Serveur d'exploration SRAS - Curation (Ncbi)

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Cell Nucleus (immunology) < Cell Nucleus (metabolism) < Cell Nucleus (pathology)  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 16.
Ident.Authors (with country if any)Title
000199 (2003) S. Shen [Singapour] ; Z L Wen ; D X LiuEmergence of a coronavirus infectious bronchitis virus mutant with a truncated 3b gene: functional characterization of the 3b protein in pathogenesis and replication.
000B90 (2004) Tetsuya Mizutani [Japon] ; Shuetsu Fukushi ; Masaaki Murakami ; Toshio Hirano ; Masayuki Saijo ; Ichiro Kurane ; Shigeru MorikawaTyrosine dephosphorylation of STAT3 in SARS coronavirus-infected Vero E6 cells.
001036 (2005) Khalid Amine Timani [République populaire de Chine] ; Qingjiao Liao ; Linbai Ye ; Yingchun Zeng ; Jing Liu ; Yi Zheng ; Li Ye ; Xiaojun Yang ; Kong Lingbao ; Jingrong Gao ; Ying ZhuNuclear/nucleolar localization properties of C-terminal nucleocapsid protein of SARS coronavirus.
001115 (2005) Milan Surjit [Inde] ; Ravinder Kumar ; Rabi N. Mishra ; Malireddy K. Reddy ; Vincent T K. Chow ; Sunil K. LalThe severe acute respiratory syndrome coronavirus nucleocapsid protein is phosphorylated and localizes in the cytoplasm by 14-3-3-mediated translocation.
001283 (2005) Hua Geng [République populaire de Chine] ; Yuet-Man Liu ; Wai-Sing Chan ; Anthony Wing-Ip Lo ; Deborah Mun-Yee Au ; Mary Miu-Yee Waye ; Yuan-Yuan HoThe putative protein 6 of the severe acute respiratory syndrome-associated coronavirus: expression and functional characterization.
001686 (2006) Luis Enjuanes [Espagne] ; Fernando Almazán ; Isabel Sola ; Sonia Zú Iga ; Enrique Alvarez ; Juan Reguera ; Carmen CapiscolBiochemical aspects of coronavirus replication.
001A05 (2007) Matthew Frieman [États-Unis] ; Boyd Yount ; Mark Heise ; Sarah A. Kopecky-Bromberg ; Peter Palese ; Ralph S. BaricSevere acute respiratory syndrome coronavirus ORF6 antagonizes STAT1 function by sequestering nuclear import factors on the rough endoplasmic reticulum/Golgi membrane.
001A43 (2007) Xiaonan Fang [République populaire de Chine] ; Jinrong Gao ; Hong Zheng ; Baozong Li ; Lingbao Kong ; Yijuan Zhang ; Wei Wang ; Yingchun Zeng ; Linbai YeThe membrane protein of SARS-CoV suppresses NF-kappaB activation.
001E98 (2009) Eric C. Freundt ; Li Yu ; Elizabeth Park ; Michael J. Lenardo ; Xiao-Ning XuMolecular Determinants for Subcellular Localization of the Severe Acute Respiratory Syndrome Coronavirus Open Reading Frame 3b Protein ▿
002157 (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.
002200 (2010) Snawar Hussain [États-Unis] ; Tom GallagherSARS-coronavirus protein 6 conformations required to impede protein import into the nucleus.
002345 (2011) Kulbhushan Sharma [Inde] ; Sara Kerström ; Anuj Kumar Sharma ; Vincent T K. Chow ; Shumein Teow ; Bernard Abrenica ; Stephanie A. Booth ; Timothy F. Booth ; Ali Mirazimi ; Sunil K. LalSARS-CoV 9b protein diffuses into nucleus, undergoes active Crm1 mediated nucleocytoplasmic export and triggers apoptosis when retained in the nucleus.
002440 (2012) Bhavna Varshney [Inde] ; Sudhakar Agnihothram ; Sudhakar Agnihotram ; Yee-Joo Tan ; Ralph Baric ; Sunil K. LalSARS coronavirus 3b accessory protein modulates transcriptional activity of RUNX1b.
002470 (2012) Yong Wah Tan [Singapour] ; Wanjin Hong ; Ding Xiang LiuBinding of the 5'-untranslated region of coronavirus RNA to zinc finger CCHC-type and RNA-binding motif 1 enhances viral replication and transcription.
002791 (2014) Melanie L. Yarbrough [États-Unis] ; Miguel A. Mata ; Ramanavelan Sakthivel ; Beatriz M A. FontouraViral subversion of nucleocytoplasmic trafficking.
002B18 (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.

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