Biocenter Oulu and Department of Biochemistry, University of Oulu, P.O. Box 3000, Oulu, FI-90014, Finland.
J Phys Chem B. 2012 Mar 22;116(11):3619-29. doi: 10.1021/jp210185m. Epub 2012 Mar 7.
In the active site of the bacterial α-methylacyl-CoA racemase of Mycobacterium tuberculosis (MCR), the chirality of the 2-methyl branched C2-atom is interconverted between (S) and (R) isomers. Protein crystallographic data and quantum mechanics/molecular mechanics (QM/MM) computational approaches show that this interconversion is achieved via a planar enolate intermediate. The crystal structure, at 1.4 Å, visualizes the mode of binding of a reaction intermediate analogue, 2-methylacetoacetyl-CoA, in a well-defined planar enolate form. The computational studies confirm that in the conversion from (S) to (R), first a proton is abstracted by Nδ1 (His126), and subsequently the planar enolate form is reprotonated by Oδ2 (Asp156). The calculations also show that the negatively charged thioester oxygen of the enolate intermediate is stabilized by an oxyanion hole formed by N (Asp127), as well as by the side chain atoms of the catalytic residues, Asp156 and His126, both being protonated simultaneously, at the intermediate stage of the catalytic cycle. The computational analysis also reveals that the conversion of the (S)- to (R)- chirality is achieved by a movement of 1.7 Å of the chiral C2-carbon, with smaller shifts (approximately 1 Å) of the carbon atom of the 2-methyl group, the C3-atom of the fatty acid tail, and the C1-carbon and O1-oxygen atoms of the thioester moiety.
在结核分枝杆菌(Mycobacterium tuberculosis)的细菌α-甲基酰基辅酶 A 消旋酶的活性部位,2-甲基支链 C2 原子的手性在(S)和(R)异构体之间相互转换。蛋白质晶体学数据和量子力学/分子力学(QM/MM)计算方法表明,这种转换是通过平面烯醇化物中间体实现的。晶体结构分辨率为 1.4Å,可视化了反应中间体类似物 2-甲基乙酰乙酰辅酶 A 的结合模式,呈明确的平面烯醇化物形式。计算研究证实,在从(S)到(R)的转换过程中,首先由 Nδ1(His126)夺取质子,随后平面烯醇化物形式由 Oδ2(Asp156)重新质子化。计算还表明,烯醇化物中间体带负电荷的硫酯氧被由 N(Asp127)形成的阴离子空穴以及同时被质子化的催化残基 Asp156 和 His126 的侧链原子稳定,在催化循环的中间阶段。计算分析还揭示了(S)-到(R)-手性的转换是通过手性 C2-碳原子的 1.7Å移动实现的,2-甲基基团的碳原子、脂肪酸尾部的 C3-原子以及硫酯部分的 C1-碳原子和 O1-氧原子的位移较小(约 1Å)。