Smissaert H R
Biochem J. 1981 Jul 1;197(1):163-70. doi: 10.1042/bj1970163.
For bovine erythrocyte acetylcholinesterase (acetylcholine hydrolase, EC 3.1.1.7), the Michaelis parameters Vmax., and Km for the natural substrate acetylcholine were estimated as a function of pH and sodium chloride concentration by the pH-stat method. A single dissociation constant for Na+ binding (K = 7 X 10(-3) M) suffices to explain the salt dependence of Vmax./Km and of Km as well as the pH dependence of Vmax./Km and Vmax., Km being pH independent. This finding provides evidence for a specific effect of Na+, presumably by binding at the anionic subsite of the active centre. Na+ binding causes a 50-fold decrease in kcat./Km as well as a decrease of one unit in the pKa of both kcat./Km and kcat.. The intrinsic pKa in the absence of salt at 25 degrees C is about 7.5. Comparison of the degree of fit of the data to the Debeye-Huckel equation, in accordance with an alternative general salt effect, as well as published data for sodium and potassium chlorides also favour a specific salt effect.
对于牛红细胞乙酰胆碱酯酶(乙酰胆碱水解酶,EC 3.1.1.7),通过pH计法测定了天然底物乙酰胆碱的米氏参数Vmax.和Km作为pH值和氯化钠浓度的函数。一个单一的Na⁺结合解离常数(K = 7×10⁻³ M)足以解释Vmax./Km和Km对盐的依赖性以及Vmax./Km和Vmax.对pH的依赖性,Km与pH无关。这一发现为Na⁺的特定效应提供了证据,推测是通过结合在活性中心的阴离子亚位点。Na⁺结合导致kcat./Km降低50倍,以及kcat./Km和kcat.的pKa降低一个单位。25℃无盐时的固有pKa约为7.5。根据另一种一般盐效应,将数据与德拜 - 休克尔方程的拟合程度进行比较,以及已发表的氯化钠和氯化钾数据也支持特定盐效应。