首页> 外文期刊>Molecular and Cellular Biology >U-rich sequence-binding proteins (URBPs) interacting with a 20-nucleotide U-rich sequence in the 3' untranslated region of c-fos mRNA may be involved in the first step of c-fos mRNA degradation.
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U-rich sequence-binding proteins (URBPs) interacting with a 20-nucleotide U-rich sequence in the 3' untranslated region of c-fos mRNA may be involved in the first step of c-fos mRNA degradation.

机译:与c-fos mRNA的3'非翻译区中的20个核苷酸的富含U序列的U-rich序列结合蛋白(URBPs)可能参与c-fos mRNA降解的第一步。

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Rapid decay of the c-fos transcript plays a critical role in controlling transforming potential of the c-fos proto-oncogene. One of the mRNA instability determinants is a 75-nucleotide AU-rich element (ARE) present in the 3' untranslated region of the c-fos transcript. It appears to control two steps in the process of c-fos mRNA degradation: removal of the poly(A) tail, which does not require the AUUUA motifs, and subsequent degradation of deadenylated mRNA, which appears to be dependent on the AUUUA motifs. In this study, we report the identification of four U-rich sequence binding proteins (URBPs) that specifically interact with a 20-nucleotide U-rich sequence within the c-fos ARE. Gel mobility shift assay and competition experiments showed that these protein factors form three specific band-shifted complexes with the c-fos ARE. Binding activity of one of the protein factors, a 37-kDa protein, is significantly affected by serum induction and by pretreatment of cells with drugs known to stabilize many of the immediate-early gene mRNAs. Combining UV cross-linking with a new approach, designated sequential RNase digestion, we were able to better determine the molecular masses of these cellular proteins. The binding sites for the four proteins were all mapped to a 20-nucleotide U-rich sequence located at the 3' half of the c-fos ARE, which contains no AUUUA pentanucleotides but stretches of uridylate residues. Single U-to-A point mutations in each of the three AUUUA motifs within the c-fos ARE have little effect on formation of the mobility-shifted complexes. Our data indicate c-fos ARE-protein interaction involves recognition of U stretches rather than recognition of the AUUUA motifs. We propose that UTBP binding may be involved in the first step, removal of the Poly(A) tail, in the c-fos ARE-mediated decay pathway.
机译:c-fos转录本的快速衰减在控制c-fos原癌基因的转化潜力中起着关键作用。 mRNA不稳定性决定因素之一是存在于c-fos转录本3'非翻译区的富含75个核苷酸的AU富集元件(ARE)。它似乎控制c-fos mRNA降解过程中的两个步骤:去除不需要AUUUA模体的poly(A)尾巴,以及随后降解的腺苷酸化mRNA,后者似乎取决于AUUUA模体。在这项研究中,我们报告了与c-fos ARE中与20个核苷酸的U富集序列特异性相互作用的4个U富集序列结合蛋白(URBPs)的鉴定。凝胶迁移率迁移分析和竞争实验表明,这些蛋白质因子与c-fos ARE形成了三个特定的带移复合物。一种蛋白质因子(37 kDa蛋白质)的结合活性受血清诱导和已知的能稳定许多早期基因mRNA的药物预处理对细胞的显着影响。将UV交联与一种称为连续RNase消化的新方法相结合,我们能够更好地确定这些细胞蛋白的分子量。四种蛋白质的结合位点全部定位到位于c-fos ARE 3'一半的20个核苷酸的富含U的序列,该序列不包含AUUUA五核苷酸,而是一段尿嘧啶残基。 c-fos ARE中三个AUUUA基序中每个基序中的单个U到A点突变对迁移率移动的复合物的形成几乎没有影响。我们的数据表明c-fos ARE蛋白相互作用涉及U延伸的识别,而不是AUUUA基序的识别。我们建议UTBP绑定可能参与第一步,在c-fos ARE介导的衰变途径中去除Poly(A)尾巴。

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