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磷脂对曼陀罗蚕线粒体可逆、能量偶联转氢酶的依赖性。

Phospholipid dependence of the reversible, energy-linked, mitochondrial transhydrogenase in Manduca sexta.

机构信息

Department of Biology, Houghton College, Paine Center for Science, NY 14744, USA.

出版信息

J Membr Biol. 2011 Jul;242(2):89-94. doi: 10.1007/s00232-011-9379-1. Epub 2011 Jul 6.

Abstract

Midgut mitochondria from fifth larval instar Manduca sexta exhibit a membrane-associated transhydrogenase that catalyzes hydride ion transfer between NADP(H) and NAD(H). The NADPH-forming transhydrogenations occur as nonenergy- and energy-linked activities. The energy-linked activities couple with electron transport-dependent utilization of NADH/succinate, or with Mg(2+)-dependent ATPase. These energy-linked transhydrogenations have been shown to be physiologically and developmentally significant with respect to insect larval/pupal maturation. In the present study, isolated mitochondrial membranes were lyophilized and subjected to organic solvent or phospholipase treatments. Acetone extraction and addition of Phospholipase A(2) proved to be effective inhibitors of the insect transhydrogenase. Liberation of phospholipids was reflected by measured phosphorous release. Addition of phospholipids to organic solvent- and phospholipase-treated membranes was without effect. Employing a partially lipid-depleted preparation, phosphatidylcholine, phosphatidylethanolamine and phosphatidylserine were reintroduced and transhydrogenase activity assessed. Of the phospholipids tested, only phosphatidylcholine significantly stimulated transhydrogenase activity. The results of this study suggest a phospholipid dependence of the M. sexta mitochondrial transhydrogenase.

摘要

中肠线粒体从第五幼虫龄期 Manduca sexta 表现出一种膜相关的转氢酶,它催化 NADP(H) 和 NAD(H) 之间的氢阴离子转移。NADPH 形成的转氢作用发生作为非能量和能量连接的活性。能量连接的活性与电子传递依赖性的 NADH/琥珀酸利用,或与 Mg(2+)-依赖性 ATP 酶偶联。这些能量连接的转氢作用已经被证明在昆虫幼虫/蛹成熟方面具有生理和发育意义。在本研究中,分离的线粒体膜经冷冻干燥并进行有机溶剂或磷脂酶处理。丙酮提取和添加磷脂酶 A(2)被证明是昆虫转氢酶的有效抑制剂。通过测量磷释放来反映磷脂的释放。向有机溶剂和磷脂酶处理的膜中添加磷脂没有效果。采用部分脂质耗尽的制剂,重新引入磷脂酰胆碱、磷脂酰乙醇胺和磷脂酰丝氨酸,并评估转氢酶活性。在所测试的磷脂中,只有磷脂酰胆碱显著刺激转氢酶活性。本研究的结果表明 M. sexta 线粒体转氢酶对磷脂有依赖性。

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