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Structural characterization of coatomer in its cytosolic state

机译:处于细胞质状态的涂料的结构表征

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Studies on coat protein I (COPI) have contributed to a basic understanding of how coat proteins generate vesicles to initiate intracellular transport. The core component of the COPI complex is coatomer, which is a multimeric complex that needs to be recruited from the cytosol to membrane in order to function in membrane bending and cargo sorting. Previous structural studies on the clathrin adaptors have found that membrane recruitment induces a large conformational change in promoting their role in cargo sorting. Here, pursuing negative-stain electron microscopy coupled with single-particle analyses, and also performing CXMS (chemical cross-linking coupled with mass spectrometry) for validation, we have reconstructed the structure of coatomer in its soluble form. When compared to the previously elucidated structure of coatomer in its membrane-bound form we do not observe a large conformational change. Thus, the result uncovers a key difference between how COPI versus clathrin coats are regulated by membrane recruitment.
机译:对外壳蛋白I(COPI)的研究有助于对外壳蛋白如何产生囊泡以启动细胞内运输的基本理解。 COPI复合物的核心成分是多聚体,它是一种多聚体复合物,需要从细胞质中募集到膜上才能在膜弯曲和货物分选中发挥作用。以前对网格蛋白衔接子的结构研究发现,膜募集会在促进其在货物分选中的作用时引起较大的构象变化。在这里,追求负染色电子显微镜与单颗粒分析相结合,并且还进行CXMS(化学交联与质谱)的验证,我们以可溶形式重建了涂料的结构。当与先前阐明的膜结合形式的涂层剂结构进行比较时,我们没有观察到大的构象变化。因此,结果揭示了如何通过膜募集调节COPI和网格蛋白涂层之间的关键区别。

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