Matagne A, Ghuysen M F, Frère J M
Laboratorie d'Enzymologie, Université de Liège, Sart Tilman, Belgium.
Biochem J. 1993 Nov 1;295 ( Pt 3)(Pt 3):705-11. doi: 10.1042/bj2950705.
The interactions between three class A beta-lactamases and three beta-lactamase inactivators (clavulanic acid, sulbactam and olivanic acid MM13902) were studied. Interestingly, the interaction between the Streptomyces cacaoi beta-lactamase and clavulanate indicated little irreversible inactivation. With sulbactam, irreversible inactivation was found to occur with the three studied enzymes, but no evidence for transiently inactivated adducts was found. Irreversible inactivation of the S. albus G and S. cacaoi enzymes was particularly slow. With olivanate, irreversible inactivation was also observed with the three enzymes, but with the S. cacaoi enzyme, no hydrolysis could be detected. A tentative summary of the results found in the literature is also presented (including 6 beta-halogenopenicillanates), and the general conclusions underline the diversity of the mechanisms and the wide variations of the rate constants observed when class A beta-lactamases interact with beta-lactamase inactivators, in agreement with the behaviours of the same enzymes towards their good and poor substrates.
研究了三种A类β-内酰胺酶与三种β-内酰胺酶抑制剂(克拉维酸、舒巴坦和奥利万酸MM13902)之间的相互作用。有趣的是,可可链霉菌β-内酰胺酶与克拉维酸盐之间的相互作用显示几乎没有不可逆失活。对于舒巴坦,在所研究的三种酶中均发现有不可逆失活,但未发现瞬时失活加合物的证据。白色链霉菌G和可可链霉菌的酶的不可逆失活特别缓慢。对于奥利万酸盐,在这三种酶中也观察到不可逆失活,但对于可可链霉菌的酶,未检测到水解。还给出了文献中发现的结果的初步总结(包括6种β-卤代青霉烷酸盐),总体结论强调了机制的多样性以及A类β-内酰胺酶与β-内酰胺酶抑制剂相互作用时观察到的速率常数的广泛变化,这与相同酶对其良好和不良底物的行为一致。