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首页> 外文期刊>Clinical & developmental immunology. >Polyomavirus JC in the Context of Immunosuppression: A Series of Adaptive, DNA Replication-Driven Recombination Events in the Development of Progressive Multifocal Leukoencephalopathy
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Polyomavirus JC in the Context of Immunosuppression: A Series of Adaptive, DNA Replication-Driven Recombination Events in the Development of Progressive Multifocal Leukoencephalopathy

机译:免疫抑制背景下的多瘤病毒JC:进行性多灶性白质脑病发展中的一系列自适应,DNA复制驱动重组事件。

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摘要

Polyomavirus JC (JCV) is the etiological agent of progressive multifocal leukoencephalopathy (PML), a demyelinating infection of oligodendrocytes in the brain. PML, a frequently fatal opportunistic infection in AIDS, has also emerged as a consequence of treatment with several new immunosuppressive therapeutic agents. Although nearly 80% of adults are seropositive, JCV attains an ability to infect glial cells in only a minority of people. Data suggest that JCV undergoes sequence alterations that accompany this ability, and these changes can be derived from an archetype strain by mutation, deletion, and duplication. While the introductory source and primary tissue reservoir of JCV remain unknown, lymphoid cells have been identified as potential intermediaries in progression of JCV to the brain. This review is focused on sequence changes in the noncoding control region (NCCR) of the virus. We propose an adaptive mechanism that involves a sequential series of DNA replication-driven NCCR recombination events involving stalled DNA replication forks at NCCR palindromic secondary structures. We shall describe how the NCCR sequence changes point to a model in which viral DNA replication drives NCCR recombination, allowing JCV adaptation to different cell types in its progression to neurovirulence.
机译:多瘤病毒JC(JCV)是进行性多灶性白质脑病(PML)的病原体,PML是大脑中少突胶质细胞的脱髓鞘感染。 PML是艾滋病中一种致命的机会性感染,由于使用几种新的免疫抑制治疗剂进行治疗的结果也已出现。尽管将近80%的成年人呈血清反应阳性,但JCV只能感染少数人的神经胶质细胞。数据表明,JCV经历了伴随这种能力的序列改变,并且这些改变可以通过突变,缺失和重复从原型菌株衍生而来。虽然JCV的引入来源和主要组织储集层仍是未知的,但淋巴样细胞已被确定为JCV向大脑发展的潜在中介。这篇综述着重于病毒非编码控制区(NCCR)的序列变化。我们提出了一种自适应机制,该机制涉及一系列连续的DNA复制驱动的NCCR重组事件,这些事件涉及在NCCR回文二级结构处停滞的DNA复制叉。我们将描述NCCR序列的变化如何指向病毒DNA复制驱动NCCR重组的模型,从而使JCV在其发展为神经毒性过程中适应不同的细胞类型。

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