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EhFP10: A FYVE family GEF interacts with myosin IB to regulate cytoskeletal dynamics during endocytosis in Entamoeba histolytica

机译:EhFP10:FYVE家族GEF与肌球蛋白IB相互作用在溶血性变形杆菌中调节细胞骨架动力学

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摘要

Motility and phagocytosis are key processes that are involved in invasive amoebiasis disease caused by intestinal parasite Entamoeba histolytica. Previous studies have reported unconventional myosins to play significant role in membrane based motility as well as endocytic processes. EhMyosin IB is the only unconventional myosin present in E. histolytica, is thought to be involved in both of these processes. Here, we report an interaction between the SH3 domain of EhMyosin IB and c-terminal domain of EhFP10, a Rho guanine nucleotide exchange factor. EhFP10 was found to be confined to Entamoeba species only, and to contain a c-terminal domain that binds and bundles actin filaments. EhFP10 was observed to localize in the membrane ruffles, phagocytic and macropinocytic cups of E. histolytica trophozoites. It was also found in early pinosomes but not early phagosomes. A crystal structure of the c-terminal SH3 domain of EhMyosin IB (EhMySH3) in complex with an EhFP10 peptide and co-localization studies established the interaction of EhMySH3 with EhFP10. This interaction was shown to lead to inhibition of actin bundling activity and to thereby regulate actin dynamics during endocytosis. We hypothesize that unique domain architecture of EhFP10 might be compensating the absence of Wasp and related proteins in Entamoeba, which are known partners of myosin SH3 domains in other eukaryotes. Our findings also highlights the role of actin bundling during endocytosis.
机译:运动性和吞噬作用是由肠道寄生虫组织溶组织变形杆菌引起的侵袭性阿米巴病的关键过程。先前的研究报道非常规的肌球蛋白在基于膜的运动以及内吞过程中起重要作用。 EhMyosin IB是存在于溶组织性大肠杆菌中的唯一非常规肌球蛋白,被认为与这两个过程有关。在这里,我们报告EhMyosin IB的SH3域和EhFP10,Rho鸟嘌呤核苷酸交换因子的c末端域之间的相互作用。发现EhFP10仅限于Entamoeba物种,并包含与肌动蛋白丝结合并成束的c末端结构域。观察到EhFP10定位于组织溶质疏螺旋体滋养体的膜褶,吞噬和大羽球菌杯中。在早期的脂质体中也发现了它,但是在早期的吞噬体中没有发现它。 EhMyosin IB(EhMySH3)与EhFP10肽复合的c末端SH3结构域的晶体结构和共定位研究确定了EhMySH3与EhFP10的相互作用。已表明这种相互作用导致肌动蛋白束缚活性的抑制,从而在胞吞过程中调节肌动蛋白的动力学。我们假设,EhFP10的独特域结构可能是在补偿Entamoeba中Wasp和相关蛋白的缺失,而Entamoeba是其他真核生物中肌球蛋白SH3域的已知伴侣。我们的发现还突出了肌动蛋白束在胞吞过程中的作用。

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