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Assembly of protein kinase CK2: investigation of complex formation between catalytic and regulatory subunits using a zinc-finger-deficient mutant of CK2beta.

机译:组装蛋白激酶CK2:使用CK2beta缺乏锌指的突变体研究催化亚基和调节亚基之间的复合物形成。

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摘要

Protein kinase CK2 is a tetrameric enzyme comprised of two regulatory subunits (CK2beta) and two catalytic subunits (CK2alpha and/or CK2alpha'). The crystal structure of dimeric CK2beta demonstrated that a zinc finger mediates CK2beta dimerization, therefore we constructed a mutant in which cysteine residues 109 and 114 were mutated to serine. Our objectives were to examine the effects of disrupting the zinc finger of the regulatory CK2beta subunit on CK2 tetramer assembly. Examination of this zinc-finger-deficient mutant of CK2beta using a yeast two-hybrid assay demonstrates that the mutant fails to form CK2beta homodimers. In order to extend these studies, we co-transfected COS-7 cells with epitope-tagged constructs and performed co-immunoprecipitation assays. The results from these studies demonstrate that the mutant fails to form CK2beta homodimers and fails to interact with catalytic CK2 subunits. Furthermore, we demonstrate that the mutant CK2beta is not appreciably phosphorylated in cells. Using in vitro binding assays, we demonstrated that the mutant CK2beta protein fails to interact with glutathione S-transferase-CK2alpha'. Finally, we demonstrate that the mutant is translated at an equivalent rate to wild-type CK2beta, but is degraded much more rapidly. Overall, our results are consistent with the model that beta-beta dimerization precedes incorporation of catalytic subunits into tetrameric CK2 complexes, and that beta-beta dimerization is a prerequisite for the stable incorporation of catalytic subunits into CK2 complexes.
机译:蛋白激酶CK2是一种四聚体酶,由两个调节亚基(CK2beta)和两个催化亚基(CK2alpha和/或CK2alpha')组成。二聚体CK2beta的晶体结构表明锌指介导CK2beta二聚化,因此我们构建了一个半胱氨酸残基109和114突变为丝氨酸的突变体。我们的目标是研究破坏调节性CK2beta亚基的锌指对CK2四聚体组装的影响。使用酵母双杂交测定法检查该锌指缺陷型CK2beta突变体表明该突变体未能形成CK2beta同型二聚体。为了扩展这些研究,我们用表位标记的构建体共转染了COS-7细胞,并进行了免疫共沉淀试验。这些研究的结果表明,该突变体无法形成CK2beta同型二聚体,并且无法与催化性CK2亚基相互作用。此外,我们证明突变体CK2beta在细胞中未明显​​磷酸化。使用体外结合测定,我们证明了突变体CK2beta蛋白无法与谷胱甘肽S-转移酶-CK2alpha'相互作用。最后,我们证明了该突变体以与野生型CK2beta相当的速率翻译,但降解得更快。总体而言,我们的结果与以下模型一致:β-β二聚化先于将催化亚基掺入四聚体CK2络合物中,并且β-β二聚化是将催化亚基稳定掺入CK2络合物中的前提。

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