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细胞内锌离子水平受瞬时受体电位通道M型1(TRPML1)与跨膜蛋白163(TMEM163)相互作用的调节。

Cellular zinc levels are modulated by TRPML1-TMEM163 interaction.

作者信息

Cuajungco Math P, Basilio Luigi C, Silva Joshua, Hart Thomas, Tringali Jonathan, Chen Cheng-Chang, Biel Martin, Grimm Christian

机构信息

Department of Biological Science and Center for Applied Biotechnology Studies, California State University, Fullerton, CA, 92831, USA; Mental Health Research Institute, Melbourne Brain Centre, Parkville, VIC, 3052, Australia.

出版信息

Traffic. 2014 Nov;15(11):1247-65. doi: 10.1111/tra.12205. Epub 2014 Sep 2.

Abstract

Mucolipidosis type IV (MLIV) is caused by loss of function mutations in the TRPML1 ion channel. We previously reported that tissue zinc levels in MLIV were abnormally elevated; however, the mechanism behind this pathologic accumulation remains unknown. Here, we identify transmembrane (TMEM)-163 protein, a putative zinc transporter, as a novel interacting partner for TRPML1. Evidence from yeast two-hybrid, tissue expression pattern, co-immunoprecipitation, mass spectrometry and confocal microscopy studies confirmed the physical association of TMEM163 with TRPML1. This interaction is disrupted when a part of TMEM163's N-terminus was deleted. Further studies to define the relevance of their interaction revealed that the plasma membrane (PM) levels of TMEM163 significantly decrease when TRPML1 is co-expressed in HEK-293 cells, while it mostly localizes within the PM when co-expressed with a mutant TRPML1 that distributes mostly in the PM. Meanwhile, co-expression of TMEM163 does not alter TRPML1 channel activity, but its expression levels in MLIV patient fibroblasts are reduced, which correlate with marked accumulation of zinc in lysosomes when these cells are acutely exposed to exogenous zinc (100 μM). When TMEM163 is knocked down or when TMEM163 and TRPML1 are co-knocked down in HEK-293 cells treated overnight with 100 nm zinc, the cells have significantly higher intracellular zinc levels than untreated control. Overall, these findings suggest that TMEM163 and TRPML1 proteins play a critical role in cellular zinc homeostasis, and thus possibly explain a novel mechanism for the pathological overload of zinc in MLIV disease.

摘要

IV型粘脂贮积症(MLIV)由TRPML1离子通道的功能丧失性突变引起。我们之前报道过,MLIV患者组织中的锌水平异常升高;然而,这种病理性蓄积背后的机制仍不清楚。在这里,我们鉴定出跨膜蛋白(TMEM)-163,一种假定的锌转运蛋白,是TRPML1的新型相互作用伴侣。酵母双杂交、组织表达模式、免疫共沉淀、质谱分析和共聚焦显微镜研究的证据证实了TMEM163与TRPML1之间存在物理关联。当TMEM163的N端部分被缺失时,这种相互作用就会被破坏。进一步研究它们相互作用的相关性发现,当TRPML1在HEK-293细胞中共表达时,TMEM163的质膜(PM)水平显著降低,而当与主要分布在质膜中的突变型TRPML1共表达时,TMEM163大多定位于质膜内。同时,TMEM163的共表达不会改变TRPML1通道活性,但其在MLIV患者成纤维细胞中的表达水平降低,当这些细胞急性暴露于外源性锌(100μM)时,这与溶酶体中锌的显著蓄积相关。当在经100 nM锌处理过夜的HEK-293细胞中敲低TMEM163,或同时敲低TMEM163和TRPML1时,细胞内锌水平比未处理的对照显著更高。总体而言,这些发现表明TMEM163和TRPML1蛋白在细胞锌稳态中起关键作用,因此可能解释了MLIV疾病中锌病理性过载的新机制。

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