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鉴定一种新型触发复合物,促进哺乳动物细胞中与核糖体相关的质量控制。

Identification of a novel trigger complex that facilitates ribosome-associated quality control in mammalian cells.

机构信息

From the Graduate School of Pharmaceutical Sciences, Tohoku University, Sendai, 980-8578, Japan.

出版信息

Sci Rep. 2020 Feb 25;10(1):3422. doi: 10.1038/s41598-020-60241-w.

Abstract

Ribosome stalling triggers the ribosome-associated quality control (RQC) pathway, which targets collided ribosomes and leads to subunit dissociation, followed by proteasomal degradation of the nascent peptide. In yeast, RQC is triggered by Hel2-dependent ubiquitination of uS10, followed by subunit dissociation mediated by the RQC-trigger (RQT) complex. In mammals, ZNF598-dependent ubiquitination of collided ribosomes is required for RQC, and activating signal cointegrator 3 (ASCC3), a component of the ASCC complex, facilitates RQC. However, the roles of other components and associated factors of the ASCC complex remain unknown. Here, we demonstrate that the human RQC-trigger (hRQT) complex, an ortholog of the yeast RQT complex, plays crucial roles in RQC. The hRQT complex is composed of ASCC3, ASCC2, and TRIP4, which are orthologs of the RNA helicase Slh1(Rqt2), ubiquitin-binding protein Cue3(Rqt3), and zinc-finger type protein yKR023W(Rqt4), respectively. The ATPase activity of ASCC3 and the ubiquitin-binding activity of ASCC2 are crucial for triggering RQC. Given the proposed function of the RQT complex in yeast, we propose that the hRQT complex recognizes the ubiquitinated stalled ribosome and induces subunit dissociation to facilitate RQC.

摘要

核糖体停滞会触发核糖体相关的质量控制(RQC)途径,该途径针对碰撞的核糖体,并导致亚基解离,随后新生肽被蛋白酶体降解。在酵母中,RQC 是由 Hel2 依赖性泛素化 uS10 触发的,随后由 RQC 触发(RQT)复合物介导亚基解离。在哺乳动物中,碰撞核糖体的 ZNF598 依赖性泛素化对于 RQC 是必需的,并且激活信号共整合器 3(ASCC3),即 ASCC 复合物的一个组成部分,促进 RQC。然而,ASCC 复合物的其他成分和相关因子的作用仍然未知。在这里,我们证明了人类 RQC 触发(hRQT)复合物,即酵母 RQT 复合物的同源物,在 RQC 中起着至关重要的作用。hRQT 复合物由 ASCC3、ASCC2 和 TRIP4 组成,它们分别是 RNA 解旋酶 Slh1(Rqt2)、泛素结合蛋白 Cue3(Rqt3)和锌指蛋白 yKR023W(Rqt4)的同源物。ASCC3 的 ATP 酶活性和 ASCC2 的泛素结合活性对于触发 RQC 至关重要。鉴于 RQT 复合物在酵母中的功能,我们提出 hRQT 复合物识别泛素化的停滞核糖体并诱导亚基解离以促进 RQC。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d622/7042231/8ba58f486d99/41598_2020_60241_Fig1_HTML.jpg

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