Institut de biologie moléculaire des plantes, UPR 2357 du CNRS, Université de Strasbourg, 12 rue du Général Zimmer, 67084, Strasbourg Cedex, France.
Université des Antilles, COVACHIM M2E (EA 3592), UFR SEN, Campus de Fouillole, F-97 110, Pointe-à-Pitre, France.
Plant J. 2022 Oct;112(2):309-321. doi: 10.1111/tpj.15962. Epub 2022 Sep 12.
The spatial organization of protein synthesis in the eukaryotic cell is essential for maintaining the integrity of the proteome and the functioning of the cell. Translation on free polysomes or on ribosomes associated with the endoplasmic reticulum has been studied for a long time. More recent data have revealed selective translation of mRNAs in other compartments, in particular at the surface of mitochondria. Although these processes have been described in many organisms, particularky in plants, the mRNA targeting and localized translation mechanisms remain poorly understood. Here, the Arabidopsis thaliana Friendly (FMT) protein is shown to be a cytosolic RNA binding protein that associates with cytosolic ribosomes at the surface of mitochondria. FMT knockout delays seedling development and causes mitochondrial clustering. The mutation also disrupts the mitochondrial proteome, as well as the localization of nuclear transcripts encoding mitochondrial proteins at the surface of mitochondria. These data indicate that FMT participates in the localization of mRNAs and their translation at the surface of mitochondria.
蛋白质在真核细胞中的合成空间组织对于维持蛋白质组的完整性和细胞的功能至关重要。游离多核糖体或与内质网相关的核糖体上的翻译已经研究了很长时间。最近的数据显示,mRNA 在其他隔室中的选择性翻译,特别是在线粒体表面。尽管这些过程在许多生物体中,特别是在植物中,已经被描述,但是 mRNA 靶向和局部翻译机制仍然知之甚少。在这里,拟南芥的 Friendly(FMT)蛋白被证明是一种细胞质 RNA 结合蛋白,它与线粒体表面的细胞质核糖体结合。FMT 敲除会延迟幼苗的发育并导致线粒体聚集。该突变还破坏了线粒体蛋白质组,以及编码线粒体蛋白的核转录物在线粒体表面的定位。这些数据表明,FMT 参与了 mRNAs 在线粒体表面的定位和翻译。