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Nek1通过对VDAC1进行磷酸化来调节细胞死亡和线粒体膜通透性。

Nek1 regulates cell death and mitochondrial membrane permeability through phosphorylation of VDAC1.

作者信息

Chen Yumay, Craigen William J, Riley Daniel J

机构信息

Department of Medicine, Division of Nephrology, The University of Texas Health Science Center at San Antonio, San Antonio, Texas 78229-3900, USA.

出版信息

Cell Cycle. 2009 Jan 15;8(2):257-67. doi: 10.4161/cc.8.2.7551. Epub 2009 Jan 4.

Abstract

The mammalian NIMA-related protein kinase 1 (Nek1) is important for keeping cells alive after DNA damage, but the mechanism by which injured cells die without functional Nek1 has not yet been demonstrated. Here we show that Nek1 regulates the pathway to mitochondrial cell death through phosphorylation of voltage dependent anion channel 1 (VDAC1) on serine 193. Nek1 associates with VDAC1 in a yeast two-hybrid system, as well as by GST pull-down assays and by reciprocal immunoprecipitation. A portion of Nek1 in cells also localizes at mitochondria. Ectopic expression of a kinase-dead Nek1 mutant results in cell death, which is immediately preceded by loss of the Nek1-dependent VDAC1-S193 phosphorylation. UV irradiation of Nek1-deficient cells or silencing of endogenous Nek1 expression similarly results in loss of the specific S193 phosphorylation before cells die. Nek1-deficient cells are characterized by exaggerated mitochondrial membrane permeability (MMP) and accelerated cell death. Ectopic expression of a VDAC1-Ser193Ala mutant, which cannot be phosphorylated by Nek1, also results in cell death. A VDAC1-Ser193Glu mutant, designed to mimic constitutive phosphorylation by Nek1, rescues exaggerated MMP and keeps cells alive after DNA damaging injury, but only transiently. The direct interaction between Nek1 and VDAC1 provides a mechanism to explain how Nek1 prevents excessive cell death, as well as the first direct evidence that a specific kinase regulates VDAC1 activity.

摘要

哺乳动物NIMA相关蛋白激酶1(Nek1)对于DNA损伤后维持细胞存活很重要,但缺乏功能性Nek1时受损细胞的死亡机制尚未得到证实。在这里,我们表明Nek1通过对电压依赖性阴离子通道1(VDAC1)丝氨酸193位点的磷酸化来调节线粒体细胞死亡途径。在酵母双杂交系统中,Nek1与VDAC1相互作用,通过谷胱甘肽S-转移酶(GST)下拉实验和相互免疫沉淀也可证明二者相互作用。细胞中的一部分Nek1也定位于线粒体。激酶失活的Nek1突变体的异位表达导致细胞死亡,在此之前Nek1依赖的VDAC1-S193磷酸化会立即丧失。对Nek1缺陷细胞进行紫外线照射或沉默内源性Nek1表达,同样会导致细胞死亡前特定的S193磷酸化丧失。Nek1缺陷细胞的特征是线粒体膜通透性(MMP)增强和细胞死亡加速。不能被Nek1磷酸化的VDAC1-Ser193Ala突变体的异位表达也会导致细胞死亡。设计用于模拟Nek1组成型磷酸化的VDAC1-Ser193Glu突变体可挽救过度的MMP,并使细胞在DNA损伤后存活,但只是短暂存活。Nek1与VDAC1之间的直接相互作用提供了一种机制,来解释Nek1如何防止过度的细胞死亡,以及首次直接证明特定激酶调节VDAC1活性的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce95/2673983/99ca0cd3ef5e/nihms-100079-f0001.jpg

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