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EhP3 a homolog of 14-3-3 family of protein participates in actin reorganization and phagocytosis in Entamoeba histolytica

机译:EhP3蛋白的14-3-3家族的同源物参与组织变形虫中的肌动蛋白重组和吞噬作用

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摘要

The highly conserved proteins of the 14-3-3 family are universal adaptors known to regulate an enormous range of cellular processes in eukaryotes. However, their biological functions remain largely uncharacterized in pathogenic protists comprising of several 14-3-3 protein isoforms. In this study, we report the role of 14-3-3 in coordinating cytoskeletal dynamics during phagocytosis in a professional phagocytic protist Entamoeba histolytica, the etiological agent of human amebiasis. There are three isoforms of 14-3-3 protein in amoeba and here we have investigated Eh14-3-3 Protein 3 (EhP3). Live and fixed cell imaging studies revealed the presence of this protein throughout the parasite phagocytosis process, with high rate of accumulation at the phagocytic cups and closed phagosomes. Conditional suppression of EhP3 expression caused significant defects in phagocytosis accompanied by extensive diminution of F-actin at the site of cup formation. Downregulated cells also exhibited defective recruitment of an F-actin stabilizing protein, EhCoactosin at the phagocytic cups. In addition, mass spectrometry based analysis further revealed a large group of EhP3-associated proteins, many of these proteins are known to regulate cytoskeletal architecture in E histolytica. The dynamics of these proteins may also be controlled by EhP3. Taken together, our findings strongly suggest that EhP3 is a novel and a key regulatory element of actin dynamics and phagocytosis in E. histolytica.
机译:14-3-3家族的高度保守的蛋白是通用的衔接子,可调节真核生物中广泛的细胞过程。但是,它们的生物学功能在由几种14-3-3蛋白同工型组成的致病性原生生物中仍然没有很大的特征。在这项研究中,我们报告了在专业吞噬细胞原生物Entamoeba histolytica(人类阿米巴病的病原体)的吞噬过程中14-3-3在协调细胞骨架动力学中的作用。变形虫中有14-3-3蛋白的三种同工型,在这里我们研究了Eh14-3-3蛋白3(EhP3)。活细胞和固定细胞成像研究表明,该蛋白在整个寄生虫吞噬过程中均存在,在吞噬杯和闭合吞噬体中具有很高的积累率。 EhP3表达的条件性抑制导致吞噬作用的重大缺陷,并伴随着杯形成部位F-肌动蛋白的大量减少。下调的细胞在吞噬杯上还表现出F-肌动蛋白稳定蛋白EhCoactosin的募集缺陷。此外,基于质谱的分析进一步揭示了一大批与EhP3相关的蛋白质,已知其中许多蛋白质可调节溶组织酶的细胞骨架结构。这些蛋白质的动力学也可以由EhP3控制。综上所述,我们的发现强烈表明,EhP3是一种新颖的组织溶解性大肠杆菌中肌动蛋白动力学和吞噬作用的关键调控元件。

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