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Zinc transporter 2 (SLC30A2) can suppress the vesicular zinc defect of adaptor protein 3-depleted fibroblasts by promoting zinc accumulation in lysosomes

机译:锌转运蛋白2(SLC30A2)可通过促进溶酶体中的锌积累来抑制衔接蛋白3耗尽的成纤维细胞的水泡锌缺陷

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摘要

Zinc accumulation in the lumen of cytoplasmic vesicles is one of the mechanisms by which cells can store significant amounts of this essential but potentially toxic biometal. Previous studies had demonstrated reduced vesicular zinc levels in fibroblasts from mutant mice deficient in adaptor protein 3 (AP-3), a complex involved in protein trafficking to late endosomes and lysosomes. We have observed a similar phenotype in the human fibroblastoid cell line, M1, upon small interference RNA-mediated AP-3 knockdown. A survey of the expression and localization of zinc transporter (ZnT) family members identified ZnT2, ZnT3 and ZnT4 as likely mediators of vesicular zinc accumulation in M1 cells. Expression of green fluorescence protein (GFP)-tagged ZnT2 and ZnT3 promoted accumulation of vesicular zinc as visualized using the indicator zinquin. Moreover, GFP-ZnT2 overexpression elicited a significant accumulation of zinc within mature lysosomes, which in untransfected M1 cells contained little or no chelatable zinc, and restored the zinc storage capability of AP-3-deficient cells. These results suggest that ZnT2 can facilitate vesicular zinc accumulation independently of AP-3 function, and validate the M1 fibroblastoid line as a human cell culture system amenable to the study of vesicular zinc regulation using techniques compatible with functional genomic approaches.
机译:锌在细胞质囊泡腔中的积累是细胞可以储存大量这种必需的但潜在有毒的生物金属的机制之一。先前的研究表明,缺乏衔接子蛋白3(AP-3)的突变小鼠的成纤维细胞中的囊泡锌水平降低,这是一种复杂的蛋白,参与向晚期内体和溶酶体的蛋白运输。我们已经观察到人类成纤维细胞样细胞系M1中的类似表型,受到小干扰RNA介导的AP-3敲低。锌转运蛋白(ZnT)家族成员的表达和定位的调查确定ZnT2,ZnT3和ZnT4可能是M1细胞中囊泡锌积累的介质。绿色荧光蛋白(GFP)标记的ZnT2和ZnT3的表达促进了水泡锌的积累,如使用指示剂zinquin可见。此外,GFP-ZnT2的过表达引起锌在成熟的溶酶体内大量积累,在未转染的M1细胞中锌几乎没有或没有螯合的锌,并恢复了AP-3缺陷细胞的锌储存能力。这些结果表明,ZnT2可以独立于AP-3功能促进囊泡锌的积累,并验证M1成纤维细胞系是适合于使用与功能基因组学方法兼容的技术研究囊泡锌调节的人类细胞培养系统。

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