van Bastelaere P B, Kersters-Hilderson H L, Lambeir A M
Laboratory of Biochemistry, University of Ghent, Belgium.
Biochem J. 1995 Apr 1;307 ( Pt 1)(Pt 1):135-42. doi: 10.1042/bj3070135.
The metal-ion dissociation constants (Mg2+, Mn2+) of wild-type and mutant D-xylose isomerases from Actinoplanes missouriensis have been determined by titrating the metal-ion-free enzymes with Mg2+ and Mn2+ respectively. Substitution of amino acids co-ordinated to metal-ion 1 (E181D, D245N) dramatically affects the dissociation constants, pH-activity profiles and apparent substrate binding. Mutagenesis of groups ligated to metal-ion 2 is less drastic except for that of Asp-255: a decrease in metal-ion affinity, a change in metal-ion preference and an improved apparent substrate binding (at pH values above the optimum), especially in the presence of Mn2+, are observed for the D255N enzyme. Similar effects, except for a slightly increased metal-ion affinity, are obtained by mutagenesis of the adjacent Glu-186 to Gln and the unconserved Ala-25 to Lys. Moreover, the striking acidic-pH shifts observed for the D255N and E186Q enzymes support the crucial role of the water molecule, Wa-690, Asp-255 and the adjacent Glu-186 in proton transfer from 2-OH to O-1 of the open and extended aldose substrate. Mutations of other important groups scarcely affect the metal-ion dissociation constants and pH-activity profiles, although pronounced effects on the kinetic parameters may be observed.
通过分别用Mg2+和Mn2+滴定无金属离子的酶,测定了来自密苏里游动放线菌的野生型和突变型D-木糖异构酶的金属离子解离常数(Mg2+、Mn2+)。与金属离子1配位的氨基酸取代(E181D、D245N)显著影响解离常数、pH-活性曲线和表观底物结合。与金属离子2连接的基团的诱变作用较小,除了Asp-255的诱变:对于D255N酶,观察到金属离子亲和力降低、金属离子偏好改变和表观底物结合改善(在高于最佳pH值时),特别是在存在Mn2+的情况下。通过将相邻的Glu-186突变为Gln以及将不保守的Ala-25突变为Lys,可获得类似的效果,但金属离子亲和力略有增加。此外,在D255N和E186Q酶中观察到的显著酸性pH偏移支持了水分子Wa-690、Asp-255和相邻的Glu-186在质子从开放和伸展的醛糖底物的2-OH转移到O-1中的关键作用。其他重要基团的突变几乎不影响金属离子解离常数和pH-活性曲线,尽管可能观察到对动力学参数有显著影响。