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去帽激活因子Edc3与Lsm4富含Q/N的结构域共同发挥作用,以增强酿酒酵母中的mRNA稳定性并改变mRNA衰变途径依赖性。

The decapping activator Edc3 and the Q/N-rich domain of Lsm4 function together to enhance mRNA stability and alter mRNA decay pathway dependence in Saccharomyces cerevisiae.

作者信息

Huch Susanne, Müller Maren, Muppavarapu Mridula, Gommlich Jessie, Balagopal Vidya, Nissan Tracy

机构信息

Department of Molecular Biology, Umeå University, Umeå SE-901 87, Sweden.

Department of Molecular Biology, Umeå University, Umeå SE-901 87, Sweden

出版信息

Biol Open. 2016 Oct 15;5(10):1388-1399. doi: 10.1242/bio.020487.

Abstract

The rate and regulation of mRNA decay are major elements in the proper control of gene expression. Edc3 and Lsm4 are two decapping activator proteins that have previously been shown to function in the assembly of RNA granules termed P bodies. Here, we show that deletion of edc3, when combined with a removal of the glutamine/asparagine rich region of Lsm4 (edc3Δ lsm4ΔC) reduces mRNA stability and alters pathways of mRNA degradation. Multiple tested mRNAs exhibited reduced stability in the edc3Δ lsm4ΔC mutant. The destabilization was linked to an increased dependence on Ccr4-mediated deadenylation and mRNA decapping. Unlike characterized mutations in decapping factors that either are neutral or are able to stabilize mRNA, the combined edc3Δ lsm4ΔC mutant reduced mRNA stability. We characterized the growth and activity of the major mRNA decay systems and translation in double mutant and wild-type yeast. In the edc3Δ lsm4ΔC mutant, we observed alterations in the levels of specific mRNA decay factors as well as nuclear accumulation of the catalytic subunit of the decapping enzyme Dcp2. Hence, we suggest that the effects on mRNA stability in the edc3Δ lsm4ΔC mutant may originate from mRNA decay protein abundance or changes in mRNPs, or alternatively may imply a role for P bodies in mRNA stabilization.

摘要

mRNA 降解的速率和调控是基因表达正确控制的主要因素。Edc3 和 Lsm4 是两种脱帽激活蛋白,先前已证明它们在称为 P 小体的 RNA 颗粒组装中发挥作用。在此,我们表明,缺失 edc3 并同时去除 Lsm4 的谷氨酰胺/天冬酰胺富集区(edc3Δ lsm4ΔC)会降低 mRNA 稳定性并改变 mRNA 降解途径。多个经过测试的 mRNA 在 edc3Δ lsm4ΔC 突变体中表现出稳定性降低。这种不稳定与对 Ccr4 介导的去腺苷酸化和 mRNA 脱帽的依赖性增加有关。与脱帽因子中已表征的要么是中性的要么能够稳定 mRNA 的突变不同,edc3Δ lsm4ΔC 双突变体降低了 mRNA 稳定性。我们对双突变体和野生型酵母中主要 mRNA 降解系统的生长和活性以及翻译进行了表征。在 edc3Δ lsm4ΔC 突变体中,我们观察到特定 mRNA 降解因子水平的改变以及脱帽酶 Dcp2 催化亚基的核内积累。因此,我们认为 edc3Δ lsm4ΔC 突变体中对 mRNA 稳定性的影响可能源于 mRNA 降解蛋白丰度或 mRNP 的变化,或者可能意味着 P 小体在 mRNA 稳定化中起作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb7c/5087693/63f7c83f8daf/biolopen-5-020487-g1.jpg

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