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N 端螺旋与半胱氨酸相互调节人类线粒体电压依赖性阴离子通道蛋白 2 的功能与生物化学特性。

N-helix and Cysteines Inter-regulate Human Mitochondrial VDAC-2 Function and Biochemistry.

作者信息

Maurya Svetlana Rajkumar, Mahalakshmi Radhakrishnan

机构信息

From the Department of Biological Sciences, Molecular Biophysics Laboratory, Indian Institute of Science Education and Research, Bhopal 462023, India.

From the Department of Biological Sciences, Molecular Biophysics Laboratory, Indian Institute of Science Education and Research, Bhopal 462023, India

出版信息

J Biol Chem. 2015 Dec 18;290(51):30240-52. doi: 10.1074/jbc.M115.693978. Epub 2015 Oct 20.

Abstract

Human voltage-dependent anion channel-2 (hVDAC-2) functions primarily as the crucial anti-apoptotic protein in the outer mitochondrial membrane, and additionally as a gated bidirectional metabolite transporter. The N-terminal helix (NTH), involved in voltage sensing, bears an additional 11-residue extension (NTE) only in hVDAC-2. In this study, we assign a unique role for the NTE as influencing the chaperone-independent refolding kinetics and overall thermodynamic stability of hVDAC-2. Our electrophysiology data shows that the N-helix is crucial for channel activity, whereas NTE sensitizes this isoform to voltage gating. Additionally, hVDAC-2 possesses the highest cysteine content, possibly for regulating reactive oxygen species content. We identify interdependent contributions of the N-helix and cysteines to channel function, and the measured stability in micellar environments with differing physicochemical properties. The evolutionary demand for the NTE in the presence of cysteines clearly emerges from our biochemical and functional studies, providing insight into factors that functionally demarcate hVDAC-2 from the other VDACs.

摘要

人类电压依赖性阴离子通道2(hVDAC-2)主要作为线粒体外膜中关键的抗凋亡蛋白发挥作用,此外还作为一种门控双向代谢物转运体。参与电压传感的N端螺旋(NTH)仅在hVDAC-2中带有一个额外的11个残基的延伸(NTE)。在本研究中,我们赋予NTE一个独特的作用,即影响hVDAC-2的伴侣蛋白非依赖性重折叠动力学和整体热力学稳定性。我们的电生理数据表明,N螺旋对通道活性至关重要,而NTE使该亚型对电压门控敏感。此外,hVDAC-2具有最高的半胱氨酸含量,可能用于调节活性氧含量。我们确定了N螺旋和半胱氨酸对通道功能的相互依赖作用,以及在具有不同物理化学性质的胶束环境中测得的稳定性。我们的生化和功能研究清楚地揭示了在存在半胱氨酸的情况下对NTE的进化需求,为从功能上区分hVDAC-2与其他VDAC的因素提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04b0/4683249/c8978e1e1aed/zbc0521532600001.jpg

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