艾滋病毒Vpr激活核小体特异性ATR通路,降解核小体应激传感器CCDC137

Karly A Nisson, Rishi S Patel, Yennifer Delgado, Mehdi Bouhaddou, Lucie Etienne, Oliver I Fregoso
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引用次数: 0

摘要

慢病毒附属蛋白 Vpr 与广泛的细胞通路网络相互作用,对宿主产生各种不同的影响。在它的许多表型中,CRL4A-E3 泛素连接酶复合物共用、DNA 损伤应答(DDR)参与和 G2/M 停滞是保守的,因此被认为具有重要的功能。Vpr如何影响这些功能以及它们是否能解释Vpr如何失调其他细胞通路,这些问题仍不清楚。在这里,我们利用 Vpr 消耗核小体蛋白 CCDC137 的能力来了解 Vpr 诱导的 DDR 激活如何影响核小体过程。我们将 CCDC137 鉴定为 Vpr 的间接靶标,它的降解与 Vpr 诱导的 G2/M 停滞无关。然而,大流行的 HIV-1 和相关的 SIVcpz/SIVgor 的 Vpr 之间的降解是一致的,它是由基因组损伤触发的,这种损伤以类似喜树碱的方式激活了细胞核 ATR 通路。我们确定,Vpr 会导致与 CCDC137 降解相关的、依赖于 ATR 的核极应激特征,包括核极蛋白的重新分布、核极形态的改变以及核糖体生物发生的抑制。总之,这些数据将 CCDC137 区分为非典型 Vpr 靶标,它可能是核极破坏的传感器,从而确定了 Vpr 在核极应激中的新作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HIV Vpr activates a nucleolar-specific ATR pathway to degrade the nucleolar stress sensor CCDC137
The lentiviral accessory protein Vpr engages an extensive network of cellular pathways to drive diverse host consequences. Of its many phenotypes, CRL4A-E3 ubiquitin ligase complex co-option, DNA damage response (DDR) engagement, and G2/M arrest are conserved and thus proposed to be functionally important. How Vpr effects these functions and whether they explain how Vpr dysregulates additional cellular pathways remain unclear. Here we leverage the ability of Vpr to deplete the nucleolar protein CCDC137 to understand how Vpr-induced DDR activation impacts nucleolar processes. We characterize CCDC137 as an indirect Vpr target whose degradation does not correlate with Vpr-induced G2/M arrest. Yet, degradation is conserved among Vpr from the pandemic HIV-1 and related SIVcpz/SIVgor, and it is triggered by genomic insults that activate a nucleolar ATR pathway in a manner similar to camptothecin. We determine that Vpr causes ATR-dependent features of nucleolar stress that correlate with CCDC137 degradation, including redistribution of nucleolar proteins, altered nucleolar morphology, and repressed ribosome biogenesis. Together, this data distinguishes CCDC137 as a non-canonical Vpr target that may serve as a sensor of nucleolar disruption, and in doing so, identifies a novel role for Vpr in nucleolar stress.
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