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细胞内氯离子通道蛋白 CLIC1 通过调节吞噬体酸化来调节巨噬细胞功能。

Intracellular chloride channel protein CLIC1 regulates macrophage function through modulation of phagosomal acidification.

机构信息

St Vincent's Centre for Applied Medical Research, St Vincent's Hospital and University of New South Wales, Sydney, NSW 2010, Australia.

出版信息

J Cell Sci. 2012 Nov 15;125(Pt 22):5479-88. doi: 10.1242/jcs.110072. Epub 2012 Sep 6.

Abstract

Intracellular chloride channel protein 1 (CLIC1) is a 241 amino acid protein of the glutathione S transferase fold family with redox- and pH-dependent membrane association and chloride ion channel activity. Whilst CLIC proteins are evolutionarily conserved in Metazoa, indicating an important role, little is known about their biology. CLIC1 was first cloned on the basis of increased expression in activated macrophages. We therefore examined its subcellular localisation in murine peritoneal macrophages by immunofluorescence confocal microscopy. In resting cells, CLIC1 is observed in punctate cytoplasmic structures that do not colocalise with markers for endosomes or secretory vesicles. However, when these macrophages phagocytose serum-opsonised zymosan, CLIC1 translocates onto the phagosomal membrane. Macrophages from CLIC1(-/-) mice display a defect in phagosome acidification as determined by imaging live cells phagocytosing zymosan tagged with the pH-sensitive fluorophore Oregon Green. This altered phagosomal acidification was not accompanied by a detectable impairment in phagosomal-lysosomal fusion. However, consistent with a defect in acidification, CLIC1(-/-) macrophages also displayed impaired phagosomal proteolytic capacity and reduced reactive oxygen species production. Further, CLIC1(-/-) mice were protected from development of serum transfer induced K/BxN arthritis. These data all point to an important role for CLIC1 in regulating macrophage function through its ion channel activity and suggest it is a suitable target for the development of anti-inflammatory drugs.

摘要

细胞内氯离子通道蛋白 1(CLIC1)是一个 241 个氨基酸的谷胱甘肽 S 转移酶折叠家族蛋白,具有氧化还原和 pH 依赖性的膜结合和氯离子通道活性。虽然 CLIC 蛋白在后生动物中进化保守,表明其具有重要作用,但对其生物学特性知之甚少。CLIC1 最初是根据激活的巨噬细胞中表达增加而克隆的。因此,我们通过免疫荧光共聚焦显微镜检查了其在鼠腹腔巨噬细胞中的亚细胞定位。在静止细胞中,CLIC1 观察到点状细胞质结构中,不与内体或分泌小泡的标志物共定位。然而,当这些巨噬细胞吞噬血清包被的酵母聚糖时,CLIC1 易位到吞噬体膜上。CLIC1(-/-)小鼠的巨噬细胞在吞噬用 pH 敏感荧光染料 Oregon Green 标记的酵母聚糖时,吞噬体酸化缺陷,通过成像活细胞来确定。这种改变的吞噬体酸化并没有伴随着吞噬体-溶酶体融合的可检测损伤。然而,与酸化缺陷一致,CLIC1(-/-)巨噬细胞还表现出吞噬体蛋白水解能力受损和活性氧产生减少。此外,CLIC1(-/-)小鼠对血清转移诱导的 K/BxN 关节炎的发展具有保护作用。所有这些数据都表明 CLIC1 通过其离子通道活性在调节巨噬细胞功能方面发挥着重要作用,并表明它是开发抗炎药物的合适靶点。

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