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List of bibliographic references

Number of relevant bibliographic references: 18.
Ident.Authors (with country if any)Title
000638 (2020) Daniel Batlle ; Jan Wysocki ; Karla SatchellSoluble angiotensin-converting enzyme 2: a potential approach for coronavirus infection therapy?
000E69 (2015) Boshi Huang ; Cuicui Li ; Wenmin Chen ; Tao Liu ; Mingyan Yu ; Lu Fu ; Yueyue Sun ; Huiqing Liu ; Erik De Clercq ; Christophe Pannecouque ; Jan Balzarini ; Peng Zhan ; Xinyong LiuFused heterocycles bearing bridgehead nitrogen as potent HIV-1 NNRTIs. Part 3: optimization of [1,2,4]triazolo[1,5-a]pyrimidine core via structure-based and physicochemical property-driven approaches.
001913 (2009) Hong Peng Jia ; Dwight C. Look ; Ping Tan ; Lei Shi ; Melissa Hickey ; Lokesh Gakhar ; Mark C. Chappell ; Christine Wohlford-Lenane ; Paul B. MccrayEctodomain shedding of angiotensin converting enzyme 2 in human airway epithelia.
001A41 (2009) Chi-Pang Chuck ; Chi-Hang Wong ; Larry Ming-Cheung Chow ; Kwok-Pui Fung ; Mary Miu-Yee Waye ; Stephen Kwok-Wing TsuiExpression of SARS-coronavirus spike glycoprotein in Pichia pastoris.
002259 (2006) Rie Watanabe ; Shutoku Matsuyama ; Fumihiro TaguchiReceptor-independent infection of murine coronavirus: analysis by spinoculation.
002325 (2006) Susanna Hakansson-Mcreynolds ; Shaokai Jiang ; Lijun Rong ; Michael CaffreySolution structure of the severe acute respiratory syndrome-coronavirus heptad repeat 2 domain in the prefusion state.
002457 (2005) Jing Chen ; Lin Miao ; Jia-Ming Li ; Yan-Ying Li ; Qing-Yu Zhu ; Chang-Lin Zhou ; Hong-Qing Fang ; Hui-Peng ChenReceptor-binding domain of SARS-Cov spike protein: soluble expression in E. coli, purification and functional characterization.
002480 (2006) Eric Assen B. Kantchev ; Chung-Chieh Chang ; Ding-Kwo ChangDirect Fmoc/tert-Bu solid phase synthesis of octamannosyl polylysine dendrimer-peptide conjugates.
002834 (2005) Himani Bisht ; Anjeanette Roberts ; Leatrice Vogel ; Kanta Subbarao ; Bernard MossNeutralizing antibody and protective immunity to SARS coronavirus infection of mice induced by a soluble recombinant polypeptide containing an N-terminal segment of the spike glycoprotein.
002A72 (2004) Yanhui Xu ; Jieqing Zhu ; Yiwei Liu ; Zhiyong Lou ; Fang Yuan ; Yueyong Liu ; David K. Cole ; Ling Ni ; Nan Su ; Lan Qin ; Xu Li ; Zhihong Bai ; John I. Bell ; Hai Pang ; Po Tien ; George F. Gao ; Zihe RaoCharacterization of the heptad repeat regions, HR1 and HR2, and design of a fusion core structure model of the spike protein from severe acute respiratory syndrome (SARS) coronavirus.
002D40 (2004) Heike Hofmann ; Martina Geier ; Andrea Marzi ; Mandy Krumbiegel ; Matthias Peipp ; Georg H. Fey ; Thomas Gramberg ; Stefan PöhlmannSusceptibility to SARS coronavirus S protein-driven infection correlates with expression of angiotensin converting enzyme 2 and infection can be blocked by soluble receptor.
003068 (2003) Wenhui Li ; Michael J. Moore ; Natalya Vasilieva ; Jianhua Sui ; Swee Kee Wong ; Michael A. Berne ; Mohan Somasundaran ; John L. Sullivan ; Katherine Luzuriaga ; Thomas C. Greenough ; Hyeryun Choe ; Michael FarzanAngiotensin-converting enzyme 2 is a functional receptor for the SARS coronavirus.
003460 (2002) Shutoku Matsuyama ; Fumihiro TaguchiReceptor-induced conformational changes of murine coronavirus spike protein.
003466 (2002) Fumihiro Taguchi ; Shutoku MatsuyamaSoluble receptor potentiates receptor-independent infection by murine coronavirus.
003467 (2001) S. Matsuyama ; R. Watanabe ; F. TaguchiNeurovirulence in mice of soluble receptor-resistant (srr) mutants of mouse hepatitis virus: intensive apoptosis caused by less virulent srr mutant.
003475 (2000) S. Matsuyama ; F. TaguchiImpaired entry of soluble receptor-resistant mutants of mouse hepatitis virus into cells expressing MHVR2 receptor.
003489 (1998) K. Saeki ; N. Ohtsuka ; F. TaguchiIsolation and characterization of murine coronavirus mutants resistant to neutralization by soluble receptors.
003495 (1997) K. Saeki ; N. Ohtsuka ; F. TaguchiIdentification of spike protein residues of murine coronavirus responsible for receptor-binding activity by use of soluble receptor-resistant mutants.

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