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DNA损伤信号传导是人类博卡病毒1 DNA在分裂的HEK293细胞中复制所必需的。

DNA Damage Signaling Is Required for Replication of Human Bocavirus 1 DNA in Dividing HEK293 Cells.

作者信息

Deng Xuefeng, Xu Peng, Zou Wei, Shen Weiran, Peng Jianxin, Liu Kaiyu, Engelhardt John F, Yan Ziying, Qiu Jianming

机构信息

Department of Microbiology, Molecular Genetics and Immunology, University of Kansas Medical Center, Kansas City, Kansas, USA.

College of Life Sciences, Central China Normal University, Wuhan, China.

出版信息

J Virol. 2016 Dec 16;91(1). doi: 10.1128/JVI.01831-16. Print 2017 Jan 1.

Abstract

UNLABELLED

Human bocavirus 1 (HBoV1), an emerging human-pathogenic respiratory virus, is a member of the genus Bocaparvovirus of the Parvoviridae family. In human airway epithelium air-liquid interface (HAE-ALI) cultures, HBoV1 infection initiates a DNA damage response (DDR), activating all three phosphatidylinositol 3-kinase-related kinases (PI3KKs): ATM, ATR, and DNA-PKcs. In this context, activation of PI3KKs is a requirement for amplification of the HBoV1 genome (X. Deng, Z. Yan, F. Cheng, J. F. Engelhardt, and J. Qiu, PLoS Pathog, 12:e1005399, 2016, https://doi.org/10.1371/journal.ppat.1005399), and HBoV1 replicates only in terminally differentiated, nondividing cells. This report builds on the previous discovery that the replication of HBoV1 DNA can also occur in dividing HEK293 cells, demonstrating that such replication is likewise dependent on a DDR. Transfection of HEK293 cells with the duplex DNA genome of HBoV1 induces hallmarks of DDR, including phosphorylation of H2AX and RPA32, as well as activation of all three PI3KKs. The large viral nonstructural protein NS1 is sufficient to induce the DDR and the activation of the three PI3KKs. Pharmacological inhibition or knockdown of any one of the PI3KKs significantly decreases both the replication of HBoV1 DNA and the downstream production of progeny virions. The DDR induced by the HBoV1 NS1 protein does not cause obvious damage to cellular DNA or arrest of the cell cycle. Notably, key DNA replication factors and major DNA repair DNA polymerases (polymerase η [Pol η] and polymerase κ [Pol κ]) are recruited to the viral DNA replication centers and facilitate HBoV1 DNA replication. Our study provides the first evidence of the DDR-dependent parvovirus DNA replication that occurs in dividing cells and is independent of cell cycle arrest.

IMPORTANCE

The parvovirus human bocavirus 1 (HBoV1) is an emerging respiratory virus that causes lower respiratory tract infections in young children worldwide. HEK293 cells are the only dividing cells tested that fully support the replication of the duplex genome of this virus and allow the production of progeny virions. In this study, we demonstrate that HBoV1 induces a DDR that plays significant roles in the replication of the viral DNA and the production of progeny virions in HEK293 cells. We also show that both cellular DNA replication factors and DNA repair DNA polymerases colocalize within centers of viral DNA replication and that Pol η and Pol κ play an important role in HBoV1 DNA replication. Whereas the DDR that leads to the replication of the DNA of other parvoviruses is facilitated by the cell cycle, the DDR triggered by HBoV1 DNA replication or NS1 is not. HBoV1 is the first parvovirus whose NS1 has been shown to be able to activate all three PI3KKs (ATM, ATR, and DNA-PKcs).

摘要

未标记

人博卡病毒1型(HBoV1)是一种新出现的人类致病性呼吸道病毒,属于细小病毒科博卡细小病毒属。在人气道上皮气液界面(HAE-ALI)培养物中,HBoV1感染引发DNA损伤反应(DDR),激活所有三种磷脂酰肌醇3-激酶相关激酶(PI3KKs):ATM、ATR和DNA-PKcs。在这种情况下,PI3KKs的激活是HBoV1基因组扩增的必要条件(X. Deng、Z. Yan、F. Cheng、J. F. Engelhardt和J. Qiu,《公共科学图书馆·病原体》,12:e1005399,2016,https://doi.org/10.1371/journal.ppat.1005399),并且HBoV1仅在终末分化的非分裂细胞中复制。本报告基于先前的发现,即HBoV1 DNA的复制也可在分裂的HEK293细胞中发生,证明这种复制同样依赖于DDR。用HBoV1的双链DNA基因组转染HEK293细胞会诱导DDR的特征,包括H2AX和RPA32的磷酸化,以及所有三种PI3KKs的激活。大型病毒非结构蛋白NS1足以诱导DDR和三种PI3KKs的激活。对任何一种PI3KKs进行药理抑制或敲低都会显著降低HBoV1 DNA的复制以及子代病毒颗粒的下游产生。由HBoV1 NS1蛋白诱导的DDR不会对细胞DNA造成明显损伤或导致细胞周期停滞。值得注意的是,关键的DNA复制因子和主要的DNA修复DNA聚合酶(聚合酶η [Pol η]和聚合酶κ [Pol κ])被招募到病毒DNA复制中心并促进HBoV1 DNA复制。我们的研究首次证明了在分裂细胞中发生的依赖DDR的细小病毒DNA复制,且该复制与细胞周期停滞无关。

重要性

细小病毒人博卡病毒1型(HBoV1)是一种新出现的呼吸道病毒,可在全球范围内导致幼儿下呼吸道感染。HEK293细胞是唯一经测试能完全支持该病毒双链基因组复制并产生子代病毒颗粒的分裂细胞。在本研究中,我们证明HBoV1诱导了一种DDR,该DDR在HEK293细胞中病毒DNA的复制和子代病毒颗粒的产生中发挥重要作用。我们还表明,细胞DNA复制因子和DNA修复DNA聚合酶都共定位于病毒DNA复制中心,并且Pol η和Pol κ在HBoV1 DNA复制中起重要作用。虽然导致其他细小病毒DNA复制的DDR由细胞周期促进,但由HBoV1 DNA复制或NS1触发的DDR并非如此。HBoV1是首个其NS1已被证明能够激活所有三种PI3KKs(ATM、ATR和DNA-PKcs)的细小病毒。

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