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钙离子对pH诱导的牛胰腺脱氧核糖核酸酶A流体动力学变化的作用。

The role of Ca2+ on pH-induced hydrodynamic changes of bovine pancreatic deoxyribonuclease A.

作者信息

Lizárraga B, Sánchez-Romero D, Gil A, Melgar E

出版信息

J Biol Chem. 1978 May 10;253(9):3191-5.

PMID:25282
Abstract

DNase A studied by gel filtration on Sephadex G-100 at pH 7.4 in 40 mM Tris-HCl buffer, behaves hydrodynamically as a spherical monomeric macromolecule of around 31,000 molecular weight, with a Stokes radius = 24.7 A, f/fo = 1.19, and D20,W = 8.69. Similar results were obtained by analytical dialysis using zinc chloride-modified cellophane membranes. The elution volume of DNase A decreases as the pH increases between pH 4.7 and pH 9.5. This effect has been attributed to a change in the tridimensional structure of the protein and interpreted as a modification in the axial ratio due to unfolding of the polypeptide chain with increase in the apparent Stokes radius. The addition of Ca2+ produce reversion of the pH-induced changes at pH 9.5. The transition occurs when Ca2+ binds to at least two binding sites (n = 1.66 in a Hill plot) with a Kd = 8.9 X 10(-5) M and the effect appears to be cooperative. These findings support the hypothesis that Ca2+-binding to DNase A causes a conformational change that maintains a more active structure of the enzyme, especially when the pH-induced unfolding reduces its activity.

摘要

在pH 7.4的40 mM Tris-HCl缓冲液中,于葡聚糖G-100上通过凝胶过滤研究的脱氧核糖核酸酶A,其流体动力学行为表现为分子量约为31,000的球形单体大分子,斯托克斯半径为24.7 Å,f/fo = 1.19,扩散系数D20,W = 8.69。使用氯化锌修饰的玻璃纸膜进行分析透析也得到了类似结果。在pH 4.7至pH 9.5之间,随着pH升高,脱氧核糖核酸酶A的洗脱体积减小。这种效应归因于蛋白质三维结构的变化,并被解释为由于多肽链展开导致轴比改变,表观斯托克斯半径增加。在pH 9.5时,添加Ca2+会使pH诱导的变化逆转。当Ca2+与至少两个结合位点结合时(希尔图中n = 1.66)发生转变,解离常数Kd = 8.9×10(-5) M,且该效应似乎具有协同性。这些发现支持了以下假设:Ca2+与脱氧核糖核酸酶A结合会引起构象变化,从而维持酶的更具活性的结构,尤其是当pH诱导的展开降低其活性时。

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