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Remote Control of Gene Function by Local Translation

机译:通过本地翻译远程控制基因功能

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摘要

The subcellular position of a protein is a key determinant of its function. Mounting evidence indicates that RNA localization, where specific mRNAs are transported subcellularly and subsequently translated in response to localized signals, is an evolutionarily conserved mechanism to control protein localization. On-site synthesis confers novel signaling properties to a protein and helps to maintain local proteome homeostasis. Local translation plays particularly important roles in distal neuronal compartments, and dysregulated RNA localization and translation cause defects in neuronal wiring and survival. Here, we discuss key findings in this area and possible implications of this adaptable and swift mechanism for spatial control of gene function.
机译:蛋白质的亚细胞位置是其功能的关键决定因素。越来越多的证据表明,RNA定位是控制蛋白质定位的一种进化上保守的机制,RNA定位是特定的mRNA在亚细胞中运输并随后响应定位信号进行翻译的过程。现场合成赋予蛋白质新的信号传导特性,并有助于维持局部蛋白质组稳态。局部翻译在远端神经元区室中起着特别重要的作用,而失调的RNA定位和翻译会导致神经元接线和存活中的缺陷。在这里,我们讨论了这一领域的主要发现,以及这种对基因功能进行空间控制的适应性和快速机制的潜在含义。

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