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Restricted Specificity of Xenopus TFIIIA for Transcription of Somatic 5S rRNA Genes

机译:非洲爪蟾TFIIIA的体细胞5S rRNA基因转录的限制的特异性。

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摘要

Xenopus transcription factor IIIA (TFIIIA) is phosphorylated on serine-16 by CK2. Replacements with alanine or glutamic acid were made at this position in order to address the question of whether phosphorylation possibly influences the function of this factor. Neither substitution has an effect on the DNA or RNA binding activity of TFIIIA. The wild-type factor and the alanine variant activate transcription of somatic- and oocyte-type 5S rRNA genes in nuclear extract immunodepleted of endogenous TFIIIA. The glutamic acid variant (S16E) supports the transcription of somatic-type genes at levels comparable to those of wild-type TFIIIA; however, there is no transcription of the oocyte-type genes. This differential behavior of the phosphomimetic mutant protein is also observed in vivo when using early-stage embryos, where this mutant failed to activate transcription of the endogenous oocyte-type genes. Template exclusion assays establish that the S16E mutant binds to the oocyte-type 5S rRNA genes and recruits at least one other polymerase III transcription factor into an inactive complex. Phosphorylation of TFIIIA by CK2 may allow the factor to continue to act as a positive activator of the somatic-type genes and simultaneously as a repressor of the oocyte-type 5S rRNA genes, indicating that there is a mechanism that actively promotes repression of the oocyte-type genes at the end of oogenesis.
机译:爪蟾转录因子IIIA(TFIIIA)在丝氨酸16上被CK2磷酸化。为了解决磷酸化是否可能影响该因子功能的问题,在该位置进行了丙氨酸或谷氨酸的替换。两种取代都不会影响TFIIIA的DNA或RNA结合活性。野生型因子和丙氨酸变体激活内源性TFIIIA免疫耗竭的核提取物中体细胞和卵母细胞型5S rRNA基因的转录。谷氨酸变体(S16E)以与野生型TFIIIA相当的水平支持体细胞型基因的转录。但是,卵母细胞型基因没有转录。当使用早期胚胎时,在体内也观察到了拟磷酸酶突变蛋白的这种差异行为,其中该突变体未能激活内源卵母细胞型基因的转录。模板排除试验确定S16E突变体与卵母细胞型5S rRNA基因结合,并将至少一种其他聚合酶III转录因子募集到无活性的复合物中。 CK2对TFIIIA的磷酸化作用可能使该因子继续充当体细胞型基因的正激活子,同时又充当卵母细胞型5S rRNA基因的阻遏物,表明存在一种机制可积极促进卵母细胞的阻遏型基因发生在卵子形成的末期。

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