Wang Z F, Xu Y K, Zhou H M
Department of Biological Sciences and Biotechnology, Tsinghua University, Beijing, Peoples' Republic of China.
Enzyme Protein. 1994;48(1):1-9. doi: 10.1159/000474963.
It has been previously reported that, with a fluorescence probe formed from o-phthaldehyde (OPTA) and the thiol and amino groups at or near the active site of creatine kinase, inactivation and exposure of the probe take place simultaneously and well before unfolding of the molecule as a whole. In this study, the inactivation and modification kinetics of purified rabbit muscle creatine kinase by OPTA have been compared, the former by following the substrate reaction in the presence of a previously described inactivator. The microscopic rate constants for the reaction of the inactivator with the free enzyme and with the enzyme-substrate complexes were determined. From the results obtained it appears that OPTA is noncompetitive with respect to both substrates. The inactivation kinetics is monophasic with OPTA, and neither ATP nor creatine alone affect the rate constant of inactivation of the enzyme, indicating that the irreversible inhibition of creatine kinase by OPTA is of the noncompetitive type.
先前有报道称,由邻苯二甲醛(OPTA)与肌酸激酶活性位点处或其附近的巯基和氨基形成的荧光探针,其失活和探针暴露是同时发生的,且远在整个分子展开之前。在本研究中,比较了OPTA对纯化的兔肌肉肌酸激酶的失活和修饰动力学,前者是通过在先前描述的失活剂存在下跟踪底物反应来进行的。测定了失活剂与游离酶以及酶 - 底物复合物反应的微观速率常数。从获得的结果来看,OPTA对两种底物均无竞争性。OPTA的失活动力学是单相的,单独的ATP和肌酸均不影响酶的失活速率常数,这表明OPTA对肌酸激酶的不可逆抑制属于非竞争性类型。