Cytoplasmic ribosomes hitchhike on mitochondria to dendrites

Corbin J Renken, Susie Kim, Youjun Wu, Marc Hammarlund, Shaul Yogev
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Abstract

Neurons rely on local protein synthesis to rapidly modify the proteome of neurites distant from the cell body. A prerequisite for local protein synthesis is the presence of ribosomes in the neurite, but the mechanisms of ribosome transport in neurons remain poorly defined. Here, we find that ribosomes hitchhike on mitochondria for their delivery to the dendrite of a sensory neuron in C. elegans. Ribosomes co-transport with dendritic mitochondria, and their association requires the atypical Rho GTPase MIRO-1. Disrupting mitochondrial transport prevents ribosomes from reaching the dendrite, whereas ectopic re-localization of mitochondria results in a concomitant re-localization of ribosomes, demonstrating that mitochondria are required and sufficient for instructing ribosome distribution in dendrites. Endolysosomal organelles that are involved in mRNA transport and translation can associate with mitochondria and ribosomes but do not play a significant role in ribosome transport. These results reveal a mechanism for dendritic ribosome delivery, which is a critical upstream requirement for local protein synthesis.
细胞质核糖体搭线粒体的便车前往树突
神经元依靠局部蛋白质合成来迅速改变远离细胞体的神经元的蛋白质组。局部蛋白质合成的先决条件是神经元中存在核糖体,但核糖体在神经元中的运输机制仍不十分明确。在这里,我们发现核糖体会搭线粒体的便车,将其运送到线虫感觉神经元的树突中。核糖体与树突线粒体共同运输,它们的结合需要非典型 Rho GTPase MIRO-1。中断线粒体运输会阻止核糖体到达树突,而异位线粒体重新定位则会导致核糖体同时重新定位,这表明线粒体是指示核糖体在树突中分布的必要和充分条件。参与 mRNA 转运和翻译的溶酶体内细胞器可与线粒体和核糖体结合,但在核糖体转运中并不发挥重要作用。这些结果揭示了树突核糖体运输的机制,这是局部蛋白质合成的关键上游要求。
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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