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首页> 外文期刊>PLoS Pathogens >Parvovirus B19 NS1 protein induces cell cycle arrest at G2-phase by activating the ATR-CDC25C-CDK1 pathway
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Parvovirus B19 NS1 protein induces cell cycle arrest at G2-phase by activating the ATR-CDC25C-CDK1 pathway

机译:Parvovirus B19 NS1蛋白通过激活ATR-CDC25C-CDK1途径诱导G2-阶段的细胞周期停滞

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摘要

Human parvovirus B19 (B19V) infection of primary human erythroid progenitor cells (EPCs) arrests infected cells at both late S-phase and G2-phase, which contain 4N DNA. B19V infection induces a DNA damage response (DDR) that facilitates viral DNA replication but is dispensable for cell cycle arrest at G2-phase; however, a putative C-terminal transactivation domain (TAD2) within NS1 is responsible for G2-phase arrest. To fully understand the mechanism underlying B19V NS1-induced G2-phase arrest, we established two doxycycline-inducible B19V-permissive UT7/Epo-S1 cell lines that express NS1 or NS1mTAD2, and examined the function of the TAD2 domain during G2-phase arrest. The results confirm that the NS1 TAD2 domain plays a pivotal role in NS1-induced G2-phase arrest. Mechanistically, NS1 transactivated cellular gene expression through the TAD2 domain, which was itself responsible for ATR (ataxia-telangiectasia mutated and Rad3-related) activation. Activated ATR phosphorylated CDC25C at serine 216, which in turn inactivated the cyclin B/CDK1 complex without affecting nuclear import of the complex. Importantly, we found that the ATR-CHK1-CDC25C-CDK1 pathway was activated during B19V infection of EPCs, and that ATR activation played an important role in B19V infection-induced G2-phase arrest.
机译:人parvovirus b19(b19v)初级人红细胞祖细胞(EPC)的感染在晚期S相和G2阶段捕获感染的细胞,其含有4N DNA。 B19V感染诱导促进病毒DNA复制的DNA损伤响应(DDR),但在G2相的细胞周期停滞可分配;然而,NS1内的推定的C末端转移结构域(TAD2)负责G2相阻止。为了充分了解B19V NS1诱导的G2相阻滞的机制,我们建立了两种强霉素诱导的B19V-Permissive UT7 / EPO-S1细胞系,其表达NS1或NS1MTAD2,并在G2相阻止期间检查了TAD2结构域的功能。结果证实,NS1 TAD2结构域在NS1诱导的G2相阻止中起着枢轴作用。机械地,通过TAD2结构域的NS1转基因细胞基因表达,其本身是ATR(Ataxia-Telanciectasia突变和RAD3相关的)活化。在丝氨酸216处活化ATR磷酸化CDC25C,其依次灭活细胞周期蛋白B / CDK1复合物,而不会影响复合物的核导入。重要的是,我们发现ATR-CHK1-CDC25C-CDK1途径在EPC的B19V感染期间激活,并且ATR激活在B19V感染诱导的G2相停止中发挥了重要作用。

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