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Nek1 的磷酸化调节电压依赖性阴离子通道 1 的开闭。

Phosphorylation by Nek1 regulates opening and closing of voltage dependent anion channel 1.

机构信息

Department of Medicine, Division of Endocrinology, University of California, Irvine, USA.

出版信息

Biochem Biophys Res Commun. 2010 Apr 9;394(3):798-803. doi: 10.1016/j.bbrc.2010.03.077. Epub 2010 Mar 15.

Abstract

VDAC1 is a key component of the mitochondrial permeability transition pore. To initiate apoptosis and certain other forms of cell death, mitochondria become permeable such that cytochrome c and other pre-apoptotic molecules resident inside the mitochondria enter the cytosol and activate apoptotic cascades. We have shown recently that VDAC1 interacts directly with never-in-mitosis A related kinase 1 (Nek1), and that Nek1 phosphorylates VDAC1 on Ser193 to prevent excessive cell death after injury. How this phosphorylation regulates the activity of VDAC1, however, has not yet been reported. Here, we use atomic force microscopy (AFM) and cytochrome c conductance studies to examine the configuration of VDAC1 before and after phosphorylation by Nek1. Wild-type VDAC1 assumes an open configuration, but closes and prevents cytochrome c efflux when phosphorylated by Nek1. A VDAC1-Ser193Ala mutant, which cannot be phosphorylated by Nek1 under identical conditions, remains open and constitutively allows cytochrome c efflux. Conversely, a VDAC1-Ser193Glu mutant, which mimics constitutive phosphorylation by Nek1, remains closed by AFM and prevents cytochrome c leakage in the same liposome assays. Our data provide a mechanism to explain how Nek1 regulates cell death by affecting the opening and closing of VDAC1.

摘要

VDAC1 是线粒体通透性转换孔的关键组成部分。为了启动细胞凋亡和某些其他形式的细胞死亡,线粒体变得通透,使得细胞色素 c 和其他驻留在线粒体内部的凋亡前分子进入细胞质,并激活凋亡级联。我们最近表明,VDAC1 与从不有丝分裂相关激酶 1(Nek1)直接相互作用,并且 Nek1 磷酸化 VDAC1 的 Ser193 以防止损伤后过度的细胞死亡。然而,这种磷酸化如何调节 VDAC1 的活性尚未报道。在这里,我们使用原子力显微镜(AFM)和细胞色素 c 导通研究来检查 Nek1 磷酸化前后 VDAC1 的构象。野生型 VDAC1 呈开放构象,但在被 Nek1 磷酸化时会关闭并阻止细胞色素 c 流出。在相同条件下不能被 Nek1 磷酸化的 VDAC1-Ser193Ala 突变体保持开放状态,并持续允许细胞色素 c 流出。相反,模拟 Nek1 组成性磷酸化的 VDAC1-Ser193Glu 突变体通过 AFM 保持关闭状态,并在相同的脂质体测定中防止细胞色素 c 泄漏。我们的数据提供了一种机制来解释 Nek1 如何通过影响 VDAC1 的开放和关闭来调节细胞死亡。

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