Langel U, Järv J
Biochim Biophys Acta. 1978 Oct 12;526(2):450-6. doi: 10.1016/0005-2744(78)90136-5.
The non-covalent enzyme . inhibitor complex dissociation constants and the enzyme phosphorylation rate constants were measured as functions of pH in butyrylcholinesterase (actylcholine acylhydrolase, EC 3.1.1.8) reaction with organophosphorus inhibitors (C2H5O)2P(O)SX, where X = (CH2)3SC2H5 and (CH2)6S+(CH3)C2H5. Two ionizing groups, a basic and an acidic one, were revealed in the overall reaction of the enzyme inhibition within the pH range between 5 and 10.5. In the enzyme phosphorylation step only the acidic group was found, while the basic group appeared in the non-covalent binding step of both the ionic and non-ionic compounds. The results strongly imply the participation of the basic functional group in the conformation transition which affects the ability of butyrylcholinesterase to bind hydrophobic reagents in the acidic pH region.
在丁酰胆碱酯酶(乙酰胆碱酰基水解酶,EC 3.1.1.8)与有机磷抑制剂(C2H5O)2P(O)SX的反应中,其中X =(CH2)3SC2H5和(CH2)6S +(CH3)C2H5,测定了非共价酶-抑制剂复合物的解离常数和酶磷酸化速率常数与pH的函数关系。在pH值为5至10.5的范围内,酶抑制的整个反应中显示出两个电离基团,一个碱性基团和一个酸性基团。在酶磷酸化步骤中仅发现酸性基团,而碱性基团出现在离子和非离子化合物的非共价结合步骤中。结果强烈表明碱性官能团参与了构象转变,这影响了丁酰胆碱酯酶在酸性pH区域结合疏水性试剂的能力。