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鉴定O-乙酰丝氨酸巯基酶上的变构阴离子结合位点:结合氯离子的酶的结构

Identification of an allosteric anion-binding site on O-acetylserine sulfhydrylase: structure of the enzyme with chloride bound.

作者信息

Burkhard P, Tai C H, Jansonius J N, Cook P F

机构信息

M.E. Müller Institute for Structural Biology.

出版信息

J Mol Biol. 2000 Oct 20;303(2):279-86. doi: 10.1006/jmbi.2000.4109.

Abstract

A new crystal structure of O-acetylserine sulfhydrylase (OASS) has been solved with chloride bound at an allosteric site and sulfate bound at the active site. The bound anions result in a new "inhibited" conformation, that differs from the "open" native or "closed" external aldimine conformations. The allosteric site is located at the OASS dimer interface. The new inhibited structure involves a change in the position of the "moveable domain" (residues 87-131) to a location that differs from that in the open or closed forms. Formation of the external aldimine with substrate is stabilized by interaction of the alpha-carboxyl group of the substrate with a substrate-binding loop that is part of the moveable domain. The inhibited conformation prevents the substrate-binding loop from interacting with the alpha-carboxyl group, and hinders formation of the external Schiff base and thus subsequent chemistry. Chloride may be an analog of sulfide, the physiological inhibitor. Finally, these results suggest that OASS represents a new class of PLP-dependent enzymes that is regulated by small anions.

摘要

已解析出O-乙酰丝氨酸巯基酶(OASS)的一种新晶体结构,其中氯离子结合在变构位点,硫酸根离子结合在活性位点。结合的阴离子导致一种新的“抑制”构象,该构象不同于“开放”的天然构象或“封闭”的外部醛亚胺构象。变构位点位于OASS二聚体界面。新的抑制结构涉及“可移动结构域”(第87 - 131位残基)位置的改变,其位置不同于开放或封闭形式中的位置。底物与外部醛亚胺的形成通过底物的α-羧基与作为可移动结构域一部分的底物结合环的相互作用而得以稳定。抑制构象阻止底物结合环与α-羧基相互作用,并阻碍外部席夫碱的形成以及随后的化学反应。氯离子可能是生理抑制剂硫化物的类似物。最后,这些结果表明OASS代表了一类由小阴离子调节的新型磷酸吡哆醛依赖性酶。

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