Laboratory of Physiological Chemistry, Université catholique de Louvain, de Duve Institute, B-1200 Brussels, Belgium.
Arch Biochem Biophys. 2010 Oct 1;502(1):44-52. doi: 10.1016/j.abb.2010.07.009. Epub 2010 Jul 14.
Deoxycytidine kinase (dCK) is a key enzyme in the salvage of deoxynucleosides and in the activation of several anticancer and antiviral nucleoside analogues. We recently showed that dCK was activated in vivo by phosphorylation of Ser-74. However, the protein kinase responsible was not identified. Ser-74 is located downstream a Glu-rich region, presenting similarity with the consensus phosphorylation motif of casein kinase 1 (CKI), and particularly of CKI delta. We showed that recombinant CKI delta phosphorylated several residues of bacterially overexpressed dCK: Ser-74, but also Ser-11, Ser-15, and Thr-72. Phosphorylation of dCK by CKI delta correlated with increased activity reaching at least 4-fold. Site-directed mutagenesis demonstrated that only Ser-74 phosphorylation was involved in dCK activation by CKI delta, strengthening the key role of this residue in the control of dCK activity. However, neither CKI delta inhibitors nor CKI delta siRNA-mediated knock-down modified Ser-74 phosphorylation or dCK activity in cultured cells. Moreover, these approaches did not prevent dCK activation induced by treatments enhancing Ser-74 phosphorylation. Taken together, the data preclude a role of CKI delta in the regulation of dCK activity in vivo. Nevertheless, phosphorylation of dCK by CKI delta could be a useful tool for elucidating the influence of Ser-74 phosphorylation on the structure-activity relationships in the enzyme.
脱氧胞苷激酶(dCK)是一种关键的酶,参与脱氧核苷的补救途径以及多种抗癌和抗病毒核苷类似物的激活。我们最近发现,dCK 可以通过丝氨酸 74 的磷酸化在体内被激活。然而,负责磷酸化的蛋白激酶尚未确定。丝氨酸 74 位于富含谷氨酸的区域下游,与酪蛋白激酶 1(CK1)的共识磷酸化模体,尤其是 CKI delta 相似。我们发现重组 CKI delta 可以磷酸化细菌过表达的 dCK 的多个残基:丝氨酸 74,但也包括丝氨酸 11、丝氨酸 15 和苏氨酸 72。CK1 delta 对 dCK 的磷酸化与活性的增加相关,达到至少 4 倍。定点突变表明,只有丝氨酸 74 的磷酸化参与了 CKI delta 对 dCK 的激活,这进一步证实了该残基在控制 dCK 活性中的关键作用。然而,在培养细胞中,CK1 delta 抑制剂或 CKI delta siRNA 介导的敲低既没有改变丝氨酸 74 的磷酸化,也没有改变 dCK 的活性。此外,这些方法并不能阻止增强丝氨酸 74 磷酸化的处理诱导的 dCK 激活。总之,这些数据排除了 CKI delta 在体内调节 dCK 活性中的作用。然而,CK1 delta 对 dCK 的磷酸化可能是阐明丝氨酸 74 磷酸化对酶结构-活性关系影响的有用工具。