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色氨酸合酶:一种具有分子内通道的多酶复合体。

Tryptophan synthase: a multienzyme complex with an intramolecular tunnel.

作者信息

Miles E W

机构信息

Section on Enzyme Structure and Function, Laboratory of Biochemistry and Genetics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda Maryland 20892-0830, USA.

出版信息

Chem Rec. 2001;1(2):140-51. doi: 10.1002/tcr.4.

Abstract

Tryptophan synthase is a classic enzyme that channels a metabolic intermediate, indole. The crystal structure of the tryptophan synthase alpha2beta2 complex from Salmonella typhimurium revealed for the first time the architecture of a multienzyme complex and the presence of an intramolecular tunnel. This remarkable hydrophobic tunnel provides a likely passageway for indole from the active site of the alpha subunit, where it is produced, to the active site of the beta subunit, where it reacts with L-serine to form L-tryptophan in a pyridoxal phosphate-dependent reaction. Rapid kinetic studies of the wild type enzyme and of channel-impaired mutant enzymes provide strong evidence for the proposed channeling mechanism. Structures of a series of enzyme-substrate intermediates at the alpha and beta active sites are elucidating enzyme mechanisms and dynamics. These structural results are providing a fascinating picture of loops opening and closing, of domain movements, and of conformational changes in the indole tunnel. Solution studies provide further evidence for ligand-induced conformational changes that send signals between the alpha and beta subunits. The combined results show that the switching of the enzyme between open and closed conformations couples the catalytic reactions at the alpha and beta active sites and prevents the escape of indole.

摘要

色氨酸合酶是一种经典的酶,它引导代谢中间体吲哚。鼠伤寒沙门氏菌色氨酸合酶α2β2复合物的晶体结构首次揭示了多酶复合物的结构以及分子内隧道的存在。这条引人注目的疏水隧道为吲哚从其产生的α亚基活性位点到β亚基活性位点提供了一条可能的通道,在β亚基活性位点,吲哚与L-丝氨酸在磷酸吡哆醛依赖性反应中反应形成L-色氨酸。对野生型酶和通道受损突变酶的快速动力学研究为所提出的通道机制提供了有力证据。α和β活性位点一系列酶-底物中间体的结构正在阐明酶的机制和动力学。这些结构结果呈现出一幅引人入胜的画面:环打开和关闭、结构域移动以及吲哚隧道中的构象变化。溶液研究为配体诱导的构象变化提供了进一步的证据,这种变化在α和β亚基之间传递信号。综合结果表明,酶在开放和关闭构象之间的转换将α和β活性位点的催化反应耦合在一起,并防止吲哚逸出。

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