首页> 美国卫生研究院文献>Biochemical Journal >Wild-type and mutant D-xylose isomerase from Actinoplanes missouriensis: metal-ion dissociation constants kinetic parameters of deuterated and non-deuterated substrates and solvent-isotope effects.
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Wild-type and mutant D-xylose isomerase from Actinoplanes missouriensis: metal-ion dissociation constants kinetic parameters of deuterated and non-deuterated substrates and solvent-isotope effects.

机译:来自密苏里放线猕猴的野生型和突变型D-木糖异构酶:金属离子解离常数氘代和非氘代底物的动力学参数以及溶剂同位素效应。

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摘要

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.
机译:通过分别用Mg2 +和Mn2 +滴定无金属离子的酶来测定密苏里放线放线菌的野生型和突变D-木糖异构酶的金属离子解离常数(Mg2 +,Mn2 +)。与金属离子1(E181D,D245N)配位的氨基酸的取代极大地影响了解离常数,pH活性分布和明显的底物结合。除了Asp-255之外,与金属离子2相连的基团的诱变作用不那么剧烈:金属离子亲和力降低,金属离子偏好性改变以及明显的表观底物结合(在pH值高于最佳值时),对于D255N酶,尤其是在Mn2 +的存在下。通过诱变将相邻的Glu-186与Gln和不保守的Ala-25与Lys进行诱变,可以获得类似的效果,但金属离子亲和力略有增加。此外,在D255N和E186Q酶中观察到的惊人的pH值变化支持了水分子Wa-690,Asp-255和相邻的Glu-186在质子从2-OH向O-1的O-1转移中的关键作用。开放和扩展的醛糖底物。尽管可以观察到对动力学参数的显着影响,但其他重要基团的突变几乎不会影响金属离子的解离常数和pH活性曲线。

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