Lockridge O, Blong R M, Masson P, Froment M T, Millard C B, Broomfield C A
Eppley Institute, University of Nebraska Medical Center, Omaha 68198-6805, USA.
Biochemistry. 1997 Jan 28;36(4):786-95. doi: 10.1021/bi961412g.
The G117H mutant of human butyrylcholinesterase (EC 3.1.1.8) was expressed in Chinese hamster ovary cells. Substitution of Gly 117 with His to make the G117H mutant endowed butyrylcholinesterase with the ability to catalyze the hydrolysis of organophosphate esters. G117H was still able to hydrolyze butyrylthiocholine, benzoylcholine, and o-nitrophenyl butyrate, but in addition it had acquired the ability to hydrolyze the antiglaucoma drug echothiophate and the pesticide paraoxon. Wild-type butyrylcholinesterase was irreversibly inhibited by echothiophate and paraoxon, but G117H regained 100% activity within 2-3 min following reaction with these compounds. On a polyacrylamide gel, the same bands that stained for activity with butyrylthiocholine also stained for activity with echothiophate. G117H is the only enzyme known that hydrolyzes echothiophate. Diethoxyphosphorylated G117H aged with a half-time of 5.5 h, a rate 600 times slower than the rate of hydrolysis. Echothiophate and paraoxon were hydrolyzed with the same kcat of 0.75 min-1. This calculates to a rate acceleration of 100,000-fold for hydrolysis of echothiophate and paraoxon by the G117H mutant compared to the nonenzymatic rate.
人丁酰胆碱酯酶(EC 3.1.1.8)的G117H突变体在中国仓鼠卵巢细胞中表达。将第117位的甘氨酸替换为组氨酸形成G117H突变体,赋予了丁酰胆碱酯酶催化有机磷酸酯水解的能力。G117H仍然能够水解硫代丁酰胆碱、苯甲酰胆碱和邻硝基苯丁酸,但此外它还获得了水解抗青光眼药物依可碘酯和杀虫剂对氧磷的能力。野生型丁酰胆碱酯酶会被依可碘酯和对氧磷不可逆地抑制,但G117H在与这些化合物反应后的2 - 3分钟内可恢复100%的活性。在聚丙烯酰胺凝胶上,用硫代丁酰胆碱染色显示活性的条带,用依可碘酯染色也显示活性。G117H是已知唯一能水解依可碘酯的酶。二乙氧基磷酸化的G117H老化半衰期为5.5小时,其速率比水解速率慢600倍。依可碘酯和对氧磷的水解催化常数(kcat)均为0.75 min⁻¹。这计算得出G117H突变体水解依可碘酯和对氧磷的速率比非酶促速率加快了100,000倍。