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硫胺素2-噻唑酮和硫胺素2-硫代噻唑酮二磷酸对大肠杆菌丙酮酸脱氢酶复合体E1亚基及其酪氨酸177变体的抑制作用。可逆紧密结合抑制的证据。

Inhibition of the Escherichia coli pyruvate dehydrogenase complex E1 subunit and its tyrosine 177 variants by thiamin 2-thiazolone and thiamin 2-thiothiazolone diphosphates. Evidence for reversible tight-binding inhibition.

作者信息

Nemeria N, Yan Y, Zhang Z, Brown A M, Arjunan P, Furey W, Guest J R, Jordan F

机构信息

Department of Chemistry and the Program in Cellular and Molecular Biodynamics, Rutgers University, Newark, New Jersey 07102, USA.

出版信息

J Biol Chem. 2001 Dec 7;276(49):45969-78. doi: 10.1074/jbc.M104116200. Epub 2001 Oct 2.

Abstract

Variants of the pyruvate dehydrogenase subunit (E1; EC ) of the Escherichia coli pyruvate dehydrogenase multienzyme complex with Y177A and Y177F substitutions were created. Both variants displayed pyruvate dehydrogenase multienzyme complex activity at levels of 11% (Y177A E1) and 7% (Y177F E1) of the parental enzyme. The K(m) values for thiamin diphosphate (ThDP) were 1.58 microm (parental E1) and 6.65 microm (Y177A E1), whereas the Y177F E1 variant was not saturated at 200 microm. According to fluorescence studies, binding of ThDP was unaffected by the Tyr(177) substitutions. The ThDP analogs thiamin 2-thiazolone diphosphate (ThTDP) and thiamin 2-thiothiazolone diphosphate (ThTTDP) behaved as tight-binding inhibitors of parental E1 (K(i) = 0.003 microm for ThTDP and K(i) = 0.064 microm for ThTTDP) and the Y177A and Y177F variants. This analysis revealed that ThTDP and ThTTDP bound to parental E1 via a two-step mechanism, but that ThTDP bound to the Y177A variant via a one-step mechanism. Binding of ThTDP was affected and that of ThTTDP was unaffected by substitutions at Tyr(177). Addition of ThDP or ThTDP to parental E1 resulted in similar CD spectral changes in the near-UV region. In contrast, binding of ThTTDP to either parental E1 or the Y177A and Y177F variants was accompanied by the appearance of a positive band at 330 nm, indicating that ThTTDP was bound in a chiral environment. In combination with x-ray structural evidence on the location of Tyr(177), the kinetic and spectroscopic data suggest that Tyr(177) has a role in stabilization of some transition state(s) in the reaction pathway, starting with the free enzyme and culminating with the first irreversible step (decarboxylation), as well as in reductive acetylation of the dihydrolipoamide acetyltransferase component.

摘要

构建了大肠杆菌丙酮酸脱氢酶多酶复合物中丙酮酸脱氢酶亚基(E1;EC )的Y177A和Y177F取代变体。两种变体的丙酮酸脱氢酶多酶复合物活性分别为亲本酶活性的11%(Y177A E1)和7%(Y177F E1)。硫胺二磷酸(ThDP)的K(m)值分别为1.58微摩尔(亲本E1)和6.65微摩尔(Y177A E1),而Y177F E1变体在200微摩尔时未达到饱和。根据荧光研究,ThDP的结合不受Tyr(177)取代的影响。硫胺二噻唑啉二磷酸(ThTDP)和硫胺二硫噻唑啉二磷酸(ThTTDP)这两种ThDP类似物对亲本E1(ThTDP的K(i)=0.003微摩尔,ThTTDP的K(i)=0.064微摩尔)以及Y177A和Y177F变体表现为紧密结合抑制剂。该分析表明,ThTDP和ThTTDP通过两步机制与亲本E1结合,但ThTDP通过一步机制与Y177A变体结合。Tyr(177)的取代影响ThTDP的结合而不影响ThTTDP的结合。向亲本E1中添加ThDP或ThTDP会导致近紫外区域类似的圆二色光谱变化。相反,ThTTDP与亲本E1或Y177A和Y177F变体的结合伴随着在330 nm处出现一个正峰,表明ThTTDP是在手性环境中结合的。结合关于Tyr(177)位置的X射线结构证据,动力学和光谱数据表明,Tyr(177)在反应途径中某些过渡态的稳定中起作用,从游离酶开始到第一个不可逆步骤(脱羧)结束,以及在二氢硫辛酰胺乙酰转移酶组分的还原乙酰化中起作用。

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