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底物和硫胺素二磷酸、镁(II)对硫胺素二磷酸依赖性2-氧代酸脱羧酶的调节——三级和四级相互作用的证据

Regulation of thiamin diphosphate-dependent 2-oxo acid decarboxylases by substrate and thiamin diphosphate.Mg(II) - evidence for tertiary and quaternary interactions.

作者信息

Jordan F, Nemeria N, Guo F, Baburina I, Gao Y, Kahyaoglu A, Li H, Wang J, Yi J, Guest J R, Furey W

机构信息

Department of Chemistry, Rutgers, the State University, Newark, NJ 07102, USA.

出版信息

Biochim Biophys Acta. 1998 Jun 29;1385(2):287-306. doi: 10.1016/s0167-4838(98)00075-2.

Abstract

The regulatory mechanism of substrate activation in yeast pyruvate decarboxylase is triggered by the interaction of pyruvic acid with C221 located on the beta domain at >20 A from the thiamin diphosphate (ThDP). To trace the putative information transfer pathway, substitutions were made at H92 on the alpha domain, across the domain divide from C221, at E91, next to H92 and hydrogen bonded to W412, the latter being intimately involved in the coenzyme binding locus. Additional substitutions were made at D28, E51, H114, H115, I415 and E477, all near the active center. The pH-dependent steady-state kinetic parameters, including the Hill coefficient, provide useful insight to this effort. In addition to C221, the residues H92, E91, E51 and H114 and H115 together appear to have a critical impact on the Hill coefficient, providing a pathway for information transfer. To study the activation by ThDP.Mg(II), variants at G231 (of the conserved GDG triplet) and at N258 and C259 (all three being part of the putative ThDP fold) of the E1 component of the Escherichia coli pyruvate dehydrogenase multienzyme complex were studied. Kinetic and spectroscopic evidence suggests that the Mg(II) ligands are very important to activation of the enzymes by cofactors.

摘要

酵母丙酮酸脱羧酶中底物激活的调节机制是由丙酮酸与位于β结构域上、距硫胺素二磷酸(ThDP)大于20 Å的C221相互作用触发的。为了追踪假定的信息传递途径,在α结构域上与C221跨结构域分隔的H92、紧邻H92并与W412形成氢键的E91(W412紧密参与辅酶结合位点)处进行了取代。还在活性中心附近的D28、E51、H114、H115、I415和E477处进行了额外的取代。包括希尔系数在内的pH依赖性稳态动力学参数为这项研究提供了有用的见解。除了C221外,H92、E91、E51以及H114和H115残基似乎共同对希尔系数有关键影响,提供了一条信息传递途径。为了研究ThDP·Mg(II)的激活作用,对大肠杆菌丙酮酸脱氢酶多酶复合物E1组分中G231(保守的GDG三联体)、N258和C259(这三个都是假定的ThDP折叠的一部分)处的变体进行了研究。动力学和光谱学证据表明,Mg(II)配体对辅因子激活酶非常重要。

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