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首页> 外文期刊>Molecular pharmacology. >An improved cocaine hydrolase: the A328Y mutant of human butyrylcholinesterase is 4-fold more efficient.
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An improved cocaine hydrolase: the A328Y mutant of human butyrylcholinesterase is 4-fold more efficient.

机译:一种改进的可卡因水解酶:人丁酰胆碱酯酶的A328Y突变体效率提高了4倍。

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Butyrylcholinesterase (BChE) has a major role in cocaine detoxication. The rate at which human BChE hydrolyzes cocaine is slow, with a kcat of 3.9 min(-1) and Km of 14 microM. Our goal was to improve cocaine hydrolase activity by mutating residues near the active site. The mutant A328Y had a kcat of 10.2 min(-1) and Km of 9 microM for a 4-fold improvement in catalytic efficiency (kcat/Km). Since benzoylcholine (kcat 15,000 min(-1)) and cocaine form the same acyl-enzyme intermediate but are hydrolyzed at 4000-fold different rates, it was concluded that a step leading to formation of the acyl-enzyme intermediate was rate-limiting. BChE purified from plasma of cat, horse, and chicken was tested for cocaine hydrolase activity. Compared with human BChE, horse BChE had a 2-fold higher kcat but a lower binding affinity, cat BChE was similar to human, and chicken BChE had only 10% of the catalytic efficiency. Naturally occurring genetic variants of human BChE were tested for cocaine hydrolase activity. The J and K variants (E497V and A539T) had k(cat) and Km values similar to wild-type, but because these variants are reduced to 66 and 33% of normal levels in human blood, respectively, people with these variants may be at risk for cocaine toxicity. The atypical variant (D70G) had a 10-fold lower binding affinity for cocaine, suggesting that persons with the atypical variant of BChE may experience severe or fatal cocaine intoxication when administered a dose of cocaine that is not harmful to others.
机译:丁酰胆碱酯酶(BChE)在可卡因解毒中起主要作用。人类BChE水解可卡因的速度很慢,kcat为3.9 min(-1),Km为14 microM。我们的目标是通过突变活性位点附近的残基来提高可卡因水解酶的活性。突变体A328Y的kcat为10.2 min(-1),Km为9 microM,催化效率提高了4倍(kcat / Km)。由于苯甲酰胆碱(kcat 15,000 min(-1))和可卡因形成相同的酰基酶中间体,但以4000倍的不同速率水解,因此得出结论,导致形成酰基酶中间体的步骤是限速的。测试从猫,马和鸡的血浆中纯化的BChE的可卡因水解酶活性。与人BChE相比,马BChE的kcat高2倍,但结合亲和力较低,cat BChE与人相似,而鸡BChE的催化效率仅为10%。测试了人类BChE的天然遗传变异体的可卡因水解酶活性。 J和K变体(E497V和A539T)的k(cat)和Km值与野生型相似,但是由于这些变体分别降低到人体血液中正常水平的66%和33%,因此具有这些变体的人可能有可卡因毒性的风险。非典型变异体(D70G)对可卡因的结合亲和力降低了10倍,这表明,非典型变异BChE的人在服用对他人无害的可卡因剂量时可能会遭受严重或致命的可卡因中毒。

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