Crystal Structure of Human Butyrylcholinesterase and of Its Complexes with Substrate and Products 论文

2003Journal of Biological Chemistry引用 823顶会
Cholinesterase and Neurodegenerative DiseasesComputational Drug Discovery MethodsPesticide Exposure and Toxicity

详细信息

发表期刊/会议
Journal of Biological Chemistry
发表日期
2003-10-01
发表年份
2003

关键词

Cholinesterase and Neurodegenerative DiseasesComputational Drug Discovery MethodsPesticide Exposure and Toxicity

摘要

Cholinesterases are among the most efficient enzymes known. They are divided into two groups: acetylcholinesterase, involved in the hydrolysis of the neurotransmitter acetylcholine, and butyrylcholinesterase of unknown function. Several crystal structures of the former have shown that the active site is located at the bottom of a deep and narrow gorge, raising the question of how substrate and products enter and leave. Human butyrylcholinesterase (BChE) has attracted attention because it can hydrolyze toxic esters such as cocaine or scavenge organophosphorus pesticides and nerve agents. Here we report the crystal structures of several recombinant truncated human BChE complexes and conjugates and provide a description for mechanistically relevant non-productive substrate and product binding. As expected, the structure of BChE is similar to a previously published theoretical model of this enzyme and to the structure of Torpedo acetylcholinesterase. The main difference between the experimentally determined BChE structure and its model is found at the acyl binding pocket that is significantly bigger than expected. An electron density peak close to the catalytic Ser(198) has been modeled as bound butyrate.