Lady David Institute for Medical Research, Jewish General Hospital, Montreal, Quebec, H3T 1E2, Canada.
Department of Biochemistry, McGill University Montreal, Quebec, H3A 1A3, Canada.
Nucleic Acids Res. 2022 Jul 22;50(13):7623-7636. doi: 10.1093/nar/gkac557.
Processing bodies (P-bodies) are ribonucleoprotein granules that contain mRNAs, RNA-binding proteins and effectors of mRNA turnover. While P-bodies have been reported to contain translationally repressed mRNAs, a causative role for P-bodies in regulating mRNA decay has yet to be established. Enhancer of decapping protein 4 (EDC4) is a core P-body component that interacts with multiple mRNA decay factors, including the mRNA decapping (DCP2) and decay (XRN1) enzymes. EDC4 also associates with the RNA endonuclease MARF1, an interaction that antagonizes the decay of MARF1-targeted mRNAs. How EDC4 interacts with MARF1 and how it represses MARF1 activity is unclear. In this study, we show that human MARF1 and XRN1 interact with EDC4 using analogous conserved short linear motifs in a mutually exclusive manner. While the EDC4-MARF1 interaction is required for EDC4 to inhibit MARF1 activity, our data indicate that the interaction with EDC4 alone is not sufficient. Importantly, we show that P-body architecture plays a critical role in antagonizing MARF1-mediated mRNA decay. Taken together, our study suggests that P-bodies can directly regulate mRNA turnover by sequestering an mRNA decay enzyme and preventing it from interfacing with and degrading targeted mRNAs.
处理体 (P-bodies) 是含有 mRNA、RNA 结合蛋白和 mRNA 周转效应物的核糖核蛋白颗粒。虽然已经报道 P 体中含有翻译抑制的 mRNA,但 P 体在调节 mRNA 降解中的因果作用尚未得到确立。脱帽增强蛋白 4 (EDC4) 是 P 体的核心组成部分,与多个 mRNA 降解因子相互作用,包括 mRNA 脱帽 (DCP2) 和降解 (XRN1) 酶。EDC4 还与 RNA 内切酶 MARF1 相关联,这种相互作用拮抗 MARF1 靶向的 mRNA 的降解。EDC4 如何与 MARF1 相互作用以及如何抑制 MARF1 活性尚不清楚。在这项研究中,我们表明人类 MARF1 和 XRN1 以相互排斥的方式使用类似的保守短线性基序与 EDC4 相互作用。虽然 EDC4-MARF1 相互作用对于 EDC4 抑制 MARF1 活性是必需的,但我们的数据表明,与 EDC4 的相互作用本身并不足以抑制。重要的是,我们表明 P 体结构在拮抗 MARF1 介导的 mRNA 降解中起着关键作用。综上所述,我们的研究表明,P 体可以通过隔离一种 mRNA 降解酶并阻止其与靶向 mRNA 相互作用和降解来直接调节 mRNA 周转。