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Protein Synthesis Inhibitors < Protein Transport < Protein-Serine-Threonine Kinases  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 25.
[0-20] [0 - 20][0 - 25][20-24][20-40]
Ident.Authors (with country if any)Title
000900 (2019) Yasunori Watanabe [Royaume-Uni] ; Thomas A. Bowden [Royaume-Uni] ; Ian A. Wilson [États-Unis] ; Max Crispin [Royaume-Uni]Exploitation of glycosylation in enveloped virus pathobiology.
000B39 (2017) Lennart Michel Reinke [Allemagne] ; Martin Spiegel [Allemagne] ; Teresa Plegge [Allemagne] ; Anika Hartleib [Allemagne] ; Inga Nehlmeier [Allemagne] ; Stefanie Gierer [Allemagne] ; Markus Hoffmann [Allemagne] ; Heike Hofmann-Winkler [Allemagne] ; Michael Winkler [Allemagne] ; Stefan Pöhlmann [Allemagne]Different residues in the SARS-CoV spike protein determine cleavage and activation by the host cell protease TMPRSS2.
000B40 (2017) Jibin Sadasivan [Inde] ; Manmeet Singh ; Jayasri Das SarmaCytoplasmic tail of coronavirus spike protein has intracellular targeting signals.
000B78 (2016) Makoto Ujike [Japon] ; Cheng Huang [États-Unis] ; Kazuya Shirato [Japon] ; Shinji Makino [États-Unis] ; Fumihiro Taguchi [Japon]The 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.
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.
001265 (2012) Kanchan Bhardwaj [États-Unis] ; Pinghua Liu ; Julian L. Leibowitz ; C Cheng KaoThe coronavirus endoribonuclease Nsp15 interacts with retinoblastoma tumor suppressor protein.
001381 (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.
001423 (2011) Jose L. Nieto-Torres [Espagne] ; Marta L. Dediego ; Enrique Alvarez ; Jose M. Jiménez-Guarde O ; Jose A. Regla-Nava ; Mercedes Llorente ; Leonor Kremer ; Shen Shuo ; Luis EnjuanesSubcellular location and topology of severe acute respiratory syndrome coronavirus envelope protein.
001436 (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.
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.
001574 (2010) Haixia Zhou [États-Unis] ; Debra Ferraro ; Jincun Zhao ; Snawar Hussain ; Jianqiang Shao ; Jonathan Trujillo ; Jason Netland ; Thomas Gallagher ; Stanley PerlmanThe N-terminal region of severe acute respiratory syndrome coronavirus protein 6 induces membrane rearrangement and enhances virus replication.
001641 (2010) Qin Wang [République populaire de Chine] ; Chuan Li ; Quanfu Zhang ; Tao Wang ; Jiandong Li ; Wuxiang Guan ; Jianshi Yu ; Mifang Liang ; Dexin LiInteractions of SARS coronavirus nucleocapsid protein with the host cell proteasome subunit p42.
001767 (2009) Shu-Chiun Sung [Taïwan] ; Che-Yi Chao ; King-Song Jeng ; Jyh-Yuan Yang ; Michael M C. LaiThe 8ab protein of SARS-CoV is a luminal ER membrane-associated protein and induces the activation of ATF6.
001851 (2009) Thomas Kuri [Allemagne] ; Xiaonan Zhang [République populaire de Chine] ; Matthias Habjan [Allemagne] ; Luis Martínez-Sobrido [États-Unis] ; Adolfo García-Sastre [États-Unis] ; Zhenghong Yuan [République populaire de Chine] ; Friedemann Weber [Allemagne]Interferon priming enables cells to partially overturn the SARS coronavirus-induced block in innate immune activation.
001A40 (2008) Hongliang Wang [République populaire de Chine] ; Peng Yang ; Kangtai Liu ; Feng Guo ; Yanli Zhang ; Gongyi Zhang ; Chengyu JiangSARS coronavirus entry into host cells through a novel clathrin- and caveolae-independent endocytic pathway.
001C46 (2007) Jae-Hwan You [Royaume-Uni] ; Mark L. Reed ; Julian A. HiscoxTrafficking motifs in the SARS-coronavirus nucleocapsid 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.
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.
002266 (2006) Daniel Voss [Allemagne] ; Anika Kern ; Elisabetta Traggiai ; Markus Eickmann ; Konrad Stadler ; Antonio Lanzavecchia ; Stephan BeckerCharacterization of severe acute respiratory syndrome coronavirus membrane protein.
002441 (2005) Yee-Joo Tan [Singapour]The Severe Acute Respiratory Syndrome (SARS)-coronavirus 3a protein may function as a modulator of the trafficking properties of the spike protein.

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