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Cation induced differential effect on structural and functional properties of Mycobacterium tuberculosis α-Isopropylmalate synthase

机译:阳离子诱导的差异对结核分枝杆菌α-异丙基苹果酸合酶的结构和功能特性的影响

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Background α-isopropylmalate synthase (MtαIPMS), an enzyme that catalyzes the first committed step of the leucine biosynthetic pathway of Mycobacterium tuberculosis is a potential drug target for the anti-tuberculosis drugs. Cations induce differential effect of activation and inhibition of MtαIPMS. To date no concrete mechanism for such an opposite effect of similarly charged cations on the functional activity of enzyme has been presented. Results Effect of cations on the structure and function of the MtαIPMS has been studied in detail. The studies for the first time demonstrate that different cations interact specifically at different sites in the enzyme and modulate the enzyme structure differentially. The inhibitors Zn2+ and Cd2+ ions interact directly with the catalytic domain of the enzyme and induce unfolding/denaturation of the domain. The activator K+ also interacts with the catalytic TIM barrel domain however, it does not induce any significant effect on the enzyme structure. Studies with isolated catalytic TIM barrel domain showed that it can carry out the catalytic function on its own but probably requires the non-catalytic C-terminal domain for optimum functioning. An important observation was that divalent cations induce significant interaction between the regulatory and the catalytic domain of MtαIPMS thus inducing structural cooperativity in the enzyme. This divalent cation induced structural cooperativity might result in modulation of activity of the catalytic domain by regulatory domain. Conclusion The studies for the first time demonstrate that different cations bind at different sites in the enzyme leading to their differential effects on the structure and functional activity of the enzyme.
机译:背景技术α-异丙基苹果酸合酶(MtαIPMS)是一种催化结核分枝杆菌亮氨酸生物合成途径第一步的酶,是抗结核药物的潜在药物靶标。阳离子诱导了MtαIPMS激活和抑制的不同作用。迄今为止,还没有提出具体的机理来证明类似电荷的阳离子对酶的功能活性具有相反的作用。结果已详细研究了阳离子对MtαIPMS结构和功能的影响。首次研究表明,不同的阳离子在酶的不同位点特异性相互作用,并差异地调节酶的结构。抑制剂Zn 2+ 和Cd 2+ 离子直接与酶的催化结构域相互作用,并诱导该结构域的解折叠/变性。活化剂K + 也与催化的TIM桶结构域相互作用,但是,它对酶的结构没有明显的影响。对分离的催化TIM桶结构域的研究表明,它可以单独发挥催化功能,但可能需要非催化C末端结构域才能发挥最佳功能。一个重要的观察结果是,二价阳离子在MtαIPMS的调节域和催化域之间诱导了显着的相互作用,从而诱导了酶的结构协同作用。这种二价阳离子诱导的结构协同性可能导致调节域对催化域活性的调节。结论首次研究表明,不同的阳离子在酶的不同位点结合,从而导致它们对酶的结构和功能活性的不同影响。

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