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Transmembrane Receptor DCC Associates with Protein Synthesis Machinery and Regulates Translation

机译:跨膜受体DCC与蛋白质合成机器结合并调节翻译

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摘要

Extracellular signals regulate protein translation in many cell functions. A key advantage of control at the translational level is the opportunity to regulate protein synthesis within specific cellular subregions. However, little is known about mechanisms that may link extracellular cues to translation with spatial precision. Here, we show that a transmembrane receptor, DCC, forms a binding complex containing multiple translation components, including eukaryotic initiation factors, ribosomal large and small subunits, and monosomes. In neuronal axons and dendrites DCC colocalizes in particles with translation machinery, and newly synthesized protein. The extracellular ligand netrin promoted DCC-mediated translation and disassociation of translation compo-nents. The functional and physical association of a cell surface receptor with the translation machinery leads to a generalizable model for localization and extracellular regulation of protein synthesis, based on a transmembrane translation regulation complex.
机译:细胞外信号调节许多细胞功能中的蛋白质翻译。在翻译水平上进行控制的主要优势是有机会调节特定细胞亚区域内的蛋白质合成。然而,关于将细胞外线索与翻译精确联系起来的机制知之甚少。在这里,我们显示跨膜受体DCC形成包含多种翻译成分的结合复合物,包括真核生物起始因子,核糖体大和小亚基以及单核糖体。在神经元轴突和树突状细胞中,DCC与翻译机器和新合成的蛋白质共定位在颗粒中。细胞外配体netrin促进DCC介导的翻译和翻译成分的解离。细胞表面受体与翻译机制的功能和物理关联会导致基于跨膜翻译调控复合物的蛋白质合成的定位和细胞外调控的通用模型。

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