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Index « MedMesh.i » - entrée « Cytoplasm »
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Cytopathogenic Effect, Viral < Cytoplasm < Cytoplasmic Vesicles  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
000866 (2019) Garret N. Gomez [États-Unis] ; Fareeha Abrar [États-Unis] ; Maya P. Dodhia [États-Unis] ; Fabiola G. Gonzalez [États-Unis] ; Anita Nag [États-Unis]SARS coronavirus protein nsp1 disrupts localization of Nup93 from the nuclear pore complex.
000B40 (2017) Jibin Sadasivan [Inde] ; Manmeet Singh ; Jayasri Das SarmaCytoplasmic tail of coronavirus spike protein has intracellular targeting signals.
000D93 (2015) Kumari G. Lokugamage [États-Unis] ; Krishna Narayanan [États-Unis] ; Keisuke Nakagawa [États-Unis] ; Kaori Terasaki [États-Unis] ; Sydney I. Ramirez [États-Unis] ; Chien-Te K. Tseng [États-Unis] ; Shinji Makino [États-Unis]Middle East Respiratory Syndrome Coronavirus nsp1 Inhibits Host Gene Expression by Selectively Targeting mRNAs Transcribed in the Nucleus while Sparing mRNAs of Cytoplasmic Origin.
000E91 (2014) Melanie L. Yarbrough [États-Unis] ; Miguel A. Mata ; Ramanavelan Sakthivel ; Beatriz M A. FontouraViral subversion of nucleocytoplasmic trafficking.
000F00 (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.
000F04 (2014) Rinki Minakshi [Inde] ; Kartika Padhan [Inde] ; Safikur Rehman [Inde] ; Md Imtaiyaz Hassan [Inde] ; Faizan Ahmad [Inde]The SARS Coronavirus 3a protein binds calcium in its cytoplasmic domain.
001150 (2013) Zhaohui Qian [États-Unis] ; Emily A. Travanty ; Lauren Oko ; Karen Edeen ; Andrew Berglund ; Jieru Wang ; Yoko Ito ; Kathryn V. Holmes ; Robert J. MasonInnate immune response of human alveolar type II cells infected with severe acute respiratory syndrome-coronavirus.
001373 (2012) Jianzhong Cao [États-Unis] ; Xuming ZhangComparative in vivo analysis of the nsp15 endoribonuclease of murine, porcine and severe acute respiratory syndrome coronaviruses.
001465 (2011) Kazuya Shirato [Japon] ; Madoka Maejima ; Shutoku Matsuyama ; Makoto Ujike ; Ayako Miyazaki ; Natsumi Takeyama ; Hidetoshi Ikeda ; Fumihiro TaguchiMutation in the cytoplasmic retrieval signal of porcine epidemic diarrhea virus spike (S) protein is responsible for enhanced fusion activity.
001571 (2010) Linghui Xu [Singapour] ; Siti Khadijah ; Shouguo Fang ; Li Wang ; Felicia P L. Tay ; Ding Xiang LiuThe cellular RNA helicase DDX1 interacts with coronavirus nonstructural protein 14 and enhances viral replication.
001602 (2010) Natalia Vasilenko [Canada] ; Igor Moshynskyy ; Alexander ZakhartchoukSARS coronavirus protein 7a interacts with human Ap4A-hydrolase.
001A31 (2008) Martijn J. Van Hemert [Pays-Bas] ; Sjoerd H E. Van Den Worm ; Kèvin Knoops ; A Mieke Mommaas ; Alexander E. Gorbalenya ; Eric J. SnijderSARS-coronavirus replication/transcription complexes are membrane-protected and need a host factor for activity in vitro.
001B80 (2008) Claudia Diemer [Allemagne] ; Martha Schneider ; Judith Seebach ; Janine Quaas ; Gert Frösner ; Hermann M. Sch Tzl ; Sabine GilchCell type-specific cleavage of nucleocapsid protein by effector caspases during SARS coronavirus infection.
001B96 (2008) Konrad Stadler [Italie] ; Huy Riem Ha ; Vincenzo Ciminale ; Carlo Spirli ; Giulietta Saletti ; Marco Schiavon ; Daniela Bruttomesso ; Laurent Bigler ; Ferenc Follath ; Andrea Pettenazzo ; Aldo BaritussioAmiodarone alters late endosomes and inhibits SARS coronavirus infection at a post-endosomal level.
001C57 (2007) Purnima Kumar [Inde] ; Vithiagaran Gunalan ; Boping Liu ; Vincent T K. Chow ; Julian Druce ; Chris Birch ; Mike Catton ; Burtram C. Fielding ; Yee-Joo Tan ; Sunil K. LalThe nonstructural protein 8 (nsp8) of the SARS coronavirus interacts with its ORF6 accessory protein.
001C60 (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.
001C63 (2007) Corrin E. Mcbride [États-Unis] ; Jie Li ; Carolyn E. MachamerThe 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.
001D49 (2007) Xue Zhang [République populaire de Chine] ; Kailang Wu ; Di Wang ; Xin Yue ; Degui Song ; Ying Zhu ; Jianguo WuNucleocapsid protein of SARS-CoV activates interleukin-6 expression through cellular transcription factor NF-kappaB.
001E55 (2007) Yuuki Inoue [Japon] ; Nobuyuki Tanaka ; Yoshinori Tanaka ; Shingo Inoue ; Kouichi Morita ; Min Zhuang ; Toshio Hattori ; Kazuo SugamuraClathrin-dependent entry of severe acute respiratory syndrome coronavirus into target cells expressing ACE2 with the cytoplasmic tail deleted.
001F56 (2006) Choong-Tat Keng ; Yook-Wah Choi ; Matthijs R A. Welkers ; Daphne Z L. Chan ; Shuo Shen ; Seng Gee Lim ; Wanjin Hong ; Yee-Joo TanThe human severe acute respiratory syndrome coronavirus (SARS-CoV) 8b protein is distinct from its counterpart in animal SARS-CoV and down-regulates the expression of the envelope protein in infected cells.
002273 (2006) Q. Yuan [Singapour] ; Y. Liao ; J. Torres ; J P Tam ; D X LiuBiochemical evidence for the presence of mixed membrane topologies of the severe acute respiratory syndrome coronavirus envelope protein expressed in mammalian cells.

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