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氯化钾培养基中分离的大鼠肝线粒体对外部渗透压变化的反应:基质体积和氧化磷酸化的调节

Response of isolated rat liver mitochondria to variation of external osmolarity in KCl medium: regulation of matrix volume and oxidative phosphorylation.

作者信息

Devin A, Guérin B, Rigoulet M

机构信息

Institut de Biochimie et Génétique Cellulaires du CNRS, Université de Bordeaux, France.

出版信息

J Bioenerg Biomembr. 1997 Dec;29(6):579-90. doi: 10.1023/a:1022435102552.

Abstract

When isolated rat liver mitochondria are incubated in KCI medium, matrix volume, flux, and forces in both hypo- and hyperosmolarity are time-dependent. In hypoosmotic KCl medium, matrix volume is regulated via the K+/H+ exchanger. In hyperosmotic medium, the volume is regulated in such a manner that at steady state, which is reached within 4 min, it is maintained whatever the hyperosmolarity. This regulation is Pi- and deltamuH+-dependent, indicating Pi-K salt entry into the matrix. Under steady state, hyperosmolarity has no effect on isolated rat liver mitochondria energetic parameters such as respiratory rate, proton electrochemical potential difference, and oxidative phosphorylation yield. Hypoosmolarity decreases the NADH/NAD+ ratio, state 3 respiratory rate, and deltamuH+, while oxidative phosphorylation yield is not significantly modified. This indicates kinetic control upstream the respiratory chain. This study points out the key role of potassium on the regulation of matrix volume, flux, and forces. Indeed, while matrix volume is regulated in NaCl hyperosmotic medium, flux and force restoration in hyperosmotic medium occurs only in the presence of external potassium.

摘要

当将分离的大鼠肝脏线粒体置于氯化钾培养基中孵育时,在低渗和高渗条件下,线粒体基质体积、通量和驱动力均随时间变化。在低渗氯化钾培养基中,基质体积通过钾离子/氢离子交换体进行调节。在高渗培养基中,体积调节方式为在4分钟内达到稳态,无论高渗程度如何,体积都能维持稳定。这种调节依赖于无机磷酸(Pi)和质子化学势差(ΔμH⁺),表明Pi-K盐进入基质。在稳态下,高渗对分离的大鼠肝脏线粒体的能量参数,如呼吸速率、质子电化学势差和氧化磷酸化产率没有影响。低渗会降低烟酰胺腺嘌呤二核苷酸(NADH)/烟酰胺腺嘌呤二核苷酸(NAD⁺)比值、状态3呼吸速率和ΔμH⁺,而氧化磷酸化产率没有显著改变。这表明在呼吸链上游存在动力学控制。本研究指出了钾在调节基质体积、通量和驱动力方面的关键作用。实际上,虽然在氯化钠高渗培养基中基质体积可被调节,但只有在存在外部钾的情况下,高渗培养基中的通量和驱动力才能恢复。

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