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跨膜蛋白 163(TMEM163)将锌排出细胞。

Transmembrane 163 (TMEM163) protein effluxes zinc.

机构信息

Department of Biological Science, California State University, Fullerton, CA, 92831, USA.

Department of Biological Science, California State University, Fullerton, CA, 92831, USA; Center for Applied Biotechnology Studies, California State University, Fullerton, CA, 92831, USA.

出版信息

Arch Biochem Biophys. 2019 Nov 30;677:108166. doi: 10.1016/j.abb.2019.108166. Epub 2019 Nov 4.

Abstract

Recent investigations of rodent Tmem163 suggest that it binds to and transports zinc as a dimer, and that alanine mutagenesis of its two species-conserved aspartate (D123A/D127A) residues proposed to bind zinc, perturbs protein function. Direct corroboration, however, is lacking whether it is an influx or efflux transporter in cells. We hypothesized that human TMEM163 is a zinc effluxer based on its predicted protein characteristics. We used cultured human cell lines that either stably or transiently expressed TMEM163, and pre-loaded the cells with zinc to determine transport activity. We found that TMEM163-expressing cells exhibited significant reduction of intracellular zinc levels as evidenced by two zinc-specific fluorescent dyes and radionuclide zinc-65. The specificity of the fluorescence signal was confirmed upon treatment with TPEN, a high-affinity zinc chelator. Multiple sequence alignment and phylogenetic analyses showed that TMEM163 is related to distinct members of the cation diffusion facilitator (CDF) protein family. To further characterize the efflux function of TMEM163, we substituted alanine in two homologous aspartate residues (D124A/D128A) and performed site-directed mutagenesis of several conserved amino acid residues identified as non-synonymous single nucleotide polymorphism (S61R, S95C, S193P, and E286K). We found a significant reduction of zinc efflux upon cellular expression of D124A/D128A or E286K protein variant when compared with wild-type, suggesting that these particular amino acids are important for normal protein function. Taken together, our findings demonstrate that TMEM163 effluxes zinc, and it should now be designated ZNT11 as a new member of the mammalian CDF family of zinc efflux transporters.

摘要

最近对啮齿动物 Tmem163 的研究表明,它作为二聚体结合并转运锌,并且其两个种属保守的天冬氨酸(D123A/D127A)残基被提出结合锌,扰乱了蛋白质的功能。然而,缺乏其是否是细胞内的流入或流出转运体的直接证实。我们假设人类 TMEM163 是一种锌外排转运体,基于其预测的蛋白质特征。我们使用稳定或瞬时表达 TMEM163 的培养人细胞系,并将细胞预加载锌以确定转运活性。我们发现,表达 TMEM163 的细胞表现出明显减少的细胞内锌水平,这可以通过两种锌特异性荧光染料和放射性同位素锌-65 来证明。在用高亲和力锌螯合剂 TPEN 处理后,荧光信号的特异性得到了证实。多重序列比对和系统发育分析表明,TMEM163 与阳离子扩散促进剂(CDF)蛋白家族的不同成员有关。为了进一步表征 TMEM163 的外排功能,我们在两个同源天冬氨酸残基(D124A/D128A)中取代丙氨酸,并对鉴定为非同义单核苷酸多态性(S61R、S95C、S193P 和 E286K)的几个保守氨基酸残基进行定点突变。与野生型相比,当细胞表达 D124A/D128A 或 E286K 蛋白变体时,锌外排明显减少,这表明这些特定的氨基酸对于正常的蛋白质功能很重要。综上所述,我们的研究结果表明 TMEM163 排出锌,并且现在应该被指定为 ZNT11,作为哺乳动物 CDF 家族锌外排转运体的新成员。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b19/6864316/29a88d4b89fd/nihms-1542584-f0001.jpg

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