Baerga-Ortiz A, Rezaie A R, Komives E A
Department of Chemistry, University of California, San Diego, La Jolla, CA, 92093-0359, USA.
J Mol Biol. 2000 Feb 18;296(2):651-8. doi: 10.1006/jmbi.1999.3447.
The rate constants for the binding interaction between thrombin and a fully active fragment of its anticoagulant cofactor, thrombomodulin, have been determined by surface plasmon resonance. At physiological ionic strength, the k(a) was 6.7x10(6) M(-1) s(-1 )and the dissociation rate constant was 0.033 s(-1). These extremely fast association and dissociation rates resulted in an overall binding equilibrium constant of 4.9 nM, which is similar to previously reported values. Changing the ionic strength from 100 mM to 250 mM NaCl caused a tenfold decrease in the association rate while the dissociation rate did not change significantly. A similar effect was observed with tetramethylammonium chloride. A Debye-Hückel plot of the data had a slope of -6 and an intercept at 0 ionic strength of 10(9) M(-1) s(-1). The same slope and intercept were obtained for data that was collected in the presence of glycerol to slow the association rates. These results show that the thrombin-TM456 interaction is extremely rapid and nearly completely electrostatically steered. An association model is presented in which TM456 approaches thrombin along the direction of the thrombin molecular dipole.
已通过表面等离子体共振测定了凝血酶与其抗凝辅因子血栓调节蛋白的完全活性片段之间结合相互作用的速率常数。在生理离子强度下,结合速率常数k(a)为6.7×10(6) M(-1) s(-1),解离速率常数为0.033 s(-1)。这些极快的缔合和解离速率导致整体结合平衡常数为4.9 nM,这与先前报道的值相似。将离子强度从100 mM NaCl改变为250 mM NaCl会使缔合速率降低十倍,而解离速率没有显著变化。用四甲基氯化铵也观察到了类似的效果。数据的德拜-休克尔图斜率为-6,在零离子强度下的截距为10(9) M(-1) s(-1)。在存在甘油以减慢缔合速率的情况下收集的数据也得到了相同的斜率和截距。这些结果表明,凝血酶-TM456相互作用极其迅速,且几乎完全由静电作用主导。本文提出了一个缔合模型,其中TM456沿凝血酶分子偶极方向接近凝血酶。