Snyder F W, Chien C W
Eur J Biochem. 1978 Nov 2;91(1):83-8. doi: 10.1111/j.1432-1033.1978.tb20939.x.
Precise oxygen equilibrium curves have been obtained for cobalt hemoglobin at pH values from 5.5 to 8.2. The Hill plots are symmetric having asymptotes with slopes of unity. At pH 7.0, cobalt hemoglobin has p0.5 = 116 toor (15.45 kPa), pm = 117 torr (15.58 kPa) and a Hill coefficient of n = 1.72. The values of n decrease slightly with either decrease or increase of pH; the protein is almost non-cooperative at pH greater than 8.2. The Adair constants have been calculated with a non-linear least-squares program. From deltalnpm/deltapH a maximum of 2.5 Bohr protons was calculated at physiological pH values. The majority of alkaline Bohr protons are released after binding of the first and the third oxygen with maxima at pH 7.6 and 7.3, respectively. The acid Bohr effect was also observed with the majority of the protons taken up following the first and third oxygen bound. Smaller alkaline Bohr effects were obtained by differential titration and at higher pH than that calculated from oxygen equilibria. The discrepancy can be largely attributed to the binding of salt components to cobalt hemoglobin.
已获得钴血红蛋白在pH值为5.5至8.2范围内的精确氧平衡曲线。希尔图是对称的,渐近线斜率为1。在pH 7.0时,钴血红蛋白的p0.5 = 116托(15.45千帕),pm = 117托(15.58千帕),希尔系数n = 1.72。随着pH值的降低或升高,n值略有下降;在pH大于8.2时,该蛋白质几乎没有协同性。已使用非线性最小二乘法程序计算了阿代尔常数。根据deltalnpm/deltapH,在生理pH值下计算出最多有2.5个玻尔质子。大多数碱性玻尔质子在结合第一个和第三个氧之后释放,最大值分别出现在pH 7.6和7.3处。还观察到了酸玻尔效应,大多数质子在结合第一个和第三个氧之后被吸收。通过微分滴定在比从氧平衡计算出的更高pH值下获得了较小的碱性玻尔效应。这种差异在很大程度上可归因于盐成分与钴血红蛋白的结合。