates p38 mitogen-activated protein kinase.
004609 (2005) Xiaoling Yuan [République populaire de Chine] ; Jianyong Li ; Yajun Shan ; Zhen Yang ; Zhenhu Zhao ; Bo Chen ; Zhenyu Yao ; Bo Dong ; Shengqi Wang ; Jiapei Chen ; Yuwen CongSubcellular localization and membrane association of SARS-CoV 3a protein.

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