globalchange  > 全球变化的国际研究计划
DOI: 10.1128/JVI.00595-19
WOS记录号: WOS:000480711400018
论文题名:
Temporal Proteomic Analysis of BK Polyomavirus Infection Reveals Virus-Induced G(2) Arrest and Highly Effective Evasion of Innate Immune Sensing
作者: Caller, Laura G.1; Davies, Colin T. R.2; Antrobus, Robin2; Lehner, Paul J.2; Weekes, Michael P.2; Crump, Colin M.1
通讯作者: Weekes, Michael P. ; Crump, Colin M.
刊名: JOURNAL OF VIROLOGY
ISSN: 0022-538X
EISSN: 1098-5514
出版年: 2019
卷: 93, 期:16
语种: 英语
英文关键词: cell cycle ; immune evasion ; innate immunity ; polyomavirus ; proteomics
WOS关键词: LARGE-T-ANTIGEN ; DECOY SEARCH STRATEGY ; PEPTIDE IDENTIFICATION ; TRANSCRIPTION-FACTOR ; PROTEIN ; CELL ; P53 ; EXPRESSION ; TARGET ; INHIBITION
WOS学科分类: Virology
WOS研究方向: Virology
英文摘要:

BK polyomavirus (BKPyV) is a small DNA virus that establishes a lifelong persistent infection in the urinary tract of most people. BKPyV is known to cause severe morbidity in renal transplant recipients and can lead to graft rejection. The simple 5.2-kbp double-stranded DNA (dsDNA) genome expresses just seven known proteins; thus, it relies heavily on the host machinery to replicate. How the host proteome changes over the course of infection is key to understanding this host-virus interplay. Here, for the first time quantitative temporal viromics has been used to quantify global changes in >9,000 host proteins in two types of primary human epithelial cells throughout 72 h of BKPyV infection. These data demonstrate the importance of cell cycle progression and pseudo-G(2) arrest in effective BKPyV replication, along with a surprising lack of an innate immune response throughout the whole virus replication cycle. BKPyV thus evades pathogen recognition to prevent activation of innate immune responses in a sophisticated manner.


IMPORTANCE BK polyomavirus can cause serious problems in immune-suppressed patients, in particular, kidney transplant recipients who can develop polyomavirus-associated kidney disease. In this work, we have used advanced proteomics techniques to determine the changes to protein expression caused by infection of two independent primary cell types of the human urinary tract (kidney and bladder) throughout the replication cycle of this virus. Our findings have uncovered new details of a specific form of cell cycle arrest caused by this virus, and, importantly, we have identified that this virus has a remarkable ability to evade detection by host cell defense systems. In addition, our data provide an important resource for the future study of kidney epithelial cells and their infection by urinary tract pathogens.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/144343
Appears in Collections:全球变化的国际研究计划

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作者单位: 1.Univ Umbridge, Dept Pathol, Div Virol, Cambridge, England
2.Addenbrookes Hosp, Cambridge Inst Med Res, Cambridge, England

Recommended Citation:
Caller, Laura G.,Davies, Colin T. R.,Antrobus, Robin,et al. Temporal Proteomic Analysis of BK Polyomavirus Infection Reveals Virus-Induced G(2) Arrest and Highly Effective Evasion of Innate Immune Sensing[J]. JOURNAL OF VIROLOGY,2019-01-01,93(16)
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