细胞 DNA 连接酶 I 被招募到细胞质痘病毒工厂,并掩盖了痘病毒连接酶在病毒 DNA 复制中的作用。

Cellular DNA ligase I is recruited to cytoplasmic vaccinia virus factories and masks the role of the vaccinia ligase in viral DNA replication.

机构信息

Laboratory of Viral Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Cell Host Microbe. 2009 Dec 17;6(6):563-9. doi: 10.1016/j.chom.2009.11.005.

Abstract

Vaccinia virus (VACV) encodes DNA polymerase and additional proteins that enable cytoplasmic replication. We confirmed the ability of VACV DNA ligase mutants to replicate and tested the hypothesis that cellular ligases compensate for loss of viral gene expression. RNA silencing of human DNA ligase I expression and a small molecule inhibitor of human DNA ligase I [corrected] severely reduced replication of viral DNA in cells infected with VACV ligase-deficient mutants, indicating that the cellular enzyme plays a complementary role. Replication of ligase-deficient VACV was greatly reduced and delayed in resting primary cells, correlating with initial low levels of ligase I and subsequent viral induction and localization of ligase I in virus factories. These studies indicate that DNA ligation is essential for poxvirus replication and explain the ability of ligase deletion mutants to replicate in dividing cells but exhibit decreased pathogenicity in mice. Encoding its own ligase might allow VACV to "jump-start" DNA synthesis.

摘要

痘苗病毒(VACV)编码 DNA 聚合酶和其他一些蛋白,这些蛋白能够使病毒在细胞质中进行复制。我们验证了 VACV DNA 连接酶突变体的复制能力,并验证了这样一个假设,即细胞连接酶可以补偿病毒基因表达的缺失。通过 RNA 沉默技术抑制人 DNA 连接酶 I 的表达,以及一种小分子人 DNA 连接酶 I 的抑制剂[校正],严重抑制了感染 VACV 连接酶缺陷突变体的细胞中病毒 DNA 的复制,表明细胞酶发挥了互补作用。在静止的原代细胞中,连接酶缺陷型 VACV 的复制大大减少且延迟,这与初始低水平的连接酶 I 以及随后病毒诱导和连接酶 I 在病毒工厂中的定位相关。这些研究表明,DNA 连接对于痘病毒的复制是必不可少的,这也解释了连接酶缺失突变体在分裂细胞中能够复制,但在小鼠中表现出降低的致病性的原因。编码自身的连接酶可能使 VACV 能够“启动”DNA 合成。

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