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镁对钙诱导的线粒体跨膜电位去极化的影响。

Effect of magnesium on calcium-induced depolarisation of mitochondrial transmembrane potential.

作者信息

Racay Peter

机构信息

Institute of Biochemistry, Jessenius Faculty of Medicine, Comenius University, Martin, Slovak Republic.

出版信息

Cell Biol Int. 2008 Jan;32(1):136-45. doi: 10.1016/j.cellbi.2007.08.024. Epub 2007 Sep 7.

Abstract

An effect of magnesium on calcium-induced depolarisation of mitochondrial transmembrane potential (DeltaPsi(m)) was investigated. Depending on the presence of Mg(2+), addition of Ca(2+) to suspension of isolated rat heart mitochondria induced either reversible depolarisation or irreversible collapse of succinate-driven DeltaPsi(m). Irreversible collapse of DeltaPsi(m), observed in the absence of Mg(2+), was insensitive to Ca(2+) chelation, inhibition of Ca(2+) uptake and increased efflux of Ca(2+) from mitochondrial matrix. Based on these data, opening of mPTP in a high-conductance mode is considered to be a major cause of the Ca(2+)-induced irreversible collapse of DeltaPsi(m) in the absence of Mg(2+). Involvement of mPTP in the process of Ca(2+)-induced collapse of DeltaPsi(m) was further supported by protective effect of both CsA and ADP. Reversible collapse of DeltaPsi(m), observed in the presence of Mg(2+), was sensitive to EGTA, ADP; and inhibition of Ca(2+) uptake and increased efflux of Ca(2+) from mitochondrial matrix. This may represent selective induction of a low-conductance permeability pathway. Presented results indicate important role of Mg(2+) in the process of Ca(2+)-induced depolarisation of DeltaPsi(m) mainly through discrimination between low- and high-conductance modes of mPTP. Minor effect of Mg(2+) on Ca(2+)-induced depolarisation of DeltaPsi(m) was observed at the level of stimulation of DeltaPsi(m) generation and inhibition of mitochondrial Ca(2+) uptake.

摘要

研究了镁对钙诱导的线粒体跨膜电位(ΔΨm)去极化的影响。根据镁离子(Mg2+)的存在情况,向分离的大鼠心脏线粒体悬液中添加钙离子(Ca2+)会导致琥珀酸驱动的ΔΨm发生可逆去极化或不可逆崩溃。在没有Mg2+的情况下观察到的ΔΨm不可逆崩溃,对Ca2+螯合、Ca2+摄取抑制以及线粒体基质中Ca2+外流增加均不敏感。基于这些数据,高电导模式下线粒体通透性转换孔(mPTP)的开放被认为是在没有Mg2+时Ca2+诱导的ΔΨm不可逆崩溃的主要原因。环孢素A(CsA)和二磷酸腺苷(ADP)的保护作用进一步支持了mPTP参与Ca2+诱导的ΔΨm崩溃过程。在有Mg2+的情况下观察到的ΔΨm可逆崩溃,对乙二醇双四乙酸(EGTA)、ADP敏感;对Ca2+摄取抑制以及线粒体基质中Ca2+外流增加也敏感。这可能代表了低电导通透性途径的选择性诱导。呈现的结果表明,Mg2+在Ca2+诱导的ΔΨm去极化过程中起着重要作用,主要是通过区分mPTP的低电导和高电导模式。在刺激ΔΨm产生和抑制线粒体Ca2+摄取的水平上,观察到Mg2+对Ca2+诱导的ΔΨm去极化有轻微影响。

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