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早幼粒细胞白血病蛋白亚型II通过对热休克蛋白70和干扰素反应的影响抑制人5型腺病毒感染。

Promyelocytic leukemia protein isoform II inhibits infection by human adenovirus type 5 through effects on HSP70 and the interferon response.

作者信息

Atwan Zeenah, Wright Jordan, Woodman Andrew, Leppard Keith N

机构信息

University of Warwick, School of Life Sciences, Gibbet Hill Road, Coventry CV4 7AL, UK.

出版信息

J Gen Virol. 2016 Aug;97(8):1955-1967. doi: 10.1099/jgv.0.000510. Epub 2016 May 23.

Abstract

Promyelocytic leukemia (PML) proteins have been implicated in antiviral responses but PML and associated proteins are also suggested to support virus replication. One isoform, PML-II, is required for efficient transcription of interferon and interferon-responsive genes. We therefore investigated the PML-II contribution to human adenovirus 5 (Ad5) infection, using shRNA-mediated knockdown. HelaΔII cells showed a 2-3-fold elevation in Ad5 yield, reflecting an increase in late gene expression. This increase was found to be due in part to the reduced innate immune response consequent upon PML-II depletion. However, the effect was minor because the viral E4 Orf3 protein targets and inactivates this PML-II function. The major benefit to Ad5 in HelaΔII cells was exerted via an increase in HSP70; depletion of HSP70 completely reversed this replicative advantage. Increased Ad5 late gene expression was not due either to the previously described inhibition of inflammatory responses by HSP70 or to effects of HSP70 on major late promoter or L4 promoter activity, but might be linked to an observed increase in E1B 55K, as this protein is known to be required for efficient late gene expression. The induction of HSP70 by PML-II removal was specific for the HSPA1B gene among the HSP70 gene family and thus was not the consequence of a general stress response. Taken together, these data show that PML-II, through its various actions, has an overall negative effect on the Ad5 lifecycle.

摘要

早幼粒细胞白血病(PML)蛋白与抗病毒反应有关,但也有研究表明PML及相关蛋白可支持病毒复制。其中一种异构体PML-II是干扰素及干扰素反应基因高效转录所必需的。因此,我们利用短发夹RNA(shRNA)介导的敲低技术,研究了PML-II对人腺病毒5型(Ad5)感染的影响。HelaΔII细胞中Ad5产量提高了2至3倍,这反映出晚期基因表达增加。研究发现,这种增加部分归因于PML-II缺失导致的先天免疫反应减弱。然而,这种影响较小,因为病毒E4 Orf3蛋白靶向并失活了PML-II的这一功能。HelaΔII细胞中Ad5的主要优势是通过热休克蛋白70(HSP70)的增加发挥作用的;敲低HSP70可完全逆转这种复制优势。Ad5晚期基因表达增加既不是由于先前所述的HSP70对炎症反应的抑制作用,也不是由于HSP70对主要晚期启动子或L4启动子活性的影响,而可能与观察到的E1B 55K增加有关,因为已知该蛋白是高效晚期基因表达所必需的。去除PML-II后对HSP70的诱导在HSP70基因家族中对HSPA1B基因具有特异性,因此不是一般应激反应的结果。综上所述,这些数据表明PML-II通过其多种作用,对Ad5的生命周期具有总体负面影响。

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