Hirai M, Hashimoto S, Kuno T, Tanaka C
Department of Pharmacology, Kobe University School of Medicine, Japan.
Biochem J. 1988 Oct 15;255(2):477-82.
The kinetics of cyclic [3H]GMP binding to the purified cyclic GMP-dependent protein kinase (cG kinase) were studied by using the rapid filtration assay method with polyethyleneimine-treated glass filters (method A), and the data were compared with those of the (NH4)2SO4 precipitation procedure (method B), which has been used for many previous studies on cyclic GMP binding to cG kinase. Each method gave a similar stoichiometry of approx. 2 mol of cyclic GMP/mol of cG kinase subunit; however, other binding kinetics obtained with these two methods were different. The dissociation of bound cyclic [3H]GMP from the kinase showed a single slow component when method A was used, whereas rapid and slow dissociation components were observed with method B. The Scatchard plot of cyclic [3H]GMP binding with method A was linear with a Kd value of 11 +/- 2 nM, suggesting that the two intrachain binding sites have similar high affinity for cyclic GMP. Results obtained on cyclic nucleotide analogue specificity of the two intrachain cyclic GMP-binding sites were also different between these two methods. These findings suggest that cG kinase has two high-affinity cyclic GMP-binding sites per subunit in the native state, and that when (NH4)2SO4 is added, ostensibly to stop the binding reaction, one low-affinity site is created from one high-affinity site.
采用经聚乙烯亚胺处理的玻璃滤器的快速过滤分析法(方法A)研究了环状[3H]GMP与纯化的环状GMP依赖性蛋白激酶(cG激酶)结合的动力学,并将数据与先前许多关于环状GMP与cG激酶结合研究中使用的硫酸铵沉淀法(方法B)的数据进行了比较。每种方法得到的化学计量比相似,约为每摩尔cG激酶亚基结合2摩尔环状GMP;然而,用这两种方法获得的其他结合动力学不同。当使用方法A时,结合的环状[3H]GMP从激酶上的解离显示出单一的慢成分,而使用方法B时观察到快速和慢速解离成分。用方法A进行的环状[3H]GMP结合的Scatchard图呈线性,Kd值为11±2 nM,表明两个链内结合位点对环状GMP具有相似的高亲和力。这两种方法在两个链内环状GMP结合位点的环核苷酸类似物特异性方面得到的结果也不同。这些发现表明,在天然状态下,cG激酶每个亚基有两个高亲和力的环状GMP结合位点,并且当加入硫酸铵表面上是为了终止结合反应时,一个高亲和力位点会产生一个低亲和力位点。