醛缩酶A
化学
脱氧核糖
活动站点
共价键
立体化学
分辨率(逻辑)
反应中间体
酶
催化作用
生物化学
DNA
计算机科学
人工智能
有机化学
作者
A. Heine,Grace DeSantis,J.G. Luz,Michael L. Mitchell,Chi‐Huey Wong,Ian A. Wilson
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2001-10-12
卷期号:294 (5541): 369-374
被引量:279
标识
DOI:10.1126/science.1063601
摘要
In classical enzymology, intermediates and transition states in a catalytic mechanism are usually inferred from a series of biochemical experiments. Here, we derive an enzyme mechanism from true atomic-resolution x-ray structures of reaction intermediates. Two ultra-high resolution structures of wild-type and mutant d-2-deoxyribose-5-phosphate (DRP) aldolase complexes with DRP at 1.05 and 1.10 angstroms unambiguously identify the postulated covalent carbinolamine and Schiff base intermediates in the aldolase mechanism. In combination with site-directed mutagenesis and (1)H nuclear magnetic resonance, we can now propose how the heretofore elusive C-2 proton abstraction step and the overall stereochemical course are accomplished. A proton relay system appears to activate a conserved active-site water that functions as the critical mediator for proton transfer.
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