首页> 外文OA文献 >Mixed anhydrides of nucleotides and mesitylenecarboxylic acid as new specific inhibitors of mitochondrial adenosien triphosphatase.
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Mixed anhydrides of nucleotides and mesitylenecarboxylic acid as new specific inhibitors of mitochondrial adenosien triphosphatase.

机译:核苷酸和均三甲苯甲酸的混合酸酐作为线粒体腺苷三磷酸酶的新特异性抑制剂。

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摘要

Mixed anhydrides of nucleoside triphosphates and mesitylenecarboxylic acid inhibit soluble mitochondrial ATPase (adenosine triphosphatase), but do not inhibit ATPase of submitochondrial particles. Inhibition of soluble mitochondrial ATPase by the mixed anhydride of epsilon-ATP and mesitylenecarboxylic acid is followed by the covalent binding of one nucleotide residue to a molecule of the protein. It is suggested that this covalent binding occurs in the catalytic site of the mitochondrial ATPase. The mixed anhydride of ADP and mesitylenecarboxylic acid inhibits the ATPase activity of submitochondrial particles and has no effect on the activity of soluble mitochondrial ATPase. After separation of the submitochondrial particles from the mixed anhydride of ADP and mesitylenecarboxylic acid, their ATPase activity is restored to its original value (half-time of reactivation 3--4 min). Incubation of submitochondrial particles or soluble mitochondrial ATPase with the mixed anhydride of ADP and mesitylenecarboxylic acid results in AMP formation.
机译:核苷三磷酸和均三甲苯甲酸的混合酸酐抑制可溶性线粒体ATPase(腺苷三磷酸酶),但不抑制线粒体颗粒的ATPase。 ε-ATP和均三甲苯甲酸的混合酸酐抑制可溶性线粒体ATP酶后,一个核苷酸残基与蛋白质分子共价结合。提示该共价结合发生在线粒体ATP酶的催化位点。 ADP和均三甲苯甲酸的混合酸酐抑制线粒体颗粒的ATPase活性,而对可溶性线粒体ATPase的活性没有影响。从ADP和均三甲苯甲酸的混合酸酐中分离出线粒体颗粒后,它们的ATPase活性恢复到其原始值(半活化时间3--4分钟)。将线粒体颗粒或可溶性线粒体ATP酶与ADP和均三甲苯甲酸的混合酸酐一起孵育会导致AMP的形成。

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