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狄氏副球孢子菌(Endomyces) magnusii 和解脂耶氏酵母的线粒体即使在厌氧条件下也不会发生依赖 Ca²⁺的通透性转变。

Mitochondria from Dipodascus (Endomyces) magnusii and Yarrowia lipolytica yeasts did not undergo a Ca²⁺-dependent permeability transition even under anaerobic conditions.

机构信息

A.N. Bach Institute of Biochemistry, Russian Academy of Sciences, 119071 Moscow, Russia.

出版信息

J Bioenerg Biomembr. 2011 Dec;43(6):623-31. doi: 10.1007/s10863-011-9402-3.

Abstract

In this study we used tightly-coupled mitochondria from Yarrowia lipolytica and Dipodascus (Endomyces) magnusii yeasts. The two yeast strains are good alternatives to Saccharomyces cerevisiae, being aerobes containing well structured mitochondria (thus ensuring less structural limitation to observe their appreciable swelling) and fully competent respiratory chain with three invariantly functioning energy conservation points, including Complex I, that can be involved in induction of the canonical Ca²⁺/P(i)-dependent mitochondrial permeability transition (mPTP pore) with an increased open probability when electron flux increases(Fontaine et al. J Biol Chem 273: 25734–25740, 1998; Bernardi et al. FEBS J 273:2077–2099, 2006). High amplitude swelling and collapse of the membrane potential were used as parameters for demonstrating pore opening. Previously (Kovaleva et al. J Bioenerg Biomembr 41:239–249, 2009; Kovaleva et al. Biochemistry (Moscow) 75: 297–303, 2010) we have shown that mitochondria from Y.lipolytica and D. magnusii were very resistant to the Ca²⁺overload combined with varying concentrations of P(i),palmitic acid, SH-reagents, carboxyatractyloside (an inhibitor of ADP/ATP translocator), as well as depletion of intramitochondrial adenine nucleotide pools, deenergization of mitochondria, and shifting to acidic pH values in the presence of high [P(i)]. Here we subjected yeast mitochondria to other conditions known to induce an mPTP in animal and plant mitochondria, namely to Ca²⁺ overload under hypoxic conditions (anaerobiosis). We were unable to observe Ca²⁺-induced high permeability of the inner membrane of D. magnusii and Y. lipolytica yeast mitochondria under anaerobic conditions, thus suggesting that an mPTP-like pore, if it ever occurs in yeast mitochondria, is not coupled with the Ca²⁺ uptake. The results provide the first demonstration of ATP-dependent energization of yeast mitochondria under conditions of anaerobiosis.

摘要

在这项研究中,我们使用了产脂耶氏酵母和大毛霉紧密耦联的线粒体。这两种酵母菌株是酿酒酵母的良好替代品,它们都是好氧菌,含有结构良好的线粒体(从而确保观察到其明显肿胀时的结构限制较小),并且具有完整的呼吸链,其中三个能量守恒点的功能不变,包括复合物 I,当电子通量增加时,复合物 I 可以参与诱导经典的 Ca²⁺/P(i)依赖性线粒体通透性转换(mPTP 孔),并增加开放概率(Fontaine 等人,J Biol Chem 273:25734-25740,1998;Bernardi 等人,FEBS J 273:2077-2099,2006)。高幅度的肿胀和膜电位的崩溃被用作证明孔打开的参数。在此之前(Kovaleva 等人,J Bioenerg Biomembr 41:239-249,2009;Kovaleva 等人,Biochemistry (Moscow) 75:297-303,2010),我们已经表明,产脂耶氏酵母和大毛霉的线粒体对 Ca²⁺过载结合不同浓度的 P(i)、棕榈酸、SH 试剂、羧基三甲胺(一种 ADP/ATP 转运蛋白抑制剂)、以及线粒体内部腺嘌呤核苷酸池的耗竭、线粒体去极化以及在高 [P(i)] 存在下向酸性 pH 值转变都非常耐受。在这里,我们使酵母线粒体经受其他已知条件的影响,这些条件会在动物和植物线粒体中诱导 mPTP,即在缺氧条件下(厌氧)的 Ca²⁺过载。我们无法观察到缺氧条件下大毛霉和产脂耶氏酵母线粒体的内膜 Ca²⁺诱导的高通透性,因此表明 mPTP 样孔,如果它曾经出现在酵母线粒体中,它与 Ca²⁺摄取无关。该结果首次证明了酵母线粒体在厌氧条件下依赖于 ATP 的能量供应。

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