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离子强度和pH值对高亲和力肝素与抗凝血酶相互作用的影响。

Influence of ionic strength and pH on the interaction between high-affinity heparin and antithrombin.

作者信息

Nordenman B, Björk I

出版信息

Biochim Biophys Acta. 1981 Feb 5;672(3):227-38. doi: 10.1016/0304-4165(81)90289-0.

Abstract

Binding constants for the binding of high-affinity heparin to antithrombin at different ionic strengths were determined by fluorescence titrations and were also estimated from dissociation curves of the heparin-antithrombin complex. These curves were monitored by near-ultraviolet circular dichroism or fluorescence. The dependence of the binding constant on the activity of NaCl suggested that maximally 5-6 charged groups are directly involved in the interaction between the two macromolecules. Major pH-dependent changes of the interaction, as evident by changes of the spectroscopic properties of the complex between the molecules, were found to occur below pH 5.5 and above pH 8.5. The acid change, which was irreversible, was most likely caused by an irreversible conformational change of antithrombin. At alkaline pH, however, the gross conformation of antithrombin was stable up to pH 12, while the at pH 8.5. The dissociation curve, which was reversible, had a midpoint around pH 9.5. This is compatible with the loss of affinity being caused by either a local conformational change, by ionization of tyrosine or by titration of one or more amino groups.

摘要

通过荧光滴定法测定了不同离子强度下高亲和力肝素与抗凝血酶结合的结合常数,并且还从肝素 - 抗凝血酶复合物的解离曲线进行了估算。这些曲线通过近紫外圆二色性或荧光进行监测。结合常数对氯化钠活性的依赖性表明,最多5 - 6个带电基团直接参与了这两种大分子之间的相互作用。分子间复合物的光谱性质变化表明,相互作用的主要pH依赖性变化发生在pH 5.5以下和pH 8.5以上。酸性变化是不可逆的,最有可能是由抗凝血酶的不可逆构象变化引起的。然而,在碱性pH下,抗凝血酶的总体构象在pH 12之前是稳定的,而在pH 8.5时则不然。解离曲线是可逆的,其中点在pH 9.5左右。这与亲和力的丧失是由局部构象变化、酪氨酸的电离或一个或多个氨基的滴定引起的情况相符。

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