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大肠杆菌2-氧代酸脱氢酶多酶复合物转酰酶成分的选择性失活

Selective inactivation of the transacylase components of the 2-oxo acid dehydrogenase multienzyme complexes of Escherichia coli.

作者信息

Brown J P, Perham R N

出版信息

Biochem J. 1976 May 1;155(2):419-27. doi: 10.1042/bj1550419.

Abstract
  1. The reaction of the pyruvate dehydrogenase multienzyme complex of Escherichia coli with maleimides was examined. In the absence of substrates, the complex showed little or no reaction with N-ethylmaleimide. However, in the presence of pyruvate and N-ethylmaleimide, inhibition of the pyruvate dehydrogenase complex was rapid. Modification of the enzyme was restricted to the transacetylase component and the inactivation was proportional to the extent of modification. The lipoamide dehydrogenase activity of the complex was unaffected by the treatment. The simplest explanation is that the lipoyl groups on the transacetylase are reductively acetylated by following the initial stages of the normal catalytic cycle, but are thereby made susceptible to modification. Attempts to characterize the reaction product strongly support this conclusion. 2. Similarly, in the presence of N-ethylmaleimide and NADH, much of the pyruvate dehydrogenase activity was lost within seconds, whereas the lipoamide dehydrogenase activity of the complex disappeared more slowly: the initial site of the reaction with the complex was found to be in the lipoyl transacetylase component. The simplest interpretation of these experiments is that NADH reduces the covalently bound lipoyl groups on the transacetylase by means of the associated lipoamide dehydrogenase component, thereby rendering them susceptible to modification. However, the dependence of the rate and extent of inactivation on NADH concentration was complex and it proved impossible to inhibit the pyruvate dehydrogenase activity completely without unacceptable modification of the other component enzymes. 3. The catalytic reduction of 5,5'-dithiobis-(2-nitrobenzoic acid) by NADH in the presence of the pyruvate dehydrogenase complex was demonstrated. A new mechanism for this reaction is proposed in which NADH causes reduction of the enzyme-bound lipoic acid by means of the associated lipoamide dehydrogenase component and the dihydrolipoamide is then oxidized back to the disulphide form by reaction with 5,5'-dithiobis-(2-nitrobenzoic acid). 4. A maleimide with a relatively bulky N-substituent, N-(4-diemthylamino-3,5-dinitrophenyl)maleimide, was an effective replacement for N-ethylmaleimide in these reactions with the pyruvate dehydrogenase complex. 5. The 2-oxoglutarate dehydrogenase complex of E. coli behaved very similarly to the pyruvate dehydrogenase complex, in accord with the generally accepted mechanisms of the two enzymes. 6. The treatment of the 2-oxo acid dehydrogenase complexes with maleimides in the presence of the appropriate 2-oxo acid substrate provides a simple method for selectively inhibiting the transacylase components and for introducing reporter groups on to the lipoyl groups covalently bound to those components.
摘要
  1. 对大肠杆菌丙酮酸脱氢酶多酶复合体与马来酰亚胺的反应进行了研究。在没有底物的情况下,该复合体与N - 乙基马来酰亚胺几乎没有反应或完全不反应。然而,在丙酮酸和N - 乙基马来酰亚胺存在时,丙酮酸脱氢酶复合体的抑制作用迅速。酶的修饰仅限于转乙酰酶组分,失活程度与修饰程度成正比。该复合体的硫辛酰胺脱氢酶活性不受该处理的影响。最简单的解释是,转乙酰酶上的硫辛酰基在正常催化循环的初始阶段被还原乙酰化,但因此变得易于修饰。对反应产物进行表征的尝试有力地支持了这一结论。2. 同样,在N - 乙基马来酰亚胺和NADH存在时,大部分丙酮酸脱氢酶活性在数秒内丧失,而该复合体的硫辛酰胺脱氢酶活性消失得更慢:发现与该复合体反应的初始位点位于硫辛酰转乙酰酶组分中。对这些实验最简单的解释是,NADH通过相关的硫辛酰胺脱氢酶组分还原转乙酰酶上共价结合的硫辛酰基,从而使其易于修饰。然而,失活的速率和程度对NADH浓度的依赖性很复杂,事实证明,在不使其他组分酶发生不可接受的修饰的情况下,不可能完全抑制丙酮酸脱氢酶活性。3. 证明了在丙酮酸脱氢酶复合体存在下,NADH对5,5'-二硫代双(2 - 硝基苯甲酸)的催化还原作用。提出了该反应的一种新机制,其中NADH通过相关的硫辛酰胺脱氢酶组分使酶结合的硫辛酸还原,然后二氢硫辛酰胺通过与5,5'-二硫代双(2 - 硝基苯甲酸)反应被氧化回二硫化物形式。4. 一种具有相对庞大N - 取代基的马来酰亚胺,N - (4 - 二甲基氨基 - 3,5 - 二硝基苯基)马来酰亚胺,在与丙酮酸脱氢酶复合体的这些反应中是N - 乙基马来酰亚胺的有效替代物。5. 大肠杆菌的2 - 氧代戊二酸脱氢酶复合体的行为与丙酮酸脱氢酶复合体非常相似,这与这两种酶的普遍接受的机制一致。6. 在适当的2 - 氧代酸底物存在下,用马来酰亚胺处理2 - 氧代酸脱氢酶复合体提供了一种简单的方法,用于选择性抑制转酰酶组分,并将报告基团引入与这些组分共价结合的硫辛酰基上。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6541/1172848/5a307515e96c/biochemj00536-0229-a.jpg

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