Van Bastelaere P B, Callens M, Vangrysperre W A, Kersters-Hilderson H L
Laboratory of Biochemistry, University of Ghent, Belgium.
Biochem J. 1992 Sep 15;286 ( Pt 3)(Pt 3):729-35.
D-Xylose isomerases are metal-ion (Mn2+, Co2+, Mg2+)-requiring tetrameric enzymes. Both the stoichiometry and the binding constants have been determined by titrating the metal-ion-free enzymes from five organisms (Actinomycetaceae and more divergent bacteria) with the respective metal ions using the enzyme activity as indicator of active complex-formation. The following characteristics have been observed for each specific isomerase: (i) two essential metal ion sites (one structural and one catalytic) exist per subunit; (ii) the metal ion binding at one site does not affect the binding at the other site; (iii) of the four possible configurations E, aE, Eb and aEb, only the double-occupied enzyme is active; (iv) the metal ion activation is a time-dependent process; (v) the dissociation constants for both the structural and catalytic sites may be identical or may differ by one or higher orders of magnitude; (vi) metal ion binding is stronger in the order Mn2+ greater than Co2+ much greater than Mg2+; (vii) pronounced increases in Km values concomitant with decreasing equivalents of metal ion added are only observed in the presence of Mg2+ ions.
D-木糖异构酶是需要金属离子(Mn2+、Co2+、Mg2+)的四聚体酶。通过使用酶活性作为活性复合物形成的指标,用相应的金属离子滴定来自五种生物(放线菌科和其他差异较大的细菌)的无金属离子酶,已确定了化学计量和结合常数。对于每种特定的异构酶,观察到以下特征:(i)每个亚基存在两个必需的金属离子位点(一个结构位点和一个催化位点);(ii)一个位点上的金属离子结合不影响另一个位点上的结合;(iii)在四种可能的构型E、aE、Eb和aEb中,只有双占据的酶具有活性;(iv)金属离子活化是一个时间依赖性过程;(v)结构位点和催化位点的解离常数可能相同,也可能相差一个或更高的数量级;(vi)金属离子结合强度顺序为Mn2+>Co2+>>Mg2+;(vii)仅在存在Mg2+离子的情况下,才观察到随着添加的金属离子当量减少,Km值显著增加。