HCMV activation of ERK-MAPK drives a multi-factorial response promoting the survival of infected myeloid progenitors.

Journal of molecular biochemistry Pub Date : 2017-01-01
Verity Kew, Mark Wills, Matthew Reeves
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Abstract

Viral binding and entry provides the first trigger of a cell death response and thus how human cytomegalovirus (HCMV) evades this - particularly during latent infection where a very limited pattern of gene expression is observed - is less well understood. It has been demonstrated that the activation of cellular signalling pathways upon virus binding promotes the survival of latently infected cells by the activation of cell encoded anti-apoptotic responses. In CD34+ cells, a major site of HCMV latency, ERK signalling is important for survival and we now show that the activation of this pathway impacts on multiple aspects of cell death pathways. The data illustrate that HCMV infection triggers activation of pro-apoptotic Bak which is then countered through multiple ERK-dependent functions. Specifically, ERK promotes ELK1 mediated transcription of the key survival molecule MCL-1, along with a concomitant decrease of the pro-apoptotic BIM and PUMA proteins. Finally, we show that the elimination of ELK-1 from CD34+ cells results in elevated Bak activation in response to viral infection, resulting in cell death. Taken together, these data begin to shed light on the poly-functional response elicited by HCMV via ERK-MAPK to promote cell survival.

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HCMV激活ERK-MAPK驱动多因子反应,促进受感染骨髓祖细胞的存活。
病毒的结合和进入提供了细胞死亡反应的第一个触发因素,因此人类巨细胞病毒(HCMV)是如何避开这一点的,特别是在观察到非常有限的基因表达模式的潜伏感染期间,人们对这一点知之甚少。已经证明,病毒结合后细胞信号通路的激活通过激活细胞编码的抗凋亡反应来促进潜伏感染细胞的存活。在CD34+细胞(HCMV潜伏期的主要部位)中,ERK信号传导对存活很重要,我们现在表明该途径的激活影响细胞死亡途径的多个方面。这些数据表明,HCMV感染触发了促凋亡的Bak的激活,然后通过多种erk依赖的功能来对抗。具体来说,ERK促进ELK1介导的关键存活分子MCL-1的转录,同时减少促凋亡的BIM和PUMA蛋白。最后,我们发现从CD34+细胞中去除ELK-1会导致响应病毒感染的Bak激活升高,从而导致细胞死亡。综上所述,这些数据开始揭示HCMV通过ERK-MAPK引发的多功能反应,以促进细胞存活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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