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葡萄球菌核酸酶活性位点双突变体中各个突变之间的多种相互作用。

Diverse interactions between the individual mutations in a double mutant at the active site of staphylococcal nuclease.

作者信息

Weber D J, Serpersu E H, Shortle D, Mildvan A S

机构信息

Department of Biological Chemistry, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.

出版信息

Biochemistry. 1990 Sep 18;29(37):8632-42. doi: 10.1021/bi00489a020.

Abstract

In principle, the quantitative effect of a second mutation on a mutant enzyme may be antagonistic, absent, partially additive, additive, or synergistic with respect to the first mutation. Depending on the kinetic or thermodynamic parameter measured, the D21E and R87G mutations of staphylococcal nuclease exhibit four of these five categories of interaction in the double mutant. While Vmax of the R87G single mutant of staphylococcal nuclease is 10(4.8)-fold lower than that of the wild-type enzyme and the Vmax of the D21E single mutant is 10(3.0)-fold below that of wild type, the double mutant D21E + R87G was found to lose a factor of only 10(4.1) in Vmax relative to wild type, rather than the product of the two single mutations (10(7.8)). These results suggest antagonistic structural effects of the individual R87G and D21E mutations. An alternative explanation for the nonadditivity of effects, namely, the separate functioning of these residues in a stepwise mechanism involving the prior attack of water on phosphorus followed by protonation of the leaving group by Arg-87, is unlikely since no enzyme-bound phosphorane intermediate (less than 1% of [enzyme]) was found under steady-state conditions on the R87G mutant by 31P NMR at 242.9 MHz. Like the effects on Vmax, quantitatively similar antagonistic effects of the two mutations were detected on the binding of divalent cations in binary enzyme-Ca2+ and enzyme-Mn2+ complexes and in the ternary enzyme-Ca2(+)-5'-pdTdA complex, suggesting that the effects on Vmax result from antagonistic structural changes at the Ca2+ binding site. Simple additive weakening effects of the two mutations were found on the binding of the substrate 5'-pdTdA, in both the absence and the presence of the divalent cations, Mn2+ and Ca2+. However, synergistic effects of the two mutations were found on the binding of the substrate analogue 3',5'-pdTp, profoundly weakening its binding to the double mutant in both the absence and the presence of divalent cations. Such synergistic effects of the two mutations may result from negative cooperativity or strain in the binding of 3',5'-pdTp to the wild-type enzyme. It is concluded that the quantitative interactions of two active-site mutations of an enzyme can vary greatly depending on which parameter of the enzyme is measured. When the two mutations interact in the same way on several parameters, a common underlying mechanism is suggested.

摘要

原则上,第二个突变对突变酶的定量影响相对于第一个突变可能是拮抗的、无影响的、部分加和的、加和的或协同的。根据所测量的动力学或热力学参数,葡萄球菌核酸酶的D21E和R87G突变在双突变体中表现出这五类相互作用中的四种。葡萄球菌核酸酶的R87G单突变体的Vmax比野生型酶低10(4.8)倍,而D21E单突变体的Vmax比野生型低10(3.0)倍,然而,发现双突变体D21E + R87G相对于野生型在Vmax上仅损失了10(4.1)倍的因子,而不是两个单突变的乘积(10(7.8))。这些结果表明单个R87G和D21E突变具有拮抗的结构效应。关于效应非加和性的另一种解释,即这些残基在一个逐步机制中独立起作用,该机制涉及水先攻击磷,然后由精氨酸 - 87使离去基团质子化,这种解释不太可能,因为在242.9 MHz下通过31P NMR在稳态条件下未在R87G突变体中发现酶结合的膦中间体(小于[酶]的1%)。与对Vmax的影响一样,在二元酶 - Ca2 +和酶 - Mn2 +复合物以及三元酶 - Ca2(+)-5'-pdTdA复合物中,检测到这两个突变对二价阳离子结合具有定量相似的拮抗作用,这表明对Vmax的影响是由Ca2 +结合位点的拮抗结构变化引起的。在不存在和存在二价阳离子Mn2 +和Ca2 +的情况下,发现这两个突变对底物5'-pdTdA的结合具有简单的加和减弱作用。然而,发现这两个突变对底物类似物3',5'-pdTp的结合具有协同作用,在不存在和存在二价阳离子的情况下都极大地减弱了它与双突变体的结合。这两个突变的这种协同作用可能是由于3',5'-pdTp与野生型酶结合时的负协同性或张力。得出的结论是,酶的两个活性位点突变的定量相互作用可能会根据所测量的酶参数而有很大差异。当这两个突变在几个参数上以相同方式相互作用时,表明存在共同的潜在机制。

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