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Phosphorylation of Xenopus transcription factor IIIA by an oocyte protein kinase CK2.

机译:卵母细胞蛋白激酶CK2使非洲爪蟾转录因子IIIA磷酸化。

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摘要

Transcription factor IIIA (TFIIIA), isolated from the cytoplasmic 7 S ribonucleoprotein complex of Xenopus oocytes, is phosphorylated when incubated with [gamma-(32)P]ATP. This modification is due to a trace kinase activity that remains associated with the factor through several steps of purification. The kinase can use either ATP or GTP, and will phosphorylate casein and phosvitin to the exclusion of TFIIIA. The kinase is reactive with a ten-amino-acid peptide that is a specific substrate for protein kinase CK2 (CK2; formerly casein kinase II). In addition, inhibition of phosphorylation by heparin and stimulation by spermidine indicate that the activity can be ascribed to CK2. Phospho amino acid analysis established that serine is the sole phosphoryl acceptor in TFIIIA. There are four consensus sites for CK2 in TFIIIA; all contain serine residues at the putative site of phosphorylation. TFIIIA immunoprecipitated from oocytes, which were incubated with [(32)P]orthophosphate, is also phosphorylated exclusively on serine residues. Only the cyanogen bromide fragment, which was derived from the N-terminal end of TFIIIA, is labelled in vivo. A recognition sequence for CK2, located at Ser(16) in the beta-turn of the first zinc-finger domain, is the only protein kinase consensus sequence present in this peptide. Assays in vitro with site-specific mutants of TFIIIA established that Ser(16) is the preferred site of phosphorylation, with some secondary modification at Ser(314).
机译:从非洲爪蟾卵母细胞的胞质7 S核糖核蛋白复合物中分离出来的转录因子IIIA(TFIIIA)与[γ-(32)P] ATP孵育时会被磷酸化。该修饰归因于微量激酶活性,该活性在几个纯化步骤中仍与该因子相关。该激酶可以使用ATP或GTP,并将磷酸化酪蛋白和磷酸磷脂,从而排除TFIIIA。该激酶与十个氨基酸的肽反应,该肽是蛋白质激酶CK2(CK2;以前的酪蛋白激酶II)的特异性底物。另外,肝素对磷酸化的抑制和亚精胺的刺激表明该活性可归因于CK2。磷酸氨基酸分析确定,丝氨酸是TFIIIA中唯一的磷酸基受体。 TFIIIA中有四个CK2共有位点。都在假定的磷酸化位点含有丝氨酸残基。从卵母细胞免疫沉淀的TFIIIA与[(32)P]正磷酸盐一起孵育,也仅在丝氨酸残基上被磷酸化。在体内仅标记了源自TFIIIA N末端的溴化氰片段。 CK2的识别序列位于第一个锌指结构域的β-转角处的Ser(16),是该肽中唯一的蛋白激酶共有序列。用TFIIIA的位点特异性突变体进行的体外测定确定,Ser(16)是磷酸化的首选位点,在Ser(314)处有一些二级修饰。

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