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Loss of the F-Actin Binding and Vesicle-Associated Protein Comitin Leads to a Phagocytosis Defect

机译:F-肌动蛋白的结合和囊泡相关的蛋白mititin的丢失导致吞噬作用缺陷。

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Comitin is an F-actin binding and membrane-associated protein from Dictyostelium discoideum, which is present on Golgi and vesicle membranes and changes its localization in response to agents affecting the cytoskeleton. To investigate its in vivo functions we have generated knockout mutants by gene replacement. Based on comitin's in vitro functions we examined properties related to vesicular transport and microfilament function. Whereas cell growth, pinocytosis, secretion, chemotaxis, motility, and development were unaltered, comitin-lacking cells were impaired in the early steps of phagocytosis of Saccharomyces cerevisiae particles and of Escherichia coli, whereas uptake of latex beads was unaffected. Furthermore, the lack of comitin positively affected survival of pathogenic bacteria. Mutant cells also showed an altered response to hyperosmotic shock in comparison to the wild type. The redistribution of comitin during hyperosmotic shock in wild-type cells and its presence on early phagosomes suggest a direct involvement of comitin in these processes.
机译:mitmitin是一种来自Demtyostelium discoideum 的F-肌动蛋白结合膜相关蛋白,它存在于高尔基体和囊泡膜上,并响应影响细胞骨架的物质而改变其定位。为了研究其体内功能,我们通过基因替换产生了敲除突变体。基于表皮蛋白的体外功能,我们检查了与囊泡转运和微丝功能有关的特性。尽管酿酒酵母颗粒和大肠杆菌的吞噬作用的早期阶段细胞生长,胞饮作用,分泌,趋化性,运动性和发育均未改变,但缺乏承诺素的细胞受到损害。 >,而乳胶珠的吸收不受影响。此外,缺乏促胰蛋白酶抑制素积极影响病原菌的存活。与野生型相比,突变细胞对高渗性休克的反应也发生了改变。在高渗性休克期间,野生型细胞中的mititin的重新分布及其在早期吞噬体中的存在表明,commitin直接参与了这些过程。

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