首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >E1BF is an essential RNA polymerase I transcription factor with an intrinsic protein kinase activity that can modulate rRNA gene transcription.
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E1BF is an essential RNA polymerase I transcription factor with an intrinsic protein kinase activity that can modulate rRNA gene transcription.

机译:E1BF是一种必需的RNA聚合酶I转录因子具有固有的蛋白激酶活性可以调节rRNA基因的转录。

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摘要

We previously described the purification and characterization of E1BF, a rat rRNA gene core promoter-binding factor that consists of two polypeptides of 89 and 79 kDa. When this factor was incubated in the absence of any exogenous protein kinase under conditions optimal for protein phosphorylation, the 79-kDa polypeptide of E1BF was selectively phosphorylated. The labeled phosphate could be removed from the E1BF polypeptide by treatment with calf intestinal alkaline phosphatase or potato acid phosphatase. Elution of the protein from the E1BF-promoter complex formed in an electrophoretic mobility-shift assay followed by incubation of the concentrated eluent with [gamma-32P] ATP resulted in the selective labeling of the 79-kDa band. The E1BF-associated protein kinase did not phosphorylate casein or histone H1. Fraction DE-B, a preparation containing RNA polymerase I and all polymerase I transcription factors (including E1BF), lost polymerase I transcriptional activity when treated with phosphatase. The phosphatase-induced inactivation of polymerase I activity associated with fraction DE-B could be reversed by the addition of purified E1BF. Treatment of purified E1BF with heat, SDS, or an ATP affinity analog eliminated its capacity to reactivate dephosphorylated fraction DE-B. These data demonstrate that (i) polymerase I promoter-binding factor E1BF contains an intrinsic substrate-specific protein kinase and (ii) E1BF is an essential polymerase I transcription factor that can modulate rRNA gene transcription by protein phosphorylation. Further, these studies have provided a direct means to identify a protein kinase or any other enzyme that can interact with a specific DNA sequence.
机译:我们先前描述了E1BF的纯化和特征,E1BF是大鼠rRNA基因核心启动子结合因子,由89 kDa和79 kDa的两个多肽组成。当在不存在任何外源蛋白激酶的条件下将该蛋白在最适合蛋白磷酸化的条件下孵育时,E1BF的79 kDa多肽被选择性地磷酸化。通过用小牛肠碱性磷酸酶或马铃薯酸性磷酸酶处理,可以从E1BF多肽中去除标记的磷酸盐。从在电泳迁移率迁移分析中形成的E1BF启动子复合物中洗脱蛋白质,然后将浓缩的洗脱液与[γ-32P] ATP孵育,从而选择性标记了79 kDa的条带。 E1BF相关的蛋白激酶不会磷酸化酪蛋白或组蛋白H1。含有RNA聚合酶I和所有聚合酶I转录因子(包括E1BF)的组分DE-B在用磷酸酶处理后丧失了聚合酶I的转录活性。磷酸酶诱导的与级分DE-B相关的聚合酶I活性的失活可以通过添加纯化的E1BF来逆转。用热,SDS或ATP亲和类似物处理纯化的E1BF消除了其重新活化脱磷酸级分DE-B的能力。这些数据表明(i)聚合酶I启动子结合因子E1BF包含固有的底物特异性蛋白激酶,并且(ii)E1BF是一种必需的聚合酶I转录因子,可以通过蛋白质磷酸化调节rRNA基因的转录。此外,这些研究提供了直接手段来鉴定蛋白激酶或任何其他可与特定DNA序列相互作用的酶。

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