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镁和吞噬体 P 型 ATP 酶在细胞内杀菌中的作用。

Role of magnesium and a phagosomal P-type ATPase in intracellular bacterial killing.

机构信息

Département de Physiologie Cellulaire et Métabolisme, Faculté de Médecine de Genève, Centre Médical Universitaire, Geneva 4, Switzerland.

出版信息

Cell Microbiol. 2011 Feb;13(2):246-58. doi: 10.1111/j.1462-5822.2010.01532.x. Epub 2010 Nov 2.

Abstract

Bacterial ingestion and killing by phagocytic cells are essential processes to protect the human body from infectious microorganisms. However, only few proteins implicated in intracellular bacterial killing have been identified to date. We used Dictyostelium discoideum, a phagocytic bacterial predator, to study intracellular killing. In a random genetic screen we identified Kil2, a type V P-ATPase as an essential element for efficient intracellular killing of Klebsiella pneumoniae bacteria. Interestingly, kil2 knockout cells still killed efficiently several other species of bacteria, and did not show enhanced susceptibility to Mycobacterium marinum intracellular replication. Kil2 is present in the phagosomal membrane, and its structure suggests that it pumps cations into the phagosomal lumen. The killing defect of kil2 knockout cells was rescued by the addition of magnesium ions, suggesting that Kil2 may function as a magnesium pump. In agreement with this, kil2 mutant cells exhibited a specific defect for growth at high concentrations of magnesium. Phagosomal protease activity was lower in kil2 mutant cells than in wild-type cells, a phenotype reversed by the addition of magnesium to the medium. Kil2 may act as a magnesium pump maintaining magnesium concentration in phagosomes, thus ensuring optimal activity of phagosomal proteases and efficient killing of bacteria.

摘要

吞噬细胞吞噬和杀死细菌是保护人体免受感染性微生物侵害的重要过程。然而,迄今为止,只有少数几种被认为与细胞内细菌杀伤有关的蛋白质被鉴定出来。我们利用吞噬细菌的捕食性生物——盘基网柄菌,来研究细胞内的杀伤过程。在一个随机的遗传筛选中,我们鉴定出 Kil2 是一种 V 型 P-ATP 酶,是有效杀伤肺炎克雷伯菌的必需元素。有趣的是,kil2 敲除细胞仍然能有效地杀死其他几种细菌,并且对分枝杆菌属的海洋分枝杆菌的细胞内复制没有表现出增强的易感性。Kil2 存在于吞噬体膜中,其结构表明它将阳离子泵入吞噬体腔中。镁离子的添加挽救了 kil2 敲除细胞的杀伤缺陷,这表明 Kil2 可能作为一种镁泵发挥作用。与此一致的是,kil2 突变细胞在高浓度镁下的生长表现出特定的缺陷。与野生型细胞相比,kil2 突变细胞中的吞噬体蛋白酶活性较低,向培养基中添加镁可逆转这种表型。Kil2 可能作为一种镁泵,维持吞噬体中的镁浓度,从而确保吞噬体蛋白酶的最佳活性和细菌的有效杀伤。

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