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在去能线粒体中诱导内膜的非选择性通透性。

Induction of nonselective permeability of the inner membrane in deenergized mitochondria.

作者信息

Dedov V N, Demin O V, Chernyak V Y, Chernyak B V

机构信息

Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, 119899, Russia.

出版信息

Biochemistry (Mosc). 1999 Jul;64(7):809-16.

Abstract

Induction of the nonselective cyclosporin-sensitive pore in the inner mitochondrial membrane under conditions of complete dissipation of ion gradients and transmembrane potential was studied. This approach allows the kinetics of Ca2+-dependent pore opening and the preceding processes of induction to be studied separately. The effects of mitochondrial heterogeneity were also minimized. We found that the kinetics of pore opening can be described by a minimal two-step scheme where only the rate constant at the first step depends on Ca2+ concentration. Oxidation of pyridine nucleotides in the matrix caused a slow transition in the pore complex and decreased the apparent dissociation constant of the Ca2+-binding site from >1 mM to approximately 30 microM. N-Ethylmaleimide (but not disulfide-reducing agents) prevented and slowly reverted the pore induction process. Data suggesting allosteric modulation of the pore by pyridine nucleotides are presented.

摘要

研究了在离子梯度和跨膜电位完全耗散的条件下,线粒体内膜中对环孢菌素敏感的非选择性孔道的诱导情况。这种方法能够分别研究Ca2+依赖性孔道开放的动力学以及之前的诱导过程。线粒体异质性的影响也被降至最低。我们发现,孔道开放的动力学可以用一个最小的两步模型来描述,其中只有第一步的速率常数取决于Ca2+浓度。基质中吡啶核苷酸的氧化导致孔道复合物缓慢转变,并使Ca2+结合位点的表观解离常数从>1 mM降至约30 μM。N-乙基马来酰亚胺(而非二硫键还原剂)阻止并缓慢逆转孔道诱导过程。本文提供了表明吡啶核苷酸对孔道进行变构调节的数据。

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