Analysis of a novel DNA-binding protein kinase CKII-like enzyme of Chironomus cells.

J Stigare, N Buddelmeijer, A Pigon, E Egyházi
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Abstract

We have previously described a Chironomus tentans nuclear 42 kDa phosphoprotein preferentially associated with transcriptionally active chromatin. In an attempt to purify and identify the kinase responsible for the phosphorylation of the 42 kDa protein, a casein-phosvitin affinity chromatography was used. Unexpectedly, in the eluted kinase fraction, a novel 42 kDa casein kinase, designated protein kinase CK42, with a kinase activity similar, but not identical, to protein kinase CKII, could be identified. In other studies, a nuclear protein that comigrates with protein kinase CK42 in electrophoresis and is capable to bind different gene promoters in single-stranded forms in a sequence-selective manner was found. The observations that both protein kinase and ssDNA-binding activities could be ascribed to a 42 kDa protein raised the possibility that the ssDNA-binding 42 kDa phosphoprotein is a protein kinase. By specific ssDNA-binding affinity chromatography, using a biotinylated oligodeoxyribonucleotide promoter probe and Streptavidine-agarose matrix, evidence that both activities arise from the same protein molecules was obtained. The similarity in the enzyme activities between protein kinase CK42 and CKII raised the question of whether the former was an alpha subunit of the latter. To provide an answer to this issue, CKII, isolated and purified from an epithelial cell line of C. tentans, was characterized and compared with protein kinase CK42 purified from the same cell system. Like other purified CKII preparations, CKII from Chironomus is able to use ATP or GTP for phosphorylation of casein and phosvitin, and its activity is strongly inhibited by heparin and the transcription inhibitor 5,6-dichloro-1-beta-D-ribofuranosylbenzimidazole (DRB). However, the heparin and DRB sensitivities of protein kinase CKII were substantially higher than those of the protein kinase CK42. Due to their differential solubilities in NaCl and (NH4)2SO4 solutions, individual alpha and beta subunit pools of CKII could be detected. More than 80% of the nuclear alpha subunit was insoluble in 0.35 M NaCl, while all individual beta subunit were solubilized under the same conditions suggesting that a major portion of the nuclear CKII alpha subunit does not form heterooligomeric structures with the beta subunit, but binds tightly to nuclear components, probably to chromatin. The biochemical and immunological data taken together strongly suggest that CK42 is a novel DNA-binding protein kinase that is not the alpha subunit of CKII.

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手蛾细胞中一种新的dna结合蛋白激酶ckii样酶的分析。
我们之前已经描述了一个Chironomus tentans核42 kDa磷酸化蛋白优先与转录活性染色质相关。为了纯化和鉴定负责42 kDa蛋白磷酸化的激酶,使用了酪蛋白-磷维素亲和层析法。出乎意料的是,在洗脱的激酶片段中,可以鉴定出一种新的42 kDa酪蛋白激酶,称为蛋白激酶CK42,其激酶活性与蛋白激酶CKII相似,但不完全相同。在其他研究中,发现了一种在电泳中与蛋白激酶CK42同源的核蛋白,能够以序列选择性的方式以单链形式结合不同的基因启动子。观察到蛋白激酶和ssdna结合活性都可以归因于一个42 kDa蛋白,这提出了结合ssdna的42 kDa磷酸化蛋白是一种蛋白激酶的可能性。通过特异性的ssdna结合亲和层析,使用生物素化寡脱氧核糖核苷酸启动子探针和链亲和-琼脂糖基质,获得了两种活性来自相同蛋白质分子的证据。蛋白激酶CK42和CKII之间酶活性的相似性提出了前者是否为后者的α亚基的问题。为了解决这一问题,我们从一株蚕豆上皮细胞系中分离纯化了CKII,并对其进行了表征,并与从同一细胞系统中纯化的蛋白激酶CK42进行了比较。与其他纯化的CKII制剂一样,来自Chironomus的CKII能够利用ATP或GTP磷酸化酪蛋白和磷维素,其活性受到肝素和转录抑制剂5,6-二氯-1- β -d -核糖呋喃基苯并咪唑(DRB)的强烈抑制。然而,蛋白激酶CKII对肝素和DRB的敏感性明显高于蛋白激酶CK42。由于CKII在NaCl和(NH4)2SO4溶液中的溶解度不同,可以检测到CKII的α和β亚基库。超过80%的核α亚基在0.35 M NaCl中不溶,而所有的β亚基在相同的条件下都被溶解,这表明核CKII α亚基的大部分不与β亚基形成异聚结构,而是与核成分紧密结合,可能与染色质结合。生化和免疫学数据表明,CK42是一种新的dna结合蛋白激酶,而不是CKII的α亚基。
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