Poyner R R, Reed G H
Department of Biochemistry, College of Agricultural and Life Sciences, University of Wisconsin, Madison 53705.
Biochemistry. 1992 Aug 11;31(31):7166-73. doi: 10.1021/bi00146a020.
Phosphonoacetohydroxamate (PhAH) is a tight-binding (Ki = 15 pM) inhibitor of enolase that is believed to mimic the aci-carboxylate form of the intermediate carbanion in the reaction [Anderson, V. E., Weiss, P. M., & Cleland, W. W. (1984) Biochemistry 23, 2779]. Electron paramagnetic resonance (EPR) spectroscopy of Mn2+ has been used to map sites of interaction of PhAH with the two divalent cations at the active site of enolase from bakers' yeast. EPR spectra of enolase-PhAH complexes containing two Mn2+ bound at the active site contain multiple fine structure transitions each with a 45-G 55Mn hyperfine spacing that is a characteristic of spin exchange coupled pairs of Mn2+. Magnetically dilute complexes were obtained by preparation of specific Mg2+/Mn2+ hybrid complexes by manipulating the order of addition of the divalent metal species. Thus, Mn2+ was placed in the higher affinity site by addition of 1 equiv of Mn2+ to a solution of enolase and PhAH, followed by addition of 1 equiv of Mg2+. Reversing the order of addition of Mg2+ and Mn2+ placed Mn2+ in the lower affinity site. Regiospecifically 17O-labeled forms of PhAH were prepared, and the binding of the functional groups on PhAH to Mn2+ at the two metal ion sites was determined from the presence or absence of 17O superhyperfine coupling in the EPR signals. The hydroxamate oxygen is a ligand of Mn2+ at the higher affinity site, a phosphonate oxygen is a ligand of Mn2+ at the lower affinity site, and the carbonyl oxygen is a mu-O bridge of the two metal ions.(ABSTRACT TRUNCATED AT 250 WORDS)
膦酰基乙酰异羟肟酸(PhAH)是烯醇酶的一种紧密结合型抑制剂(Ki = 15 pM),据信它在反应中模拟了中间体碳负离子的酸式羧酸盐形式[安德森,V. E.,魏斯,P. M.,& 克莱兰,W. W.(1984年)《生物化学》23卷,2779页]。Mn2+的电子顺磁共振(EPR)光谱已被用于绘制PhAH与面包酵母烯醇酶活性位点上两个二价阳离子的相互作用位点。在活性位点结合有两个Mn2+的烯醇酶 - PhAH复合物的EPR光谱包含多个精细结构跃迁,每个跃迁具有45 - G的55Mn超精细间距,这是Mn2+自旋交换耦合对的特征。通过控制二价金属离子添加顺序制备特定的Mg2+/Mn2+混合复合物,从而获得磁稀释复合物。因此,向烯醇酶和PhAH的溶液中加入1当量的Mn2+,然后加入1当量的Mg2+,可将Mn2+置于高亲和力位点。颠倒Mg2+和Mn2+的添加顺序则将Mn2+置于低亲和力位点。制备了区域特异性17O标记的PhAH形式,并根据EPR信号中17O超超精细耦合的有无来确定PhAH上的官能团与两个金属离子位点上的Mn2+的结合情况。异羟肟酸氧是高亲和力位点上Mn^2 +的配体,膦酸酯氧是低亲和力位点上Mn2+的配体,羰基氧是两个金属离子的μ - O桥。(摘要截于250字)