Stone S R, Hofsteenge J
Biochemistry. 1986 Aug 12;25(16):4622-8. doi: 10.1021/bi00364a025.
The dissociation constant for hirudin was determined by varying the concentration of hirudin in the presence of a fixed concentration of thrombin and tripeptidyl p-nitroanilide substrate. The estimate of the dissociation constant determined in this manner displayed a dependence on the concentration of substrate which suggested the existence of two binding sites at which the substrate was able to compete with hirudin. A high-affinity site could be correlated with the binding of the substrate at the active site, and the other site had an affinity for the substrate that was 2 orders of magnitude lower. Extrapolation to zero substrate concentration yielded a value of 20 fM for the dissociation constant of hirudin at an ionic strength of 0.125. The dissociation constant for hirudin was markedly dependent on the ionic strength of the assay; it increased 20-fold when the ionic strength was increased from 0.1 to 0.4. This increase in dissociation constant was accompanied by a decrease in the rate with which hirudin associated with thrombin. This rate could be measured with a conventional recording spectrophotometer at higher ionic strength and was found to be independent of the binding of substrate at the active site.
水蛭素的解离常数是通过在固定浓度的凝血酶和三肽对硝基苯胺底物存在的情况下改变水蛭素的浓度来测定的。以这种方式测定的解离常数估计值显示出对底物浓度的依赖性,这表明存在两个结合位点,底物能够在这些位点与水蛭素竞争。一个高亲和力位点可能与底物在活性位点的结合相关,另一个位点对底物的亲和力低2个数量级。外推至零底物浓度,在离子强度为0.125时,水蛭素的解离常数为20 fM。水蛭素的解离常数明显依赖于测定的离子强度;当离子强度从0.1增加到0.4时,它增加了20倍。解离常数的这种增加伴随着水蛭素与凝血酶结合速率的降低。在较高离子强度下,可以用传统的记录分光光度计测量该速率,并且发现该速率与底物在活性位点的结合无关。