Leroy D, Filhol O, Delcros J G, Pares S, Chambaz E M, Cochet C
CEA Grenoble, Laboratoire de Biochimie des Régulations Cellulaires Endocrines, INSERM Unité 244, DBMS, France.
Biochemistry. 1997 Feb 11;36(6):1242-50. doi: 10.1021/bi961949u.
Protein kinase CK2 is a ubiquitous eukaryotic Ser/Thr kinase whose catalytic activity is enhanced several times by polyamines. We have shown previously that the regulatory beta-subunit of CK2 bears a polyamine binding site located in the region Asp51-Tyr110. In the present study, we have used spermine analogs to investigate the structural requirements of the CK2 polyamine binding site. We have observed a strong correlation between the stimulations of CK2 activity by all tested polyamines and their binding efficiencies to the enzyme. As a result, spermine was found to be the most efficient stimulator of the kinase activity and the best CK2 ligand. The effect of the pH on the stimulation of CK2 activity by spermine strongly suggests the involvement of ionic interactions between the positive charges of spermine and the negative charges of acidic amino acids of the beta-subunit. Using a fusion protein made of MBP and the beta-subunit region encompassing amino acid residues Asp51-Pro110, we have studied the binding of spermine as a function of the ionic strength. We show that this region delineates a functional and autonomous domain containing a binding site involved in the interaction with the four positive charges of spermine. Altogether, these results led to the elaboration of the first model defining the crucial structural parameters of a polyamine-protein interaction at the molecular level.
蛋白激酶CK2是一种普遍存在的真核丝氨酸/苏氨酸激酶,其催化活性可被多胺增强数倍。我们之前已经表明,CK2的调节性β亚基在Asp51 - Tyr110区域有一个多胺结合位点。在本研究中,我们使用精胺类似物来研究CK2多胺结合位点的结构要求。我们观察到所有测试的多胺对CK2活性的刺激与其与该酶的结合效率之间存在很强的相关性。结果发现,精胺是激酶活性最有效的刺激剂,也是最好的CK2配体。pH对精胺刺激CK2活性的影响强烈表明,精胺的正电荷与β亚基酸性氨基酸的负电荷之间存在离子相互作用。使用由MBP和包含氨基酸残基Asp51 - Pro110的β亚基区域组成的融合蛋白,我们研究了精胺的结合与离子强度的关系。我们表明,该区域界定了一个功能性自主结构域,其中包含一个与精胺的四个正电荷相互作用的结合位点。总之,这些结果促成了第一个在分子水平上定义多胺 - 蛋白质相互作用关键结构参数的模型的构建。