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2020, 01, v.36 124-129
单纯疱疹病毒与天然免疫系统的相互作用的研究进展
基金项目(Foundation): 国家自然科学基金面上项目(项目号:31670173),题目:基于衣被蛋白UL7突变体分析的HSV1染色质化基因组DNA重聚/解构过程与转录调控的机理研究; 中国医学科学院医学与健康科技创新工程项目(项目号:2016-12M-1-019),题目:创新型疫苗研究~~
邮箱(Email):
DOI: 10.13242/j.cnki.bingduxuebao.003623
投稿时间: 2019-03-06
投稿日期(年): 2019
修回时间: 2019-03-19
终审时间: 2020-01-31
终审日期(年): 2020
审稿周期(年): 1
发布时间: 2019-12-20
出版时间: 2019-12-20
网络发布时间: 2019-12-20
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摘要:

单纯疱疹病毒(Herpes simplex virus,HSV)包括1型和2型,属于人类疱疹病毒家族的α亚族,也是人类感染最常见的病原体之一,感染可导致多种疱疹性疾病,包括疱疹性眼炎及可引起失明的疱疹性角膜炎。HSV的致病机制与病毒和宿主天然免疫系统的相互作用密切相关,涉及到病毒逃逸干扰素反应,核转录因子κB(Nuclear factorκB,NF-κB)信号通路以及病毒与免疫细胞相互作用等多个环节。本文就近年来单纯疱疹病毒与天然免疫系统的相互作用的研究进展进行综述。

Abstract:

Herpes simplex virus(HSV)type 1 and type 2 are α-herpesviruses of the Herpesviridae family,representing one of the most frequently encountered infections in humans. Its infection can cause a variety of herpetic diseases,including herpetic ophthalmia and herpetic keratitis. Pathogenesis of HSV is closely related to a panel of host innate immune responses,such as escape of interferon response,suppression of nuclear factor κB(NF-κB)signaling pathway,and interactions between virus and innate immune cells. This review focuses on the research progress on interactions between HSV and host innate immunity.

参考文献

[1] Jaishankar D,Shukla D. Genital Herpes:Insights into Sexually Transmitted Infectious Disease[J]. Microb Cell,2016,3(9):438-450.

[2] Pereira V S,Moizeis R N,Fernandes T A,Araujo J M,Meissner R V,Fernandes J V. Herpes simplex virus type 1 is the main cause of genital herpes in women of Natal,Brazil[J]. Eur J Obstet Gynecol Reprod Biol,2012,161(2):190-193.

[3] Bernstein D I,Bellamy A R,Hook E W 3rd,Levin M J, Wald A, Ewell M G, Wolff P A, Deal C D,Heineman T C,Dubin G,Belshe R B. Epidemiology,clinical presentation,and antibody response to primary infection with herpes simplex virus type 1 and type 2 in young women[J]. Clin Infect Dis,2013,56(3):344-351.

[4] Kortekangas-Savolainen O,Orhanen E,Puodinketo T,Vuorinen T. Epidemiology of genital herpes simplex virus type 1 and 2 infections in southwestern Finland during a 10-year period(2003-2012)[J]. Sex Transm Dis,2014,41(4):268-271.

[5] Farooq A V,Shukla D. Herpes simplex epithelial and stromal keratitis:an epidemiologic update[J]. Surv Ophthalmol,2012,57(5):448-462.

[6] Suazo P A,Tognarelli E I,Kalergis A M,Gonzalez P A. Herpes simplex virus 2 infection:molecular association with HIV and novel microbicides to prevent disease[J]. Med Microbiol Immunol,2015,204(2):161-176.

[7] Wasserheit J N. Epidemiological synergy.Interrelationships between human immunodeficiency virus infection and other sexually transmitted diseases[J]. Sex Transm Dis,1992,19(2):61-77.

[8] Barnabas R V,Wasserheit J N,Huang Y,Janes H,Morrow R,Fuchs J,Mark K E,Casapia M,Mehrotra D V, Buchbinder S P, Corey L. Impact of herpes simplex virus type 2 on HIV-1 acquisition and progression in an HIV vaccine trial(the Step study)[J].J Acquir Immune Defic Syndr,2011,57(3):238-244.

[9] Zhu X P,Muhammad Z S,Wang J G,Lin W,Guo S K,Zhang W. HSV-2 vaccine:current status and insight into factors for developing an efficient vaccine[J].Viruses,2014,6(2):371-390.

[10]Sun L,Wu J,Du F,Chen X,Chen Z J. Cyclic GMPAMP synthase is a cytosolic DNA sensor that activates the type I interferon pathway[J]. Science,2013,339(6121):786-791.

[11]Wu J,Chen Z J. Innate immune sensing and signaling of cytosolic nucleic acids[J]. Annu Rev Immunol,2014,32:461-488.

[12]Parker Z M,Murphy A A,Leib D A. Role of the DNA sensor STING in protection from lethal infection following corneal and intracerebral challenge with herpes simplex virus 1[J]. J Virol,2015,89(21):11080-11091.

[13]Zhang J,Liu H,Wei B. Immune response of T cells during herpes simplex virus type 1(HSV-1)infection[J]. J Zhejiang Univ Sci B,2017,18(4):277-288.

[14]Su C,Zhan G,Zheng C. Evasion of host antiviral innate immunity by HSV-1,an update[J]. Virol J,2016,13:38.

[15]Ishikawa H, Ma Z, Barber G N. STING regulates intracellular DNA-mediated,type I interferon-dependent innate immunity[J]. Nature,2009,461(7265):788-792.

[16]Orzalli M H,Knipe D M. Cellular sensing of viral DNA and viral evasion mechanisms[J]. Annu Rev Microbiol,2014,68:477-492.

[17]Johnson K E,Chikoti L,Chandran B. Herpes simplex virus 1 infection induces activation and subsequent inhibition of the IFI16 and NLRP3 inflammasomes[J]. J Virol,2013,87(9):5005-5018.

[18]Cuchet-Louren?o D,Anderson G,Sloan E,Orr A,Everett R D. The viral ubiquitin ligase ICP0 is neither sufficient nor necessary for degradation of the cellular DNA sensor IFI16 during herpes simplex virus 1infection[J]. J Virol,2013,87(24):13422-13432.

[19]van Lint A L,Murawski M R,Goodbody R E,Severa M,Fitzgerald K A,Finberg R W,Knipe D M,KurtJones E A. Herpes simplex virus immediate-early ICP0protein inhibits Toll-like receptor 2-dependent inflammatory responses and NF-kappaB signaling[J]. J Virol,2010,84(20):10802-10811.

[20]Su C,Zheng C. Herpes simplex virus 1 abrogates the cGAS/STING-mediated cytosolic DNA-sensing pathway via its virion host shutoff protein,UL41[J/OL]. J Virol,2017,91(6). pii:e00025-17.

[21]黄健.Ⅰ型单纯疱疹病毒皮层蛋白VP22和UL46逃逸宿主抗病毒天然免疫的分子机制研究[D]. 2018,苏州大学.

[22]Xu H,Su C,Pearson A,Mody C H,Zheng C. Herpes simplex virus 1 UL24 abrogates the DNA sensing signal pathway by inhibiting NF-kappaB activation[J/OL]. J Virol,2017,91(7). pii:e00025-17.

[23]Christensen M H,Jensen S B,Miettinen J J,Luecke S,Prabakaran T,Reinert L S,Mettenleiter T,Chen Z J,Knipe D M,Sandri-Goldin R M,Enquist L W,Hartmann R,Mogensen T H,Rice S A,Nyman T A,Matikainen S,Paludan S R. HSV-1 ICP27 targets the TBK1-activated STING signalsome to inhibit virusinduced type I IFN expression[J]. Embo J,2016,35(13):1385-1399.

[24]Peri P,Mattila R K,Kantola H,Broberg E,Karttunen H S,Waris M,Vuorinen T,Hukkanen V. Herpes simplex virus type 1 Us3 gene deletion influences tolllike receptor responses in cultured monocytic cells[J].Virol J,2008,5:140.

[25]Wang S,Wang K,Lin R,Zheng C. Herpes simplex virus1serine/threoninekinaseUS3hyperphosphorylates IRF3 and inhibits beta interferon production[J]. J Virol,2013,87(23):12814-12827.

[26]Manivanh R,Mehrbach J,Knipe D M,Leib D A. Role of herpes simplex virus 1 gamma34.5 in the regulation of IRF3 signaling[J/OL]. J Virol,2017,91(23). pii:e01156-17.

[27]Xing J,Wang S,Lin R,Mossman K L,Zheng C.Herpes simplex virus 1 tegument protein US11downmodulates the RLR signaling pathway via direct interaction with RIG-I and MDA-5[J]. J Virol,2012,86(7):3528-3540.

[28]Ye R,Su C,Xu H,Zheng C. Herpes simplex virus 1ubiquitin-specific protease UL36 abrogates NF-kappaB activation in DNA sensing signal pathway[J/OL]. J Virol,2017,91(5). pii:e02417-16.

[29]Su C,Zhang J,Zheng C. Herpes simplex virus 1 UL41protein abrogates the antiviral activity of hZAP by degrading its mRNA[J]. Virol J,2015,12:203.

[30]Gao G,Guo X,Goff S P. Inhibition of retroviral RNA production by ZAP,a CCCH-type zinc finger protein[J]. Science,2002,297(5587):1703-1706.

[31]Sanchez R, Mohr I. Inhibition of cellular 2'-5'oligoadenylate synthetase by the herpes simplex virus type 1 Us11 protein[J]. J Virol,2007,81(7):3455-3464.

[32]Cerwenka A,Lanier L L. Ligands for natural killer cell receptors:redundancy or specificity[J]. Immunol Rev,2001,181:158-169.

[33]Nabekura T,Lanier L L. Antigen-specific expansion and differentiation of natural killer cells by alloantigen stimulation[J]. J Exp Med,2014,211(12):2455-2465.

[34]York I A, Roop C, Andrews D W, Riddell S R,Graham F L,Johnson D C. A cytosolic herpes simplex virus protein inhibits antigen presentation to CD8+T lymphocytes[J]. Cell,1994,77(4):525-535.

[35]Eisemann J,Muhl-Zurbes P,Steinkasserer A,Kummer M. Infection of mature dendritic cells with herpes simplex virus type 1 interferes with the interferon signaling pathway[J]. Immunobiology,2007,212(9-10):877-886.

[36]Mikloska Z,Bosnjak L,Cunningham A L. Immature monocyte-derived dendritic cells are productively infected with herpes simplex virus type 1[J]. J Virol,2001,75(13):5958-5964.

[37]Retamal-Diaz A,Weiss K A,Tognarelli E I,Freire M, Bueno S M, Herold B C, Jacobs W R, Jr.,Gonzalez P A. US6 gene deletion in herpes simplex virus type 2 enhances dendritic cell function and T cell activation[J]. Front Immunol,2017,8:1523.

[38]Stefanidou M,Ramos I,Mas Casullo V,Trepanier J B,Rosenbaum S,Fernandez-Sesma A,Herold B C.Herpes simplex virus 2(HSV-2)prevents dendritic cell maturation,induces apoptosis,and triggers release of proinflammatory cytokines:potential links to HSV-HIV synergy[J]. J Virol,2013,87(3):1443-1453.

基本信息:

DOI:10.13242/j.cnki.bingduxuebao.003623

中图分类号:R373

引用信息:

[1]牟唐维,李琦涵.单纯疱疹病毒与天然免疫系统的相互作用的研究进展[J].病毒学报,2020,36(01):124-129.DOI:10.13242/j.cnki.bingduxuebao.003623.

基金信息:

国家自然科学基金面上项目(项目号:31670173),题目:基于衣被蛋白UL7突变体分析的HSV1染色质化基因组DNA重聚/解构过程与转录调控的机理研究; 中国医学科学院医学与健康科技创新工程项目(项目号:2016-12M-1-019),题目:创新型疫苗研究~~

投稿时间:

2019-03-06

投稿日期(年):

2019

修回时间:

2019-03-19

终审时间:

2020-01-31

终审日期(年):

2020

审稿周期(年):

1

发布时间:

2019-12-20

出版时间:

2019-12-20

网络发布时间:

2019-12-20

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