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核蛋白激酶NII对脱氧核糖核酸依赖性核糖核酸聚合酶II的磷酸化作用:核糖核酸合成增强的机制

Phosphorylation of deoxyribonucleic acid dependent RNA polymerase II by nuclear protein kinase NII: mechanism of enhanced ribonucleic acid synthesis.

作者信息

Stetler D A, Rose K M

出版信息

Biochemistry. 1982 Jul 20;21(15):3721-8. doi: 10.1021/bi00258a030.

Abstract

RNA polymerase II was purified from Morris hepatoma 3924A by a series of ion-exchange and affinity column chromatographic fractionations, followed by sucrose gradient centrifugation in the presence of 0.3 M KC1. Purified RNA polymerase II had a specific activity of greater than 400 nmol of UMP incorporated (30 min)-1 (mg of protein)-1 by using double-stranded DNA as template. The purified enzyme contained five polypeptides (Mr 214 000, 140 000, 33 000, 25 000, and 21 000) that were present in molar quantities and two additional polypeptides (Mr 19 000 and 18 000) that had a combined molar ratio of 1.0. The cyclic AMP independent nuclear protein kinase NII, also purified from hepatoma 3924A, was able to phosphorylate RNA polymerase II polypeptides of Mr 214 000, 140 000, and 21 000. Phosphorylation of the polymerase was accompanied by enhanced transcription of double-stranded DNA, heat-denatured DNA, and poly[d-(A-T)]. The elevation in RNA polymerase activity was dependent upon the presence of hydrolyzable ATP and resulted from an increased number of RNA molecules synthesized in vitro. The average length of RNA chains was not affected by the kinase. Under similar conditions, protein kinase NII also stimulated homologous RNA polymerase I. In contrast to the phosphorylation of polymerase II, modification of polymerase I resulted in an increase in the average size, but not number, of RNA chains synthesized. The specificity of the NII kinase-catalyzed reaction was demonstrated by the inability of another homologous protein kinase, NI, to phosphorylate or activate RNA polymerase II.

摘要

通过一系列离子交换和亲和柱层析分级分离,随后在0.3M KCl存在下进行蔗糖梯度离心,从莫里斯肝癌3924A中纯化出RNA聚合酶II。以双链DNA为模板时,纯化的RNA聚合酶II的比活性大于400 nmol UMP掺入量(30分钟)-1(毫克蛋白)-1。纯化的酶含有以摩尔量存在的五种多肽(分子量214000、140000、33000、25000和21000)以及另外两种多肽(分子量19000和18000),它们的摩尔比总和为1.0。同样从肝癌3924A中纯化出的环磷酸腺苷非依赖性核蛋白激酶NII能够磷酸化分子量为214000、140000和21000的RNA聚合酶II多肽。聚合酶的磷酸化伴随着双链DNA、热变性DNA和聚[d-(A-T)]转录的增强。RNA聚合酶活性的升高依赖于可水解ATP的存在,并且是由于体外合成的RNA分子数量增加所致。RNA链的平均长度不受该激酶的影响。在相似条件下,蛋白激酶NII也刺激同源的RNA聚合酶I。与聚合酶II的磷酸化不同,聚合酶I的修饰导致合成的RNA链平均大小增加,但数量未增加。另一种同源蛋白激酶NI无法磷酸化或激活RNA聚合酶II,这证明了NII激酶催化反应的特异性。

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