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首页> 外文期刊>Molecular biology reports >SBP, SECIS binding protein, binds to the RNA fragment upstream of the Sec UGA codon in glutathione peroxidase mRNA
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SBP, SECIS binding protein, binds to the RNA fragment upstream of the Sec UGA codon in glutathione peroxidase mRNA

机译:SBP,SECIS结合蛋白,与谷胱甘肽过氧化物酶mRNA中Sec UGA密码子上游的RNA片段结合

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摘要

In mammals, most of the selenium contained in the body is present as an unusual amino acid, selenocysteine (Sec), whose codon is UGA. Because the UGA codon is typically recognized as a translation stop signal, it is intriguing how a cell recognizes and distinguishes a UGA Sec codon from a UGA stop codon. For eukaryotic selenoprotein mRNAs, it has been proposed that a conserved stem-loop structure designated the Sec insertion sequence (SECIS) in the 3'-untranslated (3'-UTR) region is required for recognition of UGA as a Sec codon. Some proteins which bind to SECIS (SBP) have been reported. However, it is not clear how the SECIS element in the 3'-UTR can mediate Sec insertion far at the in-frame UGA Sec codons. The idea that there must be a signal near the UGA Sec codon is still considered. Therefore, we searched for a protein which binds to an RNA sequence surrounding the UGA Sec codon on human glutathione peroxidase (GPx) mRNA. We found a protein which strongly bound to the RNA fragment upstream of the UGA Sec codon. However, this protein did not bind to the RNA sequence downstream of the UGA codon. This protein also bound to the SECIS sequence in the 3'-UTR of human GPx, and this binding to SECIS was competed with the RNA fragment upstream of the UGA Sec codon. Comparison of the RNA fragment with the SECIS fragment identified the conserved regions, which appeared in the region upstream of the in-frame UGA Sec codon of Se-protein mRNAs. Thus, this study proposes a novel model to understand the mechanisms of Sec incorporation at the UGA Sec codon, especially the regions upstream of the UGA codon of mRNAs of mammalian selenoproteins. This model explains that the stem-loop structure covering the UGA codon is recognized by SBP and how the UGA Sec codon escapes from attack by eRF of the peptide releasing factor. [References: 34]
机译:在哺乳动物中,体内所含的大多数硒以不寻常的氨基酸硒代半胱氨酸(Sec)的形式存在,其密码子为UGA。由于通常将UGA密码子识别为翻译终止信号,因此它吸引了细胞如何识别和区分UGA Sec密码子与UGA终止密码子。对于真核硒蛋白mRNA,已经提出需要将3'-非翻译(3'-UTR)区域中称为Sec插入序列(SECIS)的保守茎-环结构识别为UGA作为Sec密码子。已经报道了一些与SECIS(SBP)结合的蛋白质。但是,尚不清楚3'-UTR中的SECIS元件如何介导远在帧内UGA Sec密码子上的Sec插入。仍然考虑在UGA Sec密码子附近必须有信号的想法。因此,我们搜索了与人谷胱甘肽过氧化物酶(GPx)mRNA上的UGA Sec密码子周围的RNA序列结合的蛋白质。我们发现了一种蛋白质,该蛋白质与UGA Sec密码子上游的RNA片段牢固结合。但是,该蛋白不与UGA密码子下游的RNA序列结合。该蛋白还与人GPx的3'-UTR中的SECIS序列结合,并且与SECIS的结合与UGA Sec密码子上游的RNA片段竞争。 RNA片段与SECIS片段的比较确定了保守区域,该保守区域出现在Se-蛋白mRNA的框内UGA Sec密码子上游的区域中。因此,本研究提出了一种新颖的模型,以了解Sec掺入UGA Sec密码子的机制,特别是哺乳动物硒蛋白mRNA的UGA密码子上游区域。该模型解释了覆盖UGA密码子的茎环结构被SBP识别,以及UGA Sec密码子如何逃脱eRF对肽释放因子的攻击。 [参考:34]

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