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蛋白激酶CK2的药理学抑制作用可逆转以CK2水平高为特征的CEM细胞系的多药耐药表型。

Pharmacological inhibition of protein kinase CK2 reverts the multidrug resistance phenotype of a CEM cell line characterized by high CK2 level.

作者信息

Di Maira G, Brustolon F, Bertacchini J, Tosoni K, Marmiroli S, Pinna L A, Ruzzene M

机构信息

Department of Biological Chemistry and CNR Neuroscience Institute, University of Padova, Padova, Italy.

出版信息

Oncogene. 2007 Oct 18;26(48):6915-26. doi: 10.1038/sj.onc.1210495. Epub 2007 May 7.

Abstract

Protein kinase CK2 is an ubiquitous and constitutively active kinase, which phosphorylates many cellular proteins and is implicated in the regulation of cell survival, proliferation and transformation. We investigated its possible involvement in the multidrug resistance phenotype (MDR) by analysing its level in two variants of CEM cells, namely S-CEM and R-CEM, normally sensitive or resistant to chemical apoptosis, respectively. We found that, while the CK2 regulatory subunit beta was equally expressed in the two cell variants, CK2alpha catalytic subunit was higher in R-CEM and this was accompanied by a higher phosphorylation of endogenous protein substrates. Pharmacological downregulation of CK2 activity by a panel of specific inhibitors, or knockdown of CK2alpha expression by RNA interference, were able to induce cell death in R-CEM. CK2 inhibitors could promote an increased uptake of chemotherapeutic drugs inside the cells and sensitize them to drug-induced apoptosis in a co-operative manner. CK2 blockade was also effective in inducing cell death of a different MDR line (U2OS). We therefore conclude that inhibition of CK2 can be considered as a promising tool to revert the MDR phenotype.

摘要

蛋白激酶CK2是一种普遍存在且组成型激活的激酶,它能使许多细胞蛋白磷酸化,并参与细胞存活、增殖和转化的调控。我们通过分析CEM细胞的两个变体,即分别对化学凋亡正常敏感或耐药的S-CEM和R-CEM中CK2的水平,研究了其在多药耐药表型(MDR)中的可能作用。我们发现,虽然CK2调节亚基β在两种细胞变体中表达相同,但CK2α催化亚基在R-CEM中更高,并且这伴随着内源性蛋白质底物的更高磷酸化。用一组特异性抑制剂对CK2活性进行药理学下调,或通过RNA干扰敲低CK2α的表达,能够诱导R-CEM细胞死亡。CK2抑制剂可以促进细胞内化疗药物的摄取增加,并协同使它们对药物诱导的凋亡敏感。CK2阻断在诱导另一个多药耐药细胞系(U2OS)的细胞死亡方面也有效。因此,我们得出结论,抑制CK2可被视为逆转多药耐药表型的一种有前景的工具。

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