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Index « Mesh.i » - entrée « Sequence Deletion »
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Sequence Analysis, RNA < Sequence Deletion < Sequence Homology  Facettes :

List of bibliographic references indexed by Sequence Deletion

Number of relevant bibliographic references: 40.
[0-20] [0 - 20][0 - 40][20-40]
Ident.Authors (with country if any)Title
000D17 (2018) Doreen Muth [Allemagne] ; Victor Max Corman [Allemagne] ; Hanna Roth [Allemagne] ; Tabea Binger [Allemagne] ; Ronald Dijkman [Suisse] ; Lina Theresa Gottula [Allemagne] ; Florian Gloza-Rausch [Allemagne] ; Andrea Balboni ; Mara Battilani ; Danijela Rihtari [Slovénie] ; Ivan Toplak [Slovénie] ; Ram N Seage Ameneiros [Allemagne, Espagne] ; Alexander Pfeifer [Allemagne] ; Volker Thiel [Suisse] ; Jan Felix Drexler [Allemagne] ; Marcel Alexander Müller [Allemagne] ; Christian Drosten [Allemagne]Attenuation of replication by a 29 nucleotide deletion in SARS-coronavirus acquired during the early stages of human-to-human transmission
001246 (2015) Jose A. Regla-Nava [Espagne] ; Jose L. Nieto-Torres [Espagne] ; Jose M. Jimenez-Guarde O [Espagne] ; Raul Fernandez-Delgado [Espagne] ; Craig Fett [États-Unis] ; Carlos Casta O-Rodríguez [Espagne] ; Stanley Perlman [États-Unis] ; Luis Enjuanes [Espagne] ; Marta L. Dediego [Espagne]Severe Acute Respiratory Syndrome Coronaviruses with Mutations in the E Protein Are Attenuated and Promising Vaccine Candidates
001382 (2015) Yuri Kusov [Allemagne] ; Jinzhi Tan [Allemagne] ; Enrique Alvarez [Espagne] ; Luis Enjuanes [Espagne] ; Rolf Hilgenfeld [Allemagne]A G-quadruplex-binding macrodomain within the "SARS-unique domain" is essential for the activity of the SARS-coronavirus replication-transcription complex.
001D22 (2012) Yutaka Terada [Japon] ; Yuto Shiozaki [Japon] ; Hiroshi Shimoda [Japon] ; Hassan Youssef Abdel Hamid Mahmoud [Japon] ; Keita Noguchi [Japon] ; Yumiko Nagao [Japon] ; Masayuki Shimojima [Japon] ; Hiroyuki Iwata [Japon] ; Takuya Mizuno [Japon] ; Masaru Okuda [Japon] ; Masahiro Morimoto [Japon] ; Toshiharu Hayashi [Japon] ; Yoshikazu Tanaka [Japon] ; Masami Mochizuki [Japon] ; Ken Maeda [Japon]Feline infectious peritonitis virus with a large deletion in the 5'-terminal region of the spike gene retains its virulence for cats.
001D33 (2012) Kazuya Shirato ; Miyuki Kawase ; Oshi Watanabe [Japon] ; Chika Hirokawa [Japon] ; Shutoku Matsuyama ; Hidekazu Nishimura [Japon] ; Fumihiro Taguchi [Japon]Differences in neutralizing antigenicity between laboratory and clinical isolates of HCoV-229E isolated in Japan in 2004-2008 depend on the S1 region sequence of the spike protein.
001D47 (2012) Jianzhong Cao [États-Unis] ; Xuming ZhangComparative in vivo analysis of the nsp15 endoribonuclease of murine, porcine and severe acute respiratory syndrome coronaviruses.
002047 (2011) Xiaolu Lu [République populaire de Chine] ; Ji'An Pan ; Jiali Tao ; Deyin GuoSARS-CoV nucleocapsid protein antagonizes IFN-β response by targeting initial step of IFN-β induction pathway, and its C-terminal region is critical for the antagonism.
002147 (2011) Han-Xin Lin [Canada] ; Yan Feng ; Xinming Tu ; Xuesen Zhao ; Chih-Heng Hsieh ; Lauren Griffin ; Murray Junop ; Chengsheng ZhangCharacterization of the spike protein of human coronavirus NL63 in receptor binding and pseudotype virus entry.
002985 (2009) Hongyuan Shen [Singapour] ; Shou Guo Fang ; Bo Chen ; Guang Chen ; Felicia P L. Tay ; Ding Xiang LiuTowards construction of viral vectors based on avian coronavirus infectious bronchitis virus for gene delivery and vaccine development.
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.
002A37 (2009) Susanne Pfefferle [Allemagne] ; Verena Kr Hling ; Vanessa Ditt [Allemagne] ; Klaus Grywna [Allemagne] ; Elke Mühlberger [Allemagne, États-Unis] ; Christian Drosten [Allemagne]Reverse genetic characterization of the natural genomic deletion in SARS-Coronavirus strain Frankfurt-1 open reading frame 7b reveals an attenuating function of the 7b protein in-vitro and in-vivo
002B58 (2009) Christel Schwegmann-We Els [Allemagne] ; Jörg Glende [Allemagne] ; Xiaofeng Ren [République populaire de Chine] ; Xiuxia Qu [République populaire de Chine] ; Hongkui Deng [République populaire de Chine] ; Luis Enjuanes [Espagne] ; Georg Herrler [Allemagne]Comparison of vesicular stomatitis virus pseudotyped with the S proteins from a porcine and a human coronavirus.
002F70 (2008) Nan Zhong ; Shengnan Zhang ; Peng Zou ; Jiaxuan Chen ; Xue Kang ; Zhe Li ; Chao Liang ; Changwen Jin ; Bin XiaWithout Its N-Finger, the Main Protease of Severe Acute Respiratory Syndrome Coronavirus Can Form a Novel Dimer through Its C-Terminal Domain▿
003075 (2008) Shiori Haga [Japon] ; Norio Yamamoto ; Chikako Nakai-Murakami ; Yoshiaki Osawa ; Kenzo Tokunaga ; Tetsutaro Sata ; Naoki Yamamoto ; Takehiko Sasazuki ; Yukihito IshizakaModulation of TNF-alpha-converting enzyme by the spike protein of SARS-CoV and ACE2 induces TNF-alpha production and facilitates viral entry.
003648 (2007) Xue Zhang [République populaire de Chine] ; Kailang Wu [République populaire de Chine] ; Di Wang [République populaire de Chine] ; Xin Yue [République populaire de Chine] ; Degui Song [République populaire de Chine] ; Ying Zhu [République populaire de Chine] ; Jianguo Wu [République populaire de Chine]Nucleocapsid protein of SARS-CoV activates interleukin-6 expression through cellular transcription factor NF-κB
003823 (2007) Stephen J. Seligman [États-Unis]Evidence for Quasi Species in Severe Acute Respiratory Syndrome-associated Coronavirus Deletion Mutants
003B19 (2007) Monique Oostra [Pays-Bas] ; Cornelis A. M. De Haan [Pays-Bas] ; Peter J. M. Rottier [Pays-Bas]The 29-Nucleotide Deletion Present in Human but Not in Animal Severe Acute Respiratory Syndrome Coronaviruses Disrupts the Functional Expression of Open Reading Frame 8
003B30 (2007) Scott R. Schaecher [États-Unis] ; Erin Touchette [États-Unis] ; Jill Schriewer [États-Unis] ; R. Mark Buller [États-Unis] ; Andrew Pekosz [États-Unis]Severe acute respiratory syndrome coronavirus gene 7 products contribute to virus-induced apoptosis
003B83 (2007) Yuuki Inoue [Japon] ; Nobuyuki Tanaka [Japon] ; Yoshinori Tanaka [Japon] ; Shingo Inoue [Japon] ; Kouichi Morita [Japon] ; MIN ZHUANG [Japon] ; Toshio Hattori [Japon] ; Kazuo Sugamura [Japon]Clathrin-dependent entry of severe acute respiratory syndrome coronavirus into target cells expressing ACE2 with the cytoplasmic tail deleted
003D79 (2006) Lei Shang [République populaire de Chine] ; Yan Qi [République populaire de Chine] ; Qi-Yu Bao [République populaire de Chine] ; Wei Tian [République populaire de Chine] ; Jian-Cheng Xu [République populaire de Chine] ; Ming-Guang Feng [République populaire de Chine] ; Huan-Ming Yang [République populaire de Chine]Polymorphism of SARS-CoV Genomes
003D94 (2006) Sehaam Khan ; Burtram C. Fielding ; Timothy H. P. Tan ; Chih-Fong Chou ; Shuo Shen ; Seng Gee Lim ; Wanjin Hong ; Yee-Joo TanOver-expression of severe acute respiratory syndrome coronavirus 3b protein induces both apoptosis and necrosis in Vero E6 cells

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