Doskeland S O, Ueland P M
Biochem J. 1977 Sep 1;165(3):561-73. doi: 10.1042/bj1650561.
Five peaks of cyclic AMP-binding activity could be resolved by DEAE-cellulose chromatography of bovine adrenal-cortex cytosol. Two of the binding peaks co-chromatographed with the catalytic activities of cyclic AMP-dependent protein kinases (ATP-protein phosphotransferase, EC 2.7.1.37) of type I or type II respectively. A third binding protein was eluted between the two kinases, and appeared to be the free regulatory moiety of protein kinase I. Two of the binding proteins for cyclic AMP, sedimenting at 9S in sucrose gradients, could also bind adenosine. They bound cyclic AMP with an apparent equilibrium dissociation constant (K(d)) of about 0.1mum, and showed an increased binding capacity for cyclic AMP after preincubation in the presence of K(+), Mg(2+) and ATP. The two binding proteins differed in their apparent affinities for adenosine. The isolated regulatory moiety of protein kinase I had a very high affinity for cyclic AMP (K(d)<0.1nm). At low ionic strength or in the presence of MgATP, the high-affinity binding of cyclic AMP to the regulatory subunit of protein kinase I was decreased by the catalytic subunit. At high ionic strength and in the absence of MgATP the high-affinity binding to the regulatory subunit was not affected by the presence of catalytic subunit. Under all experimental conditions tested, dissociation of protein kinase I was accompanied by an increased affinity for cyclic AMP. To gain some insight into the mechanism by which cyclic AMP activates protein kinase, the interaction between basic proteins, salt and the cyclic nucleotide in activating the kinase was studied.
通过对牛肾上腺皮质胞质溶胶进行二乙氨基乙基纤维素(DEAE - 纤维素)层析,可分辨出五个环磷酸腺苷(cAMP)结合活性峰。其中两个结合峰分别与I型或II型环磷酸腺苷依赖性蛋白激酶(ATP - 蛋白磷酸转移酶,EC 2.7.1.37)的催化活性共同层析。第三个结合蛋白在这两种激酶之间被洗脱出来,似乎是蛋白激酶I的游离调节部分。在蔗糖梯度中沉降系数为9S的两种cAMP结合蛋白也能结合腺苷。它们结合cAMP的表观平衡解离常数(K(d))约为0.1μM,并且在K(+)、Mg(2+)和ATP存在下预孵育后,对cAMP的结合能力增强。这两种结合蛋白对腺苷的表观亲和力不同。分离出的蛋白激酶I调节部分对cAMP具有非常高的亲和力(K(d)<0.1 nM)。在低离子强度或MgATP存在的情况下,cAMP与蛋白激酶I调节亚基的高亲和力结合会被催化亚基降低。在高离子强度且不存在MgATP的情况下,催化亚基的存在不会影响与调节亚基的高亲和力结合。在所有测试的实验条件下,蛋白激酶I的解离都伴随着对cAMP亲和力的增加。为了深入了解cAMP激活蛋白激酶的机制,研究了碱性蛋白、盐和环核苷酸在激活激酶过程中的相互作用。