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由眼虫线粒体中一条替代呼吸途径支持的氧化磷酸化。

Oxidative phosphorylation supported by an alternative respiratory pathway in mitochondria from Euglena.

作者信息

Moreno-Sánchez R, Covián R, Jasso-Chávez R, Rodríguez-Enríquez S, Pacheco-Moisés F, Torres-Márquez M E

机构信息

Departamento de Bioquímica, Instituto Nacional de Cardiología, Juan Badiano # 1, Col. Sección XVI, Tlalpan, Mexico, Mexico.

出版信息

Biochim Biophys Acta. 2000 Apr 21;1457(3):200-10. doi: 10.1016/s0005-2728(00)00102-x.

Abstract

The effect of antimycin, myxothiazol, 2-heptyl-4-hydroxyquinoline-N-oxide, stigmatellin and cyanide on respiration, ATP synthesis, cytochrome c reductase, and membrane potential in mitochondria isolated from dark-grown Euglena cells was determined. With L-lactate as substrate, ATP synthesis was partially inhibited by antimycin, but the other four inhibitors completely abolished the process. Cyanide also inhibited the antimycin-resistant ATP synthesis. Membrane potential was collapsed (<60 mV) by cyanide and stigmatellin. However, in the presence of antimycin, a H(+)60 mV) that sufficed to drive ATP synthesis remained. Cytochrome c reductase, with L-lactate as donor, was diminished by antimycin and myxothiazol. Cytochrome bc(1) complex activity was fully inhibited by antimycin, but it was resistant to myxothiazol. Stigmatellin inhibited both L-lactate-dependent cytochrome c reductase and cytochrome bc(1) complex activities. Respiration was partially inhibited by the five inhibitors. The cyanide-resistant respiration was strongly inhibited by diphenylamine, n-propyl-gallate, salicylhydroxamic acid and disulfiram. Based on these results, a model of the respiratory chain of Euglena mitochondria is proposed, in which a quinol-cytochrome c oxidoreductase resistant to antimycin, and a quinol oxidase resistant to antimycin and cyanide are included.

摘要

测定了抗霉素、粘噻唑、2-庚基-4-羟基喹啉-N-氧化物、抑霉素和氰化物对从黑暗培养的眼虫细胞中分离出的线粒体的呼吸作用、ATP合成、细胞色素c还原酶和膜电位的影响。以L-乳酸为底物时,抗霉素部分抑制ATP合成,但其他四种抑制剂则完全阻断该过程。氰化物也抑制抗霉素抗性的ATP合成。氰化物和抑霉素使膜电位崩溃(<60 mV)。然而,在存在抗霉素的情况下,仍存在足以驱动ATP合成的H(+)60 mV)。以L-乳酸为供体时,抗霉素和粘噻唑会降低细胞色素c还原酶的活性。抗霉素完全抑制细胞色素bc(1)复合物的活性,但它对粘噻唑有抗性。抑霉素抑制依赖L-乳酸的细胞色素c还原酶和细胞色素bc(1)复合物的活性。这五种抑制剂部分抑制呼吸作用。抗氰呼吸受到二苯胺、正丙基没食子酸酯、水杨羟肟酸和双硫仑的强烈抑制。基于这些结果,提出了眼虫线粒体呼吸链的模型,其中包括一种抗抗霉素的喹啉-细胞色素c氧化还原酶,以及一种抗抗霉素和氰化物的喹啉氧化酶。

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