University of North Florida, Department of Chemistry, Jacksonville, FL, 32224, USA.
Mayo Clinic College of Medicine, Departments of Neuroscience and Pharmacology, Jacksonville, FL, 32224, USA.
Arch Biochem Biophys. 2018 Oct 1;655:67-74. doi: 10.1016/j.abb.2018.08.006. Epub 2018 Aug 9.
Carbamates are esters of substituted carbamic acids that react with acetylcholinesterase (AChE) by initially transferring the carbamoyl group to a serine residue in the enzyme active site accompanied by loss of the carbamate leaving group followed by hydrolysis of the carbamoyl enzyme. This hydrolysis, or decarbamoylation, is relatively slow, and half-lives of carbamoylated AChEs range from 4 min to more than 30 days. Therefore, carbamates are effective AChE inhibitors that have been developed as insecticides and as therapeutic agents. We show here, in contrast to a previous report, that decarbamoylation rate constants are independent of the leaving group for a series of carbamates with the same carbamoyl group. When the alkyl substituents on the carbamoyl group increased in size from N-monomethyl- to N,N-dimethyl-, N-ethyl-N-methyl-, or N,N-diethyl-, the decarbamoylation rate constants decreased by 4-, 70-, and 800-fold, respectively. We suggest that this relationship arises as a result of active site distortion, particularly in the acyl pocket of the active site. Furthermore, solvent deuterium oxide isotope effects for decarbamoylation decreased from 2.8 for N-monomethylcarbamoyl AChE to 1.1 for N,N-diethylcarbamoyl AChE, indicating a shift in the rate-limiting step from general acid-base catalysis to a likely conformational change in the distorted active site.
氨基甲酸盐是取代氨基甲酸的酯,它通过最初将氨甲酰基转移到酶活性部位的丝氨酸残基上与乙酰胆碱酯酶(AChE)反应,同时失去氨甲酰基离去基团,然后水解氨甲酰化酶。这种水解,或脱氨甲酰化,相对较慢,氨甲酰化 AChE 的半衰期从 4 分钟到 30 天以上不等。因此,氨基甲酸盐是有效的 AChE 抑制剂,已被开发为杀虫剂和治疗剂。与之前的一份报告相反,我们在这里表明,对于具有相同氨甲酰基的一系列氨基甲酸盐,脱氨甲酰化速率常数与离去基团无关。当氨甲酰基上的烷基取代基从 N-单甲基增加到 N,N-二甲基、N-乙基-N-甲基或 N,N-二乙基时,脱氨甲酰化速率常数分别降低了 4 倍、70 倍和 800 倍。我们认为,这种关系是由于活性部位的变形引起的,特别是在活性部位的酰基口袋中。此外,脱氨甲酰化的溶剂氘氧化物同位素效应从 N-单甲基氨甲酰基 AChE 的 2.8 降低到 N,N-二乙基氨甲酰基 AChE 的 1.1,表明速率限制步骤从一般酸碱催化转移到可能在扭曲的活性部位发生构象变化。