Xu Y H, Wilkinson D A, Carlson G M
Department of Biochemistry, College of Medicine, University of Tennessee, Memphis, 38163, USA.
Biochemistry. 1996 Apr 16;35(15):5014-21. doi: 10.1021/bi9528107.
To better understand the physical interaction between glycogen phosphorylase-b (P-b) and its only known kinase, phosphorylase kinase (PbK) and the relationship of this interaction to the activation of PbK, direct binding studies are necessary. By utilizing an enzyme-linked immunosorbent assay, a method was developed for measuring the binding of PbK to immobilized P-b under a variety of experimental conditions. A monoclonal antibody specific for the alpha subunit of PbK that had no effect on the phosphorylation of P-b by PbK or on the interaction of PbK with known effectors was used to detect PbK bound to plated P-b. Hyperbolic binding curves were obtained regardless of whether the concentration of Pbk or P-b was varied, and the assay detected changes in relative affinity caused by certain effectors of the kinase. The allosteric effector ADP, alkaline pH, and phosphorylation by cAMP-dependent protein kinase, all activators of PbK, did not cause significant changes in its relative affinity for P-b; however, Ca2+ and Mg2+ ions, which also stimulate PbK, increased its affinity for P-b, with Mg2+ being more effective. Mn2+, which inhibits the P-b conversion activity of PbK, was found to be the most potent enhancer of its affinity for P-b, although divalent cations may enhance binding. Inclusion of ATP analogs in the binding assay with Ca2+ and Mg2+ to stimulate catalytic assay conditions did not further affect the apparent affinity for P-b, which is consistent with the previously reported rapid equilibrium random bi-bi kinetic mechanism for P-b conversion.
为了更好地理解糖原磷酸化酶 -b(P-b)与其唯一已知的激酶——磷酸化酶激酶(PbK)之间的物理相互作用,以及这种相互作用与PbK激活的关系,直接结合研究是必要的。通过利用酶联免疫吸附测定法,开发了一种在各种实验条件下测量PbK与固定化P-b结合的方法。使用一种对PbK的α亚基具有特异性的单克隆抗体来检测结合到平板P-b上的PbK,该抗体对PbK介导的P-b磷酸化或PbK与已知效应物的相互作用没有影响。无论PbK或P-b的浓度如何变化,均获得双曲线结合曲线,并且该测定法检测到由激酶的某些效应物引起的相对亲和力变化。PbK的变构效应物ADP、碱性pH以及cAMP依赖性蛋白激酶的磷酸化,这些都是PbK的激活剂,但它们对PbK与P-b的相对亲和力没有引起显著变化;然而,同样能刺激PbK的Ca2+和Mg2+离子增加了其对P-b的亲和力,其中Mg2+更有效。虽然二价阳离子可能增强结合,但发现抑制PbK的P-b转化活性的Mn2+是其对P-b亲和力的最有效增强剂。在结合测定中加入ATP类似物以及Ca2+和Mg2+以模拟催化测定条件,并未进一步影响对P-b的表观亲和力,这与先前报道的P-b转化的快速平衡随机双底物动力学机制一致。