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生物素生物合成的多功能大肠杆菌阻遏物不同配体结合构象状态的证据。

Evidence for distinct ligand-bound conformational states of the multifunctional Escherichia coli repressor of biotin biosynthesis.

作者信息

Xu Y, Nenortas E, Beckett D

机构信息

Department of Chemistry and Biochemistry, University of Maryland Baltimore County 21228, USA.

出版信息

Biochemistry. 1995 Dec 26;34(51):16624-31. doi: 10.1021/bi00051a010.

Abstract

The Escherichia coli repressor of biotin biosynthesis (BirA) is a unique transcriptional repressor which catalyzes synthesis of its own corepressor and catalyzes attachment of a cofactor to an essential metabolic enzyme. BirA both catalyzes synthesis of biotinyl-5'-AMP from the substrates ATP and biotin and transfer of the biotin moiety from the adenylate to a lysine residue of a subunit of the acetyl-CoA carboxylase. BirA-bio-5'-AMP, moreover, binds sequence specifically to the biotin operator to repress transcription of the biotin biosynthetic genes. Using a combination of kinetic measurements of binding of the two ligands, biotin and bio-5'-AMP, to BirA as well as proteolytic digestion experiments, we have found evidence for at least three discrete conformational states of BirA. Results of stopped-flow fluorescence measurements of association of both ligands with BirA indicate that the process involves initial formation of a collision complex followed by a slow conformational change. The kinetics of the conformational change are distinct for the two ligands and are the basis for the difference in the thermodynamic stabilities of the two protein-ligand complexes. Different rates of proteolytic digestion of apoBirA and complexes of BirA with the two ligands were also observed. Results of the combined approaches indicate that apoBirA, and the BirA-bio-5'-AMP and BirA-biotin complexes are conformationally distinct.

摘要

大肠杆菌生物素生物合成阻遏蛋白(BirA)是一种独特的转录阻遏蛋白,它催化自身辅阻遏物的合成,并催化辅因子与一种必需代谢酶的连接。BirA既催化从底物ATP和生物素合成生物素-5'-AMP,又催化生物素部分从腺苷酸转移到乙酰辅酶A羧化酶一个亚基的赖氨酸残基上。此外,BirA-生物素-5'-AMP特异性结合生物素操纵基因序列,以抑制生物素生物合成基因的转录。通过结合生物素和生物素-5'-AMP这两种配体与BirA结合的动力学测量以及蛋白水解消化实验,我们发现了BirA至少存在三种不同构象状态的证据。两种配体与BirA结合的停流荧光测量结果表明,该过程涉及碰撞复合物的初始形成,随后是缓慢的构象变化。两种配体的构象变化动力学不同,这是两种蛋白质-配体复合物热力学稳定性差异的基础。还观察到脱辅基BirA以及BirA与两种配体的复合物的蛋白水解消化速率不同。综合方法的结果表明,脱辅基BirA、BirA-生物素-5'-AMP复合物和BirA-生物素复合物在构象上是不同的。

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