Autocatalytic tyrosine-phosphorylation of protein kinase CK2 α and α′ subunits: Implication of Tyr182

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Abstract

CK2 is a pleiotropic and constitutively active serine/threonine protein kinase composed of two catalytic (α and/or α′) and two regulatory β-subunits, whose mechanism of modulation is still obscure. Here we show that CK2 α/α′ subunits undergo intermolecular (trans) tyrosine-autophosphorylation, which is dependent on intrinsic catalytic activity and is suppressed by the individual mutation of Tyr182, a crucial residue of the activation loop, to phenylalanine. At variance with serine-autophosphorylation, tyrosine-autophosphorylation of CK2α is reversed by ADP and GDP and is counteracted by the β-subunit and by a peptide reproducing the activation loop of CK2α/α′ (amino acids 175-201). These results disclose new perspectives about the mode of regulation of CK2 catalytic subunits.

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Donella-Deana, A., Cesaro, L., Sarno, S., Brunati, A. M., Ruzzene, M., & Pinna, L. A. (2001). Autocatalytic tyrosine-phosphorylation of protein kinase CK2 α and α′ subunits: Implication of Tyr182. Biochemical Journal, 357(2), 563–567. https://doi.org/10.1042/0264-6021:3570563

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