Amorim Franco Tathyana M, Hegde Subray, Blanchard John S
Department of Biochemistry, Albert Einstein College of Medicine , 1300 Morris Park Avenue, Bronx, New York 10461, United States.
Biochemistry. 2016 Nov 15;55(45):6295-6303. doi: 10.1021/acs.biochem.6b00928. Epub 2016 Nov 2.
The biosynthetic pathway of the branched-chain amino acids is essential for Mycobacterium tuberculosis growth and survival. We report here the kinetic and chemical mechanism of the pyridoxal 5'-phosphate (PLP)-dependent branched-chain aminotransferase, IlvE, from M. tuberculosis (MtIlvE). This enzyme is responsible for the final step of the synthesis of the branched-chain amino acids isoleucine, leucine, and valine. As seen in other aminotransferases, MtIlvE displays a ping-pong kinetic mechanism. pK values were identified from the pH dependence on V as well as V/K, indicating that the phosphate ester of the PLP cofactor, and the α-amino group from l-glutamate and the active site Lys, play roles in acid-base catalysis and binding, respectively. An intrinsic primary kinetic isotope effect was identified for the α-C-H bond cleavage of l-glutamate. Large solvent kinetic isotope effect values for the ping and pong half-reactions were also identified. The absence of a quininoid intermediate in combination with the k in our multiple kinetic isotope effects under single-turnover conditions suggests a concerted type of mechanism. The deprotonation of C2 of l-glutamate and the protonation of C4' of the PLP cofactor happen synchronously in the ping half-reaction. A chemical mechanism is proposed on the basis of the results obtained here.
支链氨基酸的生物合成途径对于结核分枝杆菌的生长和存活至关重要。我们在此报告来自结核分枝杆菌(MtIlvE)的依赖于磷酸吡哆醛(PLP)的支链氨基转移酶IlvE的动力学和化学机制。该酶负责支链氨基酸异亮氨酸、亮氨酸和缬氨酸合成的最后一步。正如在其他氨基转移酶中所观察到的,MtIlvE呈现乒乓动力学机制。通过pH对V以及V/K的依赖性确定了pK值,这表明PLP辅因子的磷酸酯、来自L-谷氨酸的α-氨基以及活性位点的赖氨酸分别在酸碱催化和结合中发挥作用。确定了L-谷氨酸α-C-H键断裂的内在一级动力学同位素效应。还确定了乒乓半反应的大溶剂动力学同位素效应值。在单周转条件下我们的多重动力学同位素效应中,没有喹啉中间体以及k值表明是一种协同类型的机制。在乒乓半反应中,L-谷氨酸C2的去质子化和PLP辅因子C4'的质子化同步发生。基于此处获得的结果提出了一种化学机制。