Lin Xiaofeng, Ayrapetov Marina K, Sun Gongqin
Department of Cell and Molecular Biology, University of Rhode Island, Kingston, RI 02881, USA.
BMC Biochem. 2005 Nov 23;6:25. doi: 10.1186/1471-2091-6-25.
Protein tyrosine kinases are important enzymes for cell signalling and key targets for anticancer drug discovery. The catalytic mechanisms of protein tyrosine kinase-catalysed phosphorylation are not fully understood. Protein tyrosine kinase Csk requires two Mg2+ cations for activity: one (M1) binds to ATP, and the other (M2) acts as an essential activator.
Experiments in this communication characterize the interaction between M2 and Csk. Csk activity is sensitive to pH in the range of 6 to 7. Kinetic characterization indicates that the sensitivity is not due to altered substrate binding, but caused by the sensitivity of M2 binding to pH. Several residues in the active site with potential of binding M2 are mutated and the effect on metal activation studied. An active mutant of Asn319 is generated, and this mutation does not alter the metal binding characteristics. Mutations of Glu236 or Asp332 abolish the kinase activity, precluding a positive or negative conclusion on their role in M2 coordination. Finally, the ability of divalent metal cations to activate Csk correlates to a combination of ionic radius and the coordination number.
These studies demonstrate that M2 binding to Csk is sensitive to pH, which is mainly responsible for Csk activity change in the acidic arm of the pH response curve. They also demonstrate critical differences in the metal activator coordination sphere in protein tyrosine kinase Csk and a protein Ser/Thr kinase, the cAMP-dependent protein kinase. They shed light on the physical interactions between a protein tyrosine kinase and a divalent metal activator.
蛋白酪氨酸激酶是细胞信号传导的重要酶类,也是抗癌药物研发的关键靶点。蛋白酪氨酸激酶催化的磷酸化反应的催化机制尚未完全明晰。蛋白酪氨酸激酶Csk的活性需要两个Mg2+阳离子:一个(M1)与ATP结合,另一个(M2)作为必需的激活剂。
本通讯中的实验对M2与Csk之间的相互作用进行了表征。Csk活性在pH 6至7范围内对pH敏感。动力学表征表明,这种敏感性并非由于底物结合的改变,而是由M2结合对pH的敏感性所致。对活性位点中几个具有结合M2潜力的残基进行了突变,并研究了其对金属激活的影响。产生了Asn319的活性突变体,该突变并未改变金属结合特性。Glu236或Asp332的突变消除了激酶活性,因此无法就它们在M2配位中的作用得出肯定或否定的结论。最后,二价金属阳离子激活Csk的能力与离子半径和配位数的组合相关。
这些研究表明,M2与Csk的结合对pH敏感,这是pH响应曲线酸性区域中Csk活性变化的主要原因。它们还证明了蛋白酪氨酸激酶Csk与蛋白丝氨酸/苏氨酸激酶(cAMP依赖性蛋白激酶)在金属激活剂配位球方面的关键差异。它们揭示了蛋白酪氨酸激酶与二价金属激活剂之间的物理相互作用。