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From the Cover: Epsin N-terminal homology domains perform an essential function regulating Cdc42 through binding Cdc42 GTPase-activating proteins

机译:从封面开始:Epsin N末端同源结构域通过结合Cdc42 GTPase激活蛋白执行调节Cdc42的基本功能

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摘要

Epsins are endocytic proteins with a structured epsin N-terminal homology (ENTH) domain that binds phosphoinositides and a poorly structured C-terminal region that interacts with ubiquitin and endocytic machinery, including clathrin and endocytic scaffolding proteins. Yeast has two redundant genes encoding epsins, ENT1 and ENT2; deleting both genes is lethal. We demonstrate that the ENTH domain is both necessary and sufficient for viability of ent1Δent2Δ cells. Mutational analysis of the ENTH domain revealed a surface patch that is essential for viability and that binds guanine nucleotide triphosphatase-activating proteins for Cdc42, a critical regulator of cell polarity in all eukaryotes. Furthermore, the epsins contribute to regulation of specific Cdc42 signaling pathways in yeast cells. These data support a model in which the epsins function as spatial and temporal coordinators of endocytosis and cell polarity.
机译:Epsins是具有结构化的epsin N末端同源性(ENTH)结构域的胞吞蛋白,该结构域结合磷酸肌醇和结构不良的C端区域,可与泛素和内吞机制相互作用,包括网格蛋白和内吞的支架蛋白。酵母具有两个编码epsin的冗余基因,即ENT1和ENT2。删除两个基因是致命的。我们证明,ENTH域对于ent1Δent2Δ细胞的生存力既必要又足够。 ENTH结构域的突变分析显示了一个表面斑块,它对生存力至关重要,并且与鸟嘌呤核苷酸三磷酸酶激活蛋白结合的Cdc42,Cdc42是所有真核生物中细胞极性的关键调节剂。此外,epsin有助于调节酵母细胞中特定Cdc42信号通路。这些数据支持一种模型,其中epsin充当内吞作用和细胞极性的时空协调者。

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