单纯疱疹病毒1型和2型对周围神经节的定植作用

IF 5.7 2区 医学 Q1 VIROLOGY
Kai A Kropp , Guorong Sun , Abel Viejo-Borbolla
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引用次数: 1

摘要

单纯疱疹病毒1型(HSV-1)和2型(HSV-2)感染并在外周神经系统的神经元中建立潜伏期,从而在宿主中终生存在并导致疾病复发。在初次感染期间,HSV在粘膜和皮肤的上皮细胞中复制,然后感染神经突,这是一种高度动态的结构,分别在吸引或排斥线索的存在下生长或收缩。在轴突的逆行运输之后,HSV在神经元核中建立潜伏期。病毒和细胞蛋白参与HSV基因组的染色单体化,调节基因表达、持续性和再激活。HSV-2在原发感染期间和再激活时调节轴突生长,可能是为了促进神经元的感染和存活。HSV-1是否调节突起生长及其潜在机制目前正在研究中。这篇综述涉及HSV-1和HSV-2在外周神经元的定植,重点是这些病毒对轴突生长的调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Colonization of peripheral ganglia by herpes simplex virus type 1 and 2

Herpes simplex virus type 1 (HSV-1) and 2 (HSV-2) infect and establish latency in neurons of the peripheral nervous system to persist lifelong in the host and to cause recurrent disease. During primary infection, HSV replicates in epithelial cells in the mucosa and skin and then infects neurites, highly dynamic structures that grow or retract in the presence of attracting or repelling cues, respectively. Following retrograde transport in neurites, HSV establishes latency in the neuronal nucleus. Viral and cellular proteins participate in the chromatinization of the HSV genome that regulates gene expression, persistence, and reactivation. HSV-2 modulates neurite outgrowth during primary infection and upon reactivation, probably to facilitate infection and survival of neurons. Whether HSV-1 modulates neurite outgrowth and the underlying mechanism is currently under investigation. This review deals with HSV-1 and HSV-2 colonization of peripheral neurons, with a focus on the modulation of neurite outgrowth by these viruses.

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来源期刊
CiteScore
11.80
自引率
5.10%
发文量
76
审稿时长
83 days
期刊介绍: Current Opinion in Virology (COVIRO) is a systematic review journal that aims to provide specialists with a unique and educational platform to keep up to date with the expanding volume of information published in the field of virology. It publishes 6 issues per year covering the following 11 sections, each of which is reviewed once a year: Emerging viruses: interspecies transmission; Viral immunology; Viral pathogenesis; Preventive and therapeutic vaccines; Antiviral strategies; Virus structure and expression; Animal models for viral diseases; Engineering for viral resistance; Viruses and cancer; Virus vector interactions. There is also a section that changes every year to reflect hot topics in the field.
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