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Nucleocapsid protein of SARS coronavirus tightly binds to human cyclophilin A

Severe acute respiratory syndrome coronavirus (SARS-CoV) is responsible for SARS infection. Nucleocapsid protein (NP) of SARS-CoV (SARS_NP) functions in enveloping the entire genomic RNA and interacts with viron structural proteins, thus playing important roles in the process of virus particle assem...

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Autores principales: Luo, Cheng, Luo, Haibin, Zheng, Suxin, Gui, Chunshan, Yue, Liduo, Yu, Changying, Sun, Tao, He, Peilan, Chen, Jing, Shen, Jianhua, Luo, Xiaomin, Li, Yixue, Liu, Hong, Bai, Donglu, Shen, Jingkang, Yang, Yiming, Li, Fangqiu, Zuo, Jianping, Hilgenfeld, Rolf, Pei, Gang, Chen, Kaixian, Shen, Xu, Jiang, Hualiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Inc. 2004
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7092810/
https://www.ncbi.nlm.nih.gov/pubmed/15358143
http://dx.doi.org/10.1016/j.bbrc.2004.07.003
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author Luo, Cheng
Luo, Haibin
Zheng, Suxin
Gui, Chunshan
Yue, Liduo
Yu, Changying
Sun, Tao
He, Peilan
Chen, Jing
Shen, Jianhua
Luo, Xiaomin
Li, Yixue
Liu, Hong
Bai, Donglu
Shen, Jingkang
Yang, Yiming
Li, Fangqiu
Zuo, Jianping
Hilgenfeld, Rolf
Pei, Gang
Chen, Kaixian
Shen, Xu
Jiang, Hualiang
author_facet Luo, Cheng
Luo, Haibin
Zheng, Suxin
Gui, Chunshan
Yue, Liduo
Yu, Changying
Sun, Tao
He, Peilan
Chen, Jing
Shen, Jianhua
Luo, Xiaomin
Li, Yixue
Liu, Hong
Bai, Donglu
Shen, Jingkang
Yang, Yiming
Li, Fangqiu
Zuo, Jianping
Hilgenfeld, Rolf
Pei, Gang
Chen, Kaixian
Shen, Xu
Jiang, Hualiang
author_sort Luo, Cheng
collection PubMed
description Severe acute respiratory syndrome coronavirus (SARS-CoV) is responsible for SARS infection. Nucleocapsid protein (NP) of SARS-CoV (SARS_NP) functions in enveloping the entire genomic RNA and interacts with viron structural proteins, thus playing important roles in the process of virus particle assembly and release. Protein–protein interaction analysis using bioinformatics tools indicated that SARS_NP may bind to human cyclophilin A (hCypA), and surface plasmon resonance (SPR) technology revealed this binding with the equilibrium dissociation constant ranging from 6 to 160 nM. The probable binding sites of these two proteins were detected by modeling the three-dimensional structure of the SARS_NP–hCypA complex, from which the important interaction residue pairs between the proteins were deduced. Mutagenesis experiments were carried out for validating the binding model, whose correctness was assessed by the observed effects on the binding affinities between the proteins. The reliability of the binding sites derived by the molecular modeling was confirmed by the fact that the computationally predicted values of the relative free energies of the binding for SARS_NP (or hCypA) mutants to the wild-type hCypA (or SARS_NP) are in good agreement with the data determined by SPR. Such presently observed SARS_NP–hCypA interaction model might provide a new hint for facilitating the understanding of another possible SARS-CoV infection pathway against human cell.
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spelling pubmed-70928102020-03-25 Nucleocapsid protein of SARS coronavirus tightly binds to human cyclophilin A Luo, Cheng Luo, Haibin Zheng, Suxin Gui, Chunshan Yue, Liduo Yu, Changying Sun, Tao He, Peilan Chen, Jing Shen, Jianhua Luo, Xiaomin Li, Yixue Liu, Hong Bai, Donglu Shen, Jingkang Yang, Yiming Li, Fangqiu Zuo, Jianping Hilgenfeld, Rolf Pei, Gang Chen, Kaixian Shen, Xu Jiang, Hualiang Biochem Biophys Res Commun Article Severe acute respiratory syndrome coronavirus (SARS-CoV) is responsible for SARS infection. Nucleocapsid protein (NP) of SARS-CoV (SARS_NP) functions in enveloping the entire genomic RNA and interacts with viron structural proteins, thus playing important roles in the process of virus particle assembly and release. Protein–protein interaction analysis using bioinformatics tools indicated that SARS_NP may bind to human cyclophilin A (hCypA), and surface plasmon resonance (SPR) technology revealed this binding with the equilibrium dissociation constant ranging from 6 to 160 nM. The probable binding sites of these two proteins were detected by modeling the three-dimensional structure of the SARS_NP–hCypA complex, from which the important interaction residue pairs between the proteins were deduced. Mutagenesis experiments were carried out for validating the binding model, whose correctness was assessed by the observed effects on the binding affinities between the proteins. The reliability of the binding sites derived by the molecular modeling was confirmed by the fact that the computationally predicted values of the relative free energies of the binding for SARS_NP (or hCypA) mutants to the wild-type hCypA (or SARS_NP) are in good agreement with the data determined by SPR. Such presently observed SARS_NP–hCypA interaction model might provide a new hint for facilitating the understanding of another possible SARS-CoV infection pathway against human cell. Elsevier Inc. 2004-08-27 2004-07-20 /pmc/articles/PMC7092810/ /pubmed/15358143 http://dx.doi.org/10.1016/j.bbrc.2004.07.003 Text en Copyright © 2004 Elsevier Inc. All rights reserved. Since January 2020 Elsevier has created a COVID-19 resource centre with free information in English and Mandarin on the novel coronavirus COVID-19. The COVID-19 resource centre is hosted on Elsevier Connect, the company's public news and information website. Elsevier hereby grants permission to make all its COVID-19-related research that is available on the COVID-19 resource centre - including this research content - immediately available in PubMed Central and other publicly funded repositories, such as the WHO COVID database with rights for unrestricted research re-use and analyses in any form or by any means with acknowledgement of the original source. These permissions are granted for free by Elsevier for as long as the COVID-19 resource centre remains active.
spellingShingle Article
Luo, Cheng
Luo, Haibin
Zheng, Suxin
Gui, Chunshan
Yue, Liduo
Yu, Changying
Sun, Tao
He, Peilan
Chen, Jing
Shen, Jianhua
Luo, Xiaomin
Li, Yixue
Liu, Hong
Bai, Donglu
Shen, Jingkang
Yang, Yiming
Li, Fangqiu
Zuo, Jianping
Hilgenfeld, Rolf
Pei, Gang
Chen, Kaixian
Shen, Xu
Jiang, Hualiang
Nucleocapsid protein of SARS coronavirus tightly binds to human cyclophilin A
title Nucleocapsid protein of SARS coronavirus tightly binds to human cyclophilin A
title_full Nucleocapsid protein of SARS coronavirus tightly binds to human cyclophilin A
title_fullStr Nucleocapsid protein of SARS coronavirus tightly binds to human cyclophilin A
title_full_unstemmed Nucleocapsid protein of SARS coronavirus tightly binds to human cyclophilin A
title_short Nucleocapsid protein of SARS coronavirus tightly binds to human cyclophilin A
title_sort nucleocapsid protein of sars coronavirus tightly binds to human cyclophilin a
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7092810/
https://www.ncbi.nlm.nih.gov/pubmed/15358143
http://dx.doi.org/10.1016/j.bbrc.2004.07.003
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