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耐盐酵母德巴利汉逊酵母的线粒体(嗜盐细胞器?)。

Mitochondria from the salt-tolerant yeast Debaryomyces hansenii (halophilic organelles?).

机构信息

Department of Biochemistry, Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, Mexico City, México.

出版信息

J Bioenerg Biomembr. 2010 Feb;42(1):11-9. doi: 10.1007/s10863-009-9264-0. Epub 2010 Jan 21.

Abstract

The yeast Debaryomyces hansenii is considered a marine organism. Sea water contains 0.6 M Na(+) and 10 mM K(+); these cations permeate into the cytoplasm of D. hansenii where proteins and organelles have to adapt to high salt concentrations. The effect of high concentrations of monovalent and divalent cations on isolated mitochondria from D. hansenii was explored. As in S. cerevisiae, these mitochondria underwent a phosphate-sensitive permeability transition (PT) which was inhibited by Ca(2+) or Mg(2+). However, D. hansenii mitochondria require higher phosphate concentrations to inhibit PT. In regard to K(+) and Na(+), and at variance with mitochondria from all other sources known, these monovalent cations promoted closure of the putative mitochondrial unspecific channel. This was evidenced by the K(+)/Na(+)-promoted increase in: respiratory control, transmembrane potential and synthesis of ATP. PT was equally sensitive to either Na(+) or K(+). In the presence of propyl-gallate PT was still observed while in the presence of cyanide the alternative pathway was not active enough to generate a Delta Psi due to a low AOX activity. In D. hansenii mitochondria K(+) and Na(+) optimize oxidative phosphorylation, providing an explanation for the higher growth efficiency in saline environments exhibited by this yeast.

摘要

汉逊德巴利酵母被认为是一种海洋生物。海水中含有 0.6 M 的 Na(+)和 10 mM 的 K(+);这些阳离子渗透到德巴利酵母的细胞质中,在那里蛋白质和细胞器必须适应高盐浓度。研究了高浓度的单价和二价阳离子对汉逊德巴利酵母分离线粒体的影响。与酿酒酵母一样,这些线粒体经历了磷酸盐敏感的通透性转变(PT),该转变被 Ca(2+)或 Mg(2+)抑制。然而,汉逊德巴利酵母线粒体需要更高的磷酸盐浓度来抑制 PT。关于 K(+)和 Na(+),与所有其他已知来源的线粒体不同,这些单价阳离子促进了假定的线粒体非特异性通道的关闭。这可以通过 K(+)/Na(+)促进的呼吸控制、跨膜电位和 ATP 合成的增加来证明。PT 对 Na(+)或 K(+)同样敏感。在没食子丙酯存在的情况下仍观察到 PT,而在氰化物存在的情况下,由于 AOX 活性低,替代途径不够活跃,无法产生 Delta Psi。在汉逊德巴利酵母线粒体中,K(+)和 Na(+)优化了氧化磷酸化,这为这种酵母在盐环境中表现出更高的生长效率提供了解释。

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