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RNA Granules Hitchhike on Lysosomes for Long-Distance Transport, Using Annexin A11 as a Molecular Tether

机译:RNA颗粒在溶酶体上用于长距离运输,使用Annexin A11作为分子系绳的溶酶体

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摘要

Long-distance RNA transport enables local protein synthesis at metabolically-active sites distant from the nucleus. This process ensures an appropriate spatial organization of proteins, vital to polarized cells such as neurons. Here, we present a mechanism for RNA transport in which RNA granules "hitchhike" on moving lysosomes. In vitro biophysical modeling, live-cell microscopy, and unbiased proximity labeling proteomics reveal that annexin A11 (ANXA11), an RNA granule-associated phosphoinositide-binding protein, acts as a molecular tether between RNA granules and lysosomes. ANXA11 possesses an N-terminal low complexity domain, facilitating its phase separation into membraneless RNA granules, and a C-terminal membrane binding domain, enabling interactions with lysosomes. RNA granule transport requires ANXA11, and amyotrophic lateral sclerosis (ALS)-associated mutations in ANXA11 impair RNA granule transport by disrupting their interactions with lysosomes.Thus, ANXA11 mediates neuronal RNA transport by tethering RNA granules to actively-transported lysomes, performing a critical cellular function that is disrupted in ALS.
机译:长距离RNA传输使局部蛋白质合成能够在离核远处的代谢活性部位。该过程确保了适当的蛋白质空间组织,对偏振细胞如神经元至关重要。在这里,我们提出了RNA传输的机制,其中RNA颗粒在移动溶酶体上的RNA颗粒“搭便车”。体外模拟,活细胞显微镜和非偏见的接近标记蛋白质组学显示,附睾A11(ANXA11),RNA颗粒相关的磷酸阳性结合蛋白,作为RNA颗粒和溶酶体之间的分子系绳作用。 ANXA11具有N-末端的低复杂性结构域,促进其相分离成膜RNA颗粒和C末端膜结合结构域,使得与溶酶体相互作用。 RNA颗粒转运需要ANXA11,并且通过破坏与溶酶体的相互作用破坏RNA11中的肌萎缩侧硬化症(ALS)突变损害RNA颗粒的运输.Thus,ANXA11通过将RNA颗粒培养至主动转移的溶酶体来介导神经元RNA输送,进行临界细胞在ALS中扰乱的功能。

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