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Characterization of a CK II Protein Kinase from Etiolated Oat Seedlings

机译:彩化燕麦幼苗CK II蛋白激酶的表征

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Protein kinases play a central role in controlling the cellular metabolism of living organisms. A protein kinase was purified from etiolated oat seedlings by several steps of ion-exchange and affinity chromatographies. The kinase was a 150-kDa tetrameric protein and composed of three subunits of 34, 37, and 40 kDa proteins. The 34 and 40 kDa protein had ATP binding sites, suggesting that they are catalytic subunits and that the 37-kDa protein is a regulatory subunit. In the in vitro phosphorylation of a crude oat cell extract, it intensively phosphorylated a serine residue of a 110-kDa protein. The 110-kDa protein was tentatively identified as a DNA topoisomerase I, based on an amino acid sequence homology. Phosphorylation of the 110-kDa protein by the kinase required ATP or GTP as a phosphoryl group donor. The kinase activity was inhibited by 50% at a concentration of 0.05 μg/ml heparin. These results, therefore, indicate that the purified kinase is a CK II protein kinase and may be involved in the regulation of DNA topoisomerase I activity.
机译:蛋白激酶在控制活生物体的细胞代谢中起着核心作用。通过离子交换和亲和层析的几个步骤从黄化的燕麦幼苗中纯化出一种蛋白激酶。该激酶是一个150 kDa的四聚体蛋白,由34、37和40 kDa蛋白的三个亚基组成。 34 kDa和40 kDa蛋白具有ATP结合位点,表明它们是催化亚基,而37 kDa蛋白是调节性亚基。在粗燕麦细胞提取物的体外磷酸化中,它强烈磷酸化了110 kDa蛋白的丝氨酸残基。根据氨基酸序列同源性,将110 kDa蛋白初步鉴定为DNA拓扑异构酶I。激酶将110-kDa蛋白磷酸化需要ATP或GTP作为磷酸基团供体。在0.05μg/ ml肝素的浓度下,激酶活性被抑制了50%。因此,这些结果表明,纯化的激酶是CK II蛋白激酶,并且可能参与DNA拓扑异构酶I活性的调节。

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