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翻译起始因子eIF4G(Tif4631p)的RRM1和PAB结构域在酿酒酵母中对输出缺陷型mRNA的核降解起着关键作用。

RRM1 and PAB domains of translation initiation factor eIF4G (Tif4631p) play a crucial role in the nuclear degradation of export-defective mRNAs in Saccharomyces cerevisiae.

作者信息

Saha Upasana, Gaine Rajlaxmi, Paira Sunirmal, Das Satarupa, Das Biswadip

机构信息

Department of Life Science and Biotechnology, Jadavpur University, Kolkata, India.

出版信息

FEBS J. 2024 Mar;291(5):897-926. doi: 10.1111/febs.17016. Epub 2023 Dec 14.

DOI:10.1111/febs.17016
PMID:37994298
Abstract

In Saccharomyces cerevisiae, the CBC-Tif4631p-dependent exosomal targeting (CTEXT) complex consisting of Cbc1/2p, Tif4631p and Upf3p promotes the exosomal degradation of aberrantly long 3'-extended, export-defective transcripts and a small group of normal (termed 'special') mRNAs. We carried out a systematic analysis of all previously characterized functional domains of the major CTEXT component Tif4631p by deleting each of them and interrogating their involvement in the nuclear surveillance of abnormally long 3'-extended and export-defective messages. Our analyses show that the N-terminal RNA recognition motif 1 (RRM1) and poly(A)-binding protein (PAB) domains of Tif4631p, spanning amino acid residues, 1-82 and 188-299 in its primary structure, respectively, play a crucial role in degrading these aberrant messages. Furthermore, the physical association of the nuclear exosome with the altered/variant CTEXT complex harboring any of the mutant Tif4631p proteins lacking either the RRM1 or PAB domain becomes abolished. This finding indicates that the association between CTEXT and the exosome is accomplished via interaction between these Tif4631p domains with the major exosome component, Rrp6p. Abolition of interaction between altered CTEXT (harboring any of the RRM1/PAB-deleted versions of Tif4631p) and the exosome further leads to the impaired recruitment of the RNA targets to the Rrp6p subunit of the exosome carried out by the RRM1/PAB domains of Tif4631p. When analyzing the Tif4631p-interacting proteins, we identified a DEAD-box RNA helicase (Dbp2p), as an interacting partner that turned out to be a previously unknown component of CTEXT. The present study provides a more complete description of the CTEXT complex and offers insight into the functional relationship of this complex with the nuclear exosome.

摘要

在酿酒酵母中,由Cbc1/2p、Tif4631p和Upf3p组成的依赖CBC-Tif4631p的外泌体靶向(CTEXT)复合物促进异常长的3'端延伸、输出缺陷转录本以及一小部分正常(称为“特殊”)mRNA的外泌体降解。我们通过删除主要CTEXT组分Tif4631p的每个先前已表征的功能域,并研究它们在异常长的3'端延伸和输出缺陷信息的核监测中的作用,对其进行了系统分析。我们的分析表明,Tif4631p的N端RNA识别基序1(RRM1)和聚腺苷酸结合蛋白(PAB)结构域,在其一级结构中分别跨越氨基酸残基1 - 82和188 - 299,在降解这些异常信息中起关键作用。此外,核外泌体与含有任何缺失RRM1或PAB结构域的突变Tif4631p蛋白的改变/变异CTEXT复合物的物理结合被消除。这一发现表明,CTEXT与外泌体之间的结合是通过这些Tif4631p结构域与主要外泌体组分Rrp6p之间的相互作用实现的。改变的CTEXT(含有任何缺失RRM1/PAB的Tif4631p版本)与外泌体之间相互作用的消除进一步导致Tif4631p的RRM1/PAB结构域对外泌体Rrp6p亚基的RNA靶标的募集受损。在分析与Tif4631p相互作用的蛋白质时,我们鉴定出一种DEAD盒RNA解旋酶(Dbp2p)作为相互作用伙伴,结果发现它是CTEXT先前未知的组分。本研究提供了对CTEXT复合物更完整的描述,并深入了解了该复合物与核外泌体的功能关系。

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