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氧敏感型丙酮酸脱氢酶在纤细裸藻线粒体脂肪酸合成中的生理作用。

The physiological role of oxygen-sensitive pyruvate dehydrogenase in mitochondrial fatty acid synthesis in Euglena gracilis.

作者信息

Inui H, Miyatake K, Nakano Y, Kitaoka S

出版信息

Arch Biochem Biophys. 1985 Mar;237(2):423-9. doi: 10.1016/0003-9861(85)90295-4.

Abstract

In Euglena gracilis a malonyl-CoA-independent fatty acid-synthetic system, in which fatty acids are synthesized directly from acetyl-CoA as both primer and C2 donor, occurs in mitochondria, and the system contributes to the wax ester fermentation. The activity of fatty acid synthesis in the mitochondrial system was enhanced about six times when an artificial acetyl-CoA-regenerating system was present, indicating that the fatty acid-synthetic activity is controlled by the ratio of acetyl-CoA against CoA. When fatty acids were synthesized using pyruvate instead of acetyl-CoA as substrate, a high activity, about 30 times higher than that from acetyl-CoA, was found under anaerobic conditions (below 10(-5) M oxygen), while in aerobiosis fatty acids were not synthesized at all. CoA, NADH, and NADP+ were required as cofactors for fatty acid synthesis from pyruvate. It was indicated that high activity of fatty acid synthesis from pyruvate due to the high ratio of acetyl-CoA against CoA was maintained by the action of the oxygen-sensitive pyruvate dehydrogenase found in Euglena mitochondria. When [2-14C]pyruvate was fed into intact mitochondria under anaerobic conditions, radioactive fatty acids were formed in the presence of malate, which provided reducing power for the matrix.

摘要

在纤细裸藻中,一种不依赖丙二酰辅酶A的脂肪酸合成系统存在于线粒体中,在该系统中脂肪酸直接由乙酰辅酶A作为起始物和C2供体合成,并且该系统有助于蜡酯发酵。当存在人工乙酰辅酶A再生系统时,线粒体系统中脂肪酸合成的活性提高了约6倍,这表明脂肪酸合成活性受乙酰辅酶A与辅酶A的比例控制。当使用丙酮酸代替乙酰辅酶A作为底物合成脂肪酸时,在厌氧条件下(氧气浓度低于10(-5) M)发现了较高的活性,比以乙酰辅酶A为底物时高约30倍,而在需氧条件下则完全不合成脂肪酸。从丙酮酸合成脂肪酸需要辅酶A、NADH和NADP+作为辅助因子。结果表明,纤细裸藻线粒体中对氧敏感的丙酮酸脱氢酶的作用维持了由于乙酰辅酶A与辅酶A的高比例而导致的从丙酮酸合成脂肪酸的高活性。当在厌氧条件下将[2-14C]丙酮酸加入完整的线粒体中时,在苹果酸存在的情况下会形成放射性脂肪酸,苹果酸为线粒体基质提供还原力。

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