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钙调蛋白调节大鼠脑线粒体电压依赖性阴离子通道的门控特性。

Calmodulin Modulates the Gating Properties of Voltage-Dependent Anion Channel from Rat Brain Mitochondria.

机构信息

Department of Biophysics, University of Delhi South Campus, New Delhi 110021, India.

出版信息

J Phys Chem B. 2022 Jul 7;126(26):4857-4871. doi: 10.1021/acs.jpcb.1c10322. Epub 2022 Jun 27.

Abstract

Calmodulin (CaM) is a key signaling protein that plays a decisive role in mitochondrial Ca homeostasis and signaling and modulates the mitochondrial membrane properties. We propose that voltage-dependent anion channel 1 (VDAC1), one of the most abundant outer mitochondrial membrane (OMM) proteins, could be its possible target or site of action. VDAC1 is known to play a crucial role in the mitochondrial Ca signaling mechanism. Bilayer electrophysiology experiments show that CaM significantly reduces VDAC1's conductivity and modulates its gating as well as permeability properties. Also, spectrofluorimetric analysis indicates the possibility of binding CaM with VDAC1. Theoretical analysis of fluorescence data shows that the aforementioned protein-protein interaction is not linear, but rather it is a complex nonlinear process. In VDAC1, CaM binding site has been predicted using various bioinformatics tools. It is proposed that CaM could interact with VDAC1's outer-loop region and regulate its gating properties. Our findings suggest that VDAC1-CaM interaction could play a crucial role in the transport of ions and metabolites through the OMM and the regulation of the mitochondrial Ca signaling mechanism through alteration of VDAC1's gating and conductive properties.

摘要

钙调蛋白(CaM)是一种关键的信号蛋白,在调节线粒体钙离子稳态和信号转导中发挥决定性作用,并调节线粒体膜的性质。我们提出,电压依赖性阴离子通道 1(VDAC1)作为最丰富的线粒体外膜(OMM)蛋白之一,可能是其可能的靶标或作用部位。VDAC1 已知在线粒体钙信号机制中发挥关键作用。双层膜电生理学实验表明,CaM 显著降低了 VDAC1 的电导率,并调节了其门控以及通透性。此外,荧光分光光度分析表明 CaM 与 VDAC1 结合的可能性。荧光数据的理论分析表明,上述蛋白质-蛋白质相互作用不是线性的,而是一个复杂的非线性过程。使用各种生物信息学工具预测了 VDAC1 中的 CaM 结合位点。提出 CaM 可能与 VDAC1 的外环区域相互作用,并调节其门控特性。我们的研究结果表明,VDAC1-CaM 相互作用可能在通过 OMM 运输离子和代谢物以及通过改变 VDAC1 的门控和导电特性来调节线粒体钙信号机制中发挥关键作用。

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