Department of Microbiology and Molecular Medicine, Faculty of Medicine, University of Geneva, Institute of Genetics and Genomics of Geneva, Geneva, Switzerland.
Nucleic Acids Res. 2023 Jun 9;51(10):5022-5039. doi: 10.1093/nar/gkad299.
The Ccr4-Not complex is a conserved multi protein complex with diverse roles in the mRNA life cycle. Recently we determined that the Not1 and Not4 subunits of Ccr4-Not inversely regulate mRNA solubility and thereby impact dynamics of co-translation events. One mRNA whose solubility is limited by Not4 is MMF1 encoding a mitochondrial matrix protein. In this work we uncover a mechanism that limits MMF1 overexpression and depends upon its co-translational targeting to the mitochondria. We have named this mechanism Mito-ENCay. This mechanism relies on Not4 promoting ribosome pausing during MMF1 translation, and hence the co-translational docking of the MMF1 mRNA to mitochondria via the mitochondrial targeting sequence of the Mmf1 nascent chain, the Egd1 chaperone, the Om14 mitochondrial outer membrane protein and the co-translational import machinery. Besides co-translational Mitochondrial targeting, Mito-ENCay depends upon Egd1 ubiquitination by Not4, the Caf130 subunit of the Ccr4-Not complex, the mitochondrial outer membrane protein Cis1, autophagy and no-go-decay.
Ccr4-Not 复合物是一个保守的多蛋白复合物,在 mRNA 生命周期中具有多种功能。最近,我们确定 Ccr4-Not 的 Not1 和 Not4 亚基反式调节 mRNA 的可溶性,从而影响共翻译事件的动态。Not4 限制其可溶性的一种 mRNA 是编码线粒体基质蛋白的 MMF1。在这项工作中,我们揭示了一种限制 MMF1 过表达的机制,该机制依赖于其共翻译靶向到线粒体。我们将这种机制命名为 Mito-ENCay。该机制依赖于 Not4 在 MMF1 翻译过程中促进核糖体暂停,从而通过 Mmf1 新生链的线粒体靶向序列、Egdl 伴侣蛋白、Om14 线粒体外膜蛋白和共翻译导入机制将 MMF1 mRNA 共翻译靶向到线粒体。除了共翻译的线粒体靶向外,Mito-ENCay 还依赖于 Not4 对 Egd1 的泛素化、Ccr4-Not 复合物的 Caf130 亚基、线粒体外膜蛋白 Cis1、自噬和无义衰变。