Ascenzi P, Coletta M, Amiconi G, Bolognesi M, Menegatti E, Guarneri M
C.N.R. Centro di Biologia Molecolare, Dipartimento di Scienze Biochimiche, Università di Roma La Sapienza.
Biol Chem Hoppe Seyler. 1990 May;371(5):389-93. doi: 10.1515/bchm3.1990.371.1.389.
The effect of pH and temperature on the apparent association equilibrium constant (Ka) for the binding of the bovine basic pancreatic trypsin inhibitor (BPTI, Kunitz inhibitor) to human and bovine factor Xa (Stuart-Prower factor; EC 3.4.21.6) has been investigated. Under all the experimental conditions, values of Ka for BPTI binding to human and bovine factor Xa are identical. On lowering the pH from 9.5 to 4.5, values of Ka (at 21.0 degrees C) for BPTI binding to human and bovine factor Xa decrease, thus reflecting the acidic pK shift of the His57 catalytic residue from 7.1, in the free enzyme, to 5.2, in the proteinase-inhibitor complex. At pH 8.0, values of the apparent thermodynamic parameters for BPTI binding to human and bovine factor Xa are: Ka = 2.1 x 10(5)M-1 (at 21.0 degrees C), delta G degree = -29.7 kJ/mol (at 21.0 degrees C), delta S degree = +161 entropy units (at 21.0 degrees C), and delta H degree = +17.6 kJ/mol (temperature-independent over the explored range, from 5.0 degrees C to 45.0 degrees C). Thermodynamics of BPTI binding to human and bovine factor Xa have been analysed in parallel with those of related serine (pro)enzyme/Kazal- and /Kunitz-type inhibitor systems. Considering the known molecular models, the observed binding behaviour of BPTI to human and bovine factor Xa was related to the inferred stereochemistry of the proteinase/inhibitor contact region.
研究了pH值和温度对牛碱性胰蛋白酶抑制剂(BPTI,库尼兹抑制剂)与人及牛因子Xa(斯图尔特-普劳尔因子;EC 3.4.21.6)结合的表观缔合平衡常数(Ka)的影响。在所有实验条件下,BPTI与人及牛因子Xa结合的Ka值相同。将pH值从9.5降至4.5时,BPTI与人及牛因子Xa结合的Ka值(在21.0℃)降低,这反映了组氨酸57催化残基的酸性pK值从游离酶中的7.1转变为蛋白酶-抑制剂复合物中的5.2。在pH 8.0时,BPTI与人及牛因子Xa结合的表观热力学参数值为:Ka = 2.1×10⁵M⁻¹(在21.0℃),ΔG° = -29.7 kJ/mol(在21.0℃),ΔS° = +161熵单位(在21.0℃),以及ΔH° = +17.6 kJ/mol(在所研究的5.0℃至45.0℃范围内与温度无关)。已将BPTI与人及牛因子Xa结合的热力学与相关丝氨酸(原)酶/卡扎尔型和/库尼兹型抑制剂系统的热力学进行了平行分析。考虑到已知的分子模型,观察到的BPTI与人及牛因子Xa的结合行为与推断的蛋白酶/抑制剂接触区域的立体化学有关。