Sun L, Kantrowitz E R, Galley W C
Department of Chemistry, McGill University, Montreal, Quebec, Canada.
Eur J Biochem. 1997 Apr 1;245(1):32-9. doi: 10.1111/j.1432-1033.1997.00032.x.
The phosphorescence spectrum and decay of Trp109 in Escherichia coli alkaline phosphatase was measured for the enzyme in 10 mM Tris/HCl, pH 7.4, at 21 degrees C. Changes in the spectrum and decay from the steady-state in response to non-covalent phosphate binding suggested a phosphate-induced alteration in the local environment surrounding Trp109 which lies buried below the active site. The seemingly inflexible structure in the region of Trp109, as judged by its very long phosphorescence lifetime, appeared unaltered when the enzyme was symmetrically bound with phosphate. However, the protein with phosphate bound to only one site displayed a marked increase in flexibility that extended over both subunits. For ratios of phosphate/enzyme (mol/mol) between 1.0 and 2.0, the observation of exponential phosphorescence decays with lifetimes that are a function of dilution provided evidence for the rapid exchange between phosphate half-saturated and fully-saturated enzymes consistent with observed enzyme turnover rates. The lifetimes under these conditions result in the calculation of a Kd for the dissociation of phosphate from the doubly occupied enzyme of 1.1 +/- 0.1 microM. The non-exponential decays at P/Ed (phosphate/dimeric enzyme) ratios less than 1.0 revealed that the exchange of phosphate between phosphate-free and half-saturated enzymes was not occurring on the timescale of the phosphorescence decay times, which implied that the half-saturated molecule cannot be contributing significantly to catalysis under steady-state conditions. The observation that the phosphorescence decay at a P/Ed ratio of 1.0 is exponential with a lifetime characteristic of the half-saturated species indicates that the binding of the first phosphate is significantly greater than the second, or that the binding exhibits negative cooperativity.
在21摄氏度下,于pH 7.4的10 mM Tris/HCl中,对大肠杆菌碱性磷酸酶中Trp109的磷光光谱和衰减进行了测量。响应非共价磷酸盐结合,光谱和衰减相对于稳态的变化表明,Trp109周围的局部环境发生了磷酸盐诱导的改变,Trp109位于活性位点下方且被掩埋。从其非常长的磷光寿命判断,Trp109区域看似刚性的结构在酶与磷酸盐对称结合时未发生改变。然而,仅一个位点结合磷酸盐的蛋白质显示出柔韧性显著增加,这种增加延伸到了两个亚基。对于磷酸盐/酶(摩尔/摩尔)比例在1.0至2.0之间的情况,观察到指数型磷光衰减,其寿命是稀释度的函数,这为磷酸盐半饱和和完全饱和酶之间的快速交换提供了证据,这与观察到的酶周转率一致。在这些条件下的寿命导致计算出从双占据酶上解离磷酸盐的Kd为1.1±0.1 microM。在P/Ed(磷酸盐/二聚体酶)比例小于1.0时的非指数衰减表明,无磷酸盐和半饱和酶之间的磷酸盐交换在磷光衰减时间的时间尺度上并未发生,这意味着在稳态条件下半饱和分子对催化作用的贡献不大。在P/Ed比例为1.0时磷光衰减呈指数型且具有半饱和物种特征寿命的观察结果表明,第一个磷酸盐的结合显著大于第二个,或者说结合表现出负协同性。