Landro J A, Gerlt J A, Kozarich J W, Koo C W, Shah V J, Kenyon G L, Neidhart D J, Fujita S, Petsko G A
Department of Chemistry and Biochemistry, University of Maryland, College Park 20742.
Biochemistry. 1994 Jan 25;33(3):635-43. doi: 10.1021/bi00169a003.
The mechanism of irreversible inactivation of mandelate racemase (MR) from Pseudomonas putida by alpha-phenylglycidate (alpha PGA) has been investigated stereochemically and crystallographically. The (R) and (S) enantiomers of alpha PGA were synthesized in high enantiomeric excess (81% ee and 83% ee, respectively) using Sharpless epoxidation chemistry. (R)-alpha PGA was determined to be a stereospecific and stoichiometric irreversible inactivator of MR. (S)-alpha PGA does not inactivate MR and appears to bind noncovalently to the active site of MR with less affinity than that of (R)-alpha PGA. The X-ray crystal structure (2.0-A resolution) of MR inactivated by (R)-alpha PGA revealed the presence of a covalent adduct formed by nucleophilic attack of the epsilon-amino group of Lys 166 on the distal carbon on the epoxide ring of (R)-alpha PGA. The proximity of the alpha-proton of (S)-mandelate to Lys 166 [configurationally equivalent to (R)-alpha PGA] was corroborated by the crystal structure (2.1-A resolution) of MR complexed with the substrate analog/competitive inhibitor, (S)-atrolactate [(S)-alpha-methylmandelate]. These results support the proposal that Lys 166 is the polyvalent acid/base responsible for proton transfers on the (S) face of mandelate. In addition, the high-resolution structures also provide insight into the probable interactions of mandelate with the essential Mg2+ and functional groups in the active site.
已通过立体化学和晶体学方法研究了恶臭假单胞菌扁桃酸消旋酶(MR)被α-苯基缩水甘油酸(α-PGA)不可逆失活的机制。使用夏普莱斯环氧化化学方法,以高对映体过量(分别为81% ee和83% ee)合成了α-PGA的(R)和(S)对映体。已确定(R)-α-PGA是MR的立体特异性和化学计量不可逆失活剂。(S)-α-PGA不会使MR失活,并且似乎以比(R)-α-PGA更低的亲和力非共价结合到MR的活性位点。被(R)-α-PGA失活的MR的X射线晶体结构(分辨率为2.0 Å)显示存在一种共价加合物,该加合物是由Lys 166的ε-氨基对(R)-α-PGA环氧环上的远端碳进行亲核攻击形成的。与底物类似物/竞争性抑制剂(S)-阿托乳酸[(S)-α-甲基扁桃酸]复合的MR的晶体结构(分辨率为2.1 Å)证实了(S)-扁桃酸的α-质子与Lys 166[构型等同于(R)-α-PGA]的接近性。这些结果支持了Lys 166是负责扁桃酸(S)面质子转移的多价酸碱的提议。此外,高分辨率结构还提供了对扁桃酸与活性位点中必需的Mg2+和官能团可能相互作用的深入了解。