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interacting < interaction < interactions  Facettes :

List of bibliographic references indexed by interaction

Number of relevant bibliographic references: 70.
[0-20] [0 - 20][0 - 50][20-40]
Ident.Authors (with country if any)Title
000290 (2020) Joseph Thomas Ortega [États-Unis] ; Maria Luisa Serrano [Venezuela] ; Flor Helene Pujol [Venezuela] ; Hector Rafael Rangel [Venezuela]Role of changes in SARS-CoV-2 spike protein in the interaction with the human ACE2 receptor: An in silico analysis
000383 (2020) Bo Ram Beck [Corée du Sud] ; Bonggun Shin [Corée du Sud, États-Unis] ; Yoonjung Choi [Corée du Sud] ; Sungsoo Park [Corée du Sud] ; Keunsoo Kang [Corée du Sud]Predicting commercially available antiviral drugs that may act on the novel coronavirus (SARS-CoV-2) through a drug-target interaction deep learning model
000655 (2020) Abdul Mannan Baig [Pakistan] ; Areeba Khaleeq [Pakistan] ; Usman Ali [Pakistan] ; Hira Syeda [Pakistan]Evidence of the COVID-19 Virus Targeting the CNS: Tissue Distribution, Host-Virus Interaction, and Proposed Neurotropic Mechanisms.
000682 (2020) Naveen Vankadari [Australie] ; Jacqueline A. Wilce [Australie]Emerging WuHan (COVID-19) coronavirus: glycan shield and structure prediction of spike glycoprotein and its interaction with human CD26.
000B12 (2019) Geetanjali Meher [Inde] ; Surajit Bhattacharjya ; Hirak Chakraborty [Inde]Membrane Cholesterol Modulates Oligomeric Status and Peptide-Membrane Interaction of Severe Acute Respiratory Syndrome Coronavirus Fusion Peptide.
000B30 (2019) To Sing Fung [Oman] ; Ding Xiang Liu [Oman]Human Coronavirus: Host-Pathogen Interaction.
000B84 (2019) Jiwon Woo [Corée du Sud] ; Eunice Yoojin Lee [États-Unis] ; Mirae Lee [Corée du Sud] ; Taeyeon Kim [Corée du Sud] ; Yong-Eun Cho [Corée du Sud]An in vivo cell-based assay for investigating the specific interaction between the SARS-CoV N-protein and its viral RNA packaging sequence.
000B99 (2018-05) Nuria Galiana [France] ; Miguel Lurgi [Espagne] ; Bernat Claramunt-Lopez ; Marie-Josee Fortin [Canada] ; Shawn Leroux ; Kevin Cazelles [France] ; Dominique Gravel [Canada] ; Jose M. Montoya [Espagne]The spatial scaling of species interaction networks
000D67 (2017) Courtney M. Daczkowski [États-Unis] ; John V. Dzimianski [États-Unis] ; Jozlyn R. Clasman [États-Unis] ; Octavia Goodwin [États-Unis] ; Andrew D. Mesecar [États-Unis] ; Scott D. Pegan [États-Unis]Structural Insights into the Interaction of Coronavirus Papain-Like Proteases and Interferon-Stimulated Gene Product 15 from Different Species.
000D89 (2017) Su-Hua Huang [Taïwan] ; Tzu-Ying Lee [Taïwan] ; Ying-Ju Lin [Taïwan] ; Lei Wan [Taïwan] ; Chih-Ho Lai [Taïwan] ; Cheng-Wen Lin [Taïwan]Phage display technique identifies the interaction of severe acute respiratory syndrome coronavirus open reading frame 6 protein with nuclear pore complex interacting protein NPIPB3 in modulating Type I interferon antagonism.
000E11 (2017) Yutaka Terada [Japon] ; Kengo Kawachi [Japon] ; Yoshiharu Matsuura [Japon] ; Wataru Kamitani [Japon]MERS coronavirus nsp1 participates in an efficient propagation through a specific interaction with viral RNA
000F40 (2016) Jian Lei [Allemagne] ; Rolf Hilgenfeld [Allemagne]Structural and mutational analysis of the interaction between the Middle-East respiratory syndrome coronavirus (MERS-CoV) papain-like protease and human ubiquitin.
001001 (2016) E. Kindler [Suisse] ; V. Thiel [Suisse] ; F. Weber [Allemagne]Interaction of SARS and MERS Coronaviruses with the Antiviral Interferon Response
001208 (2015) Ying Liao ; Si Min Zhang ; Tuan Ling Neo ; James P. TamTryptophan-dependent membrane interaction and heteromerization with the internal fusion peptide by the membrane proximal external region of SARS-CoV spike protein.
001364 (2015) Aidang Lu [République populaire de Chine] ; Ziwen Wang ; Zhenghong Zhou ; Jianxin Chen ; Qingmin WangApplication of "hydrogen bonding interaction" in new drug development: design, synthesis, antiviral activity, and SARs of thiourea derivatives.
001365 (2015) Aidang Lu [République populaire de Chine] ; Yuanyuan Ma [République populaire de Chine] ; Ziwen Wang [République populaire de Chine] ; Zhenghong Zhou [République populaire de Chine] ; Qingmin Wang [République populaire de Chine]Application of "Hydrogen-Bonding Interaction" in Drug Design. Part 2: Design, Synthesis, and Structure-Activity Relationships of Thiophosphoramide Derivatives as Novel Antiviral and Antifungal Agents.
001585 (2014) Xiaojuan Chen [République populaire de Chine] ; Xingxing Yang ; Yang Zheng ; Yudong Yang ; Yaling Xing ; Zhongbin ChenSARS coronavirus papain-like protease inhibits the type I interferon signaling pathway through interaction with the STING-TRAF3-TBK1 complex.
001A49 (2013) Saliha D. Durmu Tekir [Turquie] ; Kutlu Ülgen [Turquie]Systems biology of pathogen‐host interaction: Networks of protein‐protein interaction within pathogens and pathogen‐human interactions in the post‐genomic era
001A92 (2013) Ming Fai Pang [République populaire de Chine, Hong Kong] ; Ference Marton [Suède]Interaction between the learners’ initial grasp of the object of learning and the learning resource afforded
001C52 (2012) Min Ke [République populaire de Chine] ; Yu Chen ; Andong Wu ; Ying Sun ; Ceyang Su ; Hao Wu ; Xu Jin ; Jiali Tao ; Yi Wang ; Xiao Ma ; Ji-An Pan ; Deyin GuoShort peptides derived from the interaction domain of SARS coronavirus nonstructural protein nsp10 can suppress the 2'-O-methyltransferase activity of nsp10/nsp16 complex.
002486 (2010) Corrin E. Mcbride [États-Unis] ; Carolyn E. MachamerPalmitoylation of SARS-CoV S protein is necessary for partitioning into detergent-resistant membranes and cell-cell fusion but not interaction with M protein.

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