U2AF regulates the translation and localization of nuclear-encoded mitochondrial mRNAs

Gloria R Garcia, Murali Palangat, Josquin Moraly, Benjamin T. Donovan, Bixuan Wang, Ira Phadke, David Sturgill, Jiji Chen, Brittney Short, Gustavo A. Rivero, David M. Swoboda, Naomi Taylor, Kathy McGraw, Daniel R Larson
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Abstract

The mechanisms underlying molecular targeting to mitochondria remain enigmatic, yet this process is crucial for normal cellular function. The RNA binding proteins U2AF1/2 form a heterodimer (U2AF) that shuttles between the nucleus and cytoplasm, regulating splicing in the nucleus and translation in the cytoplasm. Our study identifies an unexpected role for U2AF in mitochondrial function. We demonstrate that U2AF interacts with nuclear-transcribed mitochondrial mRNAs and proteins, inhibits translation, localizes to the outer mitochondrial membrane, and regulates mRNA localization to mitochondria. Moreover, an oncogenic point-mutation in U2AF1(S34F) disrupts this regulation, leading to altered mitochondrial structure, increased translation, and OXPHOS-dependent metabolic rewiring, recapitulating changes observed in bone marrow progenitors from patients with myelodysplastic syndromes. These findings reveal a non-canonical role for U2AF, where it modulates multiple aspects of mitochondrial function by regulating the translation and mitochondrial targeting of nuclear-encoded mRNAs.
U2AF 调节核编码线粒体 mRNA 的翻译和定位
分子靶向线粒体的机制仍是一个谜,但这一过程对细胞的正常功能至关重要。RNA 结合蛋白 U2AF1/2 形成一个异源二聚体(U2AF),在细胞核和细胞质之间穿梭,调节细胞核中的剪接和细胞质中的翻译。我们的研究发现了 U2AF 在线粒体功能中的意外作用。我们证明了 U2AF 与核转录的线粒体 mRNA 和蛋白质相互作用,抑制翻译,定位到线粒体外膜,并调节 mRNA 在线粒体中的定位。此外,U2AF1(S34F)的致癌点突变破坏了这种调控,导致线粒体结构改变、翻译增加和依赖 OXPHOS 的新陈代谢重新布线,再现了在骨髓增生异常综合征患者骨髓祖细胞中观察到的变化。这些发现揭示了 U2AF 的非典型作用,它通过调节核编码 mRNA 的翻译和线粒体靶向来调节线粒体功能的多个方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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