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首页> 外文期刊>The Biochemical Journal >Modification of the mitochondrial F-1-ATPase epsilon subunit, enhancement of the ATPase activity of the IF1-F-1 complex and IF1-binding dependence of the conformation of the epsilon subunit
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Modification of the mitochondrial F-1-ATPase epsilon subunit, enhancement of the ATPase activity of the IF1-F-1 complex and IF1-binding dependence of the conformation of the epsilon subunit

机译:线粒体F-1-ATPaseε亚基的修饰,IF1-F-1复合物的ATPase活性增强以及ε1亚基构象的IF1结合依赖性

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Treatment of bovine heart submitochondrial particles with a low concentration of 2-hydroxy-5-nitrobenzyl bromide (HNB), a selective reagent for the Trp residue of the epsilon subunit [Baracca, Barogi, Lenaz and Solaini (1993) Int. J. Biochem. 25, 1269-1275], enhances the ATP hydrolytic activity of the particles exclusively when the natural inhibitor protein IF1 is present. Similarly, isolated F-1 [the catalytic sector of the mitochondrial H+-ATPase complex (ATP synthase)] treated with the reagent has the ATPase activity enhanced exclusively if IF1 is bound to it. These experiments suggest that the modification of the epsilon subunit decreases the inhibitory activity of IF1, eliciting the search for a relationship between the epsilon subunit and the inhibitory protein. Certainly, a reverse relationship exists because HNB binds covalently to the isolated F-1 exclusively when the inhibitory protein is present. This finding is consistent with the existence of the a subunit in different conformational states depending on whether IF1 is bound to F-1 or not. Support for this assertion is obtained by measurements of the intrinsic phosphorescence decay rate of F-1, a probe of the Trp epsilon subunit conformation in situ [Solaini, Baracca, Parenti-Castelli and Strambini (1993) Eur. J. Biochem. 214, 729-734]. A significant difference in phosphorescence decay rate is detected when IF1 is added to preparations of F-1 previously devoid of the inhibitory protein. These studies indicate that IF1 and the a subunit of the mitochondrial F-1-ATPase complex are related, suggesting a possible role of the a subunit in the mechanism of regulation of the mitochondrial ATP synthase.
机译:用低浓度的2-羟基-5-硝基苄基溴(HNB)处理牛心脏线粒体颗粒,HNB是ε亚基Trp残基的选择性试剂[Baracca,Barogi,Lenaz和Solaini(1993)Int。 J.生物化学。 25,1269-1275],仅在存在天然抑制剂蛋白IF1时才增强颗粒的ATP水解活性。同样,用该试剂处理的分离的F-1 [线粒体H + -ATPase复合物的催化部分(ATP合酶)]具有IFase结合的ATPase活性。这些实验表明,ε亚基的修饰降低了IF1的抑制活性,引发了对ε亚基和抑制蛋白之间关系的探索。当然,存在反向关系,因为当存在抑制蛋白时,HNB仅与分离的F-1共价结合。该发现与取决于IF1是否与F-1结合的不同构象状态的亚基的存在是一致的。通过测量F-1的固有磷光衰减率来获得这一结论,F-1是Trpε亚基构象的原位探针[Solaini,Baracca,Parenti-Castelli and Strambini(1993)Eur。 J.生物化学。 214,729-734]。当将IF1添加到以前没有抑制蛋白的F-1制剂中时,可检测到磷光衰减速率的显着差异。这些研究表明IF1和线粒体F-1-ATPase复合物的一个亚基是相关的,这表明该亚基在调节线粒体ATP合酶的机制中可能发挥作用。

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