谷氨酰胺合成酶学研究进展。

D L Purich
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引用次数: 32

摘要

Meister提出的谷氨酰胺合成酶反应中的γ -谷氨酰胺- p中间体为理解羧基的逐步活化如何大大增加其对亲核攻击和酰胺键合成的易感性奠定了基础。本综述涵盖的主题包括:谷氨酰胺酶合成的发现;谷氨酰胺合成酶在确定三磷酸腺苷酶热力学中的作用;合成酶反应的早期同位素示踪研究-谷氨酰-磷酸的中间体;蛋氨酸对亚砜亚胺的抑制作用机理酶活性位点的立体化学作图;酶反应循环中间体的检测;-谷氨酰- p的硼氢化物俘获;谷氨酰胺合成酶催化的位置同位素交换细菌酶的调控;并简要介绍细菌谷氨酰胺合成酶的原子结构知识如何澄清配体结合相互作用。结束语还讨论了如何通过扩展羧基活化酶的催化多功能性来解决所谓的“蛋白质连接酶问题”。
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Advances in the enzymology of glutamine synthesis.

Meister's proposal of a gamma-glutamyl-P intermediate in the glutamine synthetase reaction set the scene for understanding how the stepwise activation of the carboxyl group greatly increased its susceptibility toward nucleophilic attack and amide bond synthesis. Topics covered in this review include: the discovery of the enzymatic synthesis of glutamine; the role of glutamine synthetase in defining the thermodynamics of ATPases; early isotopic tracer studies of the synthetase reaction; the proposed intermediacy of gamma-glutamyl-phosphate; the mechanism of methionine sulfoximine inhibition; stereochemical mapping of the enzyme's active site; detection of enzyme reaction cycle intermediates; borohydride trapping of gamma-glutamyl-P; positional isotope exchanges catalyzed by glutamine synthetase; regulation of bacterial enzyme; and a brief account of how knowledge of the atomic structure of bacterial glutamine synthetase has clarified ligand binding interactions. Concluding remarks also address how the so-called "Protein Ligase Problem" may be solved by extending the catalytic versatility of carboxyl-group activating enzymes.

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