de Carvalho Luiz Pedro S, Blanchard John S
Department of Biochemistry, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, NY 10461, USA.
Arch Biochem Biophys. 2006 Jul 15;451(2):141-8. doi: 10.1016/j.abb.2006.03.030. Epub 2006 Apr 19.
Mycobacterium tuberculosis alpha-isopropylmalate synthase (MtIPMS) is a member of the family of enzymes that catalyze a Claisen-type condensation. In this work we characterized the monovalent and divalent specificity of MtIPMS using steady-state kinetics. The monovalent cation dependence of the kinetic parameters of substrates and divalent metals indicates that K+ is the likely physiological activator. K+ acts most likely as an allosteric activator, and exerts part of its effect through the catalytic divalent metal. The divalent metal specificity of MtIPMS is broad, and Mg2+ and Mn2+ are the metals that cause the highest activation. Interestingly, Zn2+, first assigned as the catalytic metal, inhibits the enzyme with submicromolar affinity. The features of monovalent cation and divalent metal activation, as well as the inhibition by Zn2+ and Cd2+, are discussed in light of the kinetic and structural information available for MtIPMS and other relevant enzymes.
结核分枝杆菌α-异丙基苹果酸合酶(MtIPMS)是催化克莱森型缩合反应的酶家族成员。在这项工作中,我们使用稳态动力学表征了MtIPMS的单价和二价特异性。底物动力学参数对单价阳离子的依赖性以及二价金属表明K⁺可能是生理激活剂。K⁺很可能作为变构激活剂起作用,并通过催化二价金属发挥其部分作用。MtIPMS的二价金属特异性很广,Mg²⁺和Mn²⁺是导致最高激活的金属。有趣的是,最初被指定为催化金属的Zn²⁺以亚微摩尔亲和力抑制该酶。根据可获得的MtIPMS和其他相关的动力学和结构信息,讨论了单价阳离子和二价金属激活的特征以及Zn²⁺和Cd²⁺的抑制作用。