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A recoding element that stimulates decoding of UGA codons by Sec tRNA([Ser]Sec)

机译:刺激Sec tRNA([Ser] Sec)解码UGA密码子的编码元件

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摘要

Selenocysteine insertion during decoding of eukaryotic selenoprotein mRNA requires several trans-acting factors and a cis-acting selenocysteine insertion sequence (SECIS) usually located in the 39 UTR. A second cis-acting selenocysteine codon redefinition element (SRE) has recently been described that resides near the UGA-Sec codon of selenoprotein N (SEPN1). Similar phylogenetically conserved elements can be predicted in a subset of eukaryotic selenoprotein mRNAs. Previous experimental analysis of the SEPN1 SRE revealed it to have a stimulatory effect on readthrough of the UGA-Sec codon, which was not dependent upon the presence of a SECIS element in the 39 UTR; although, as expected, readthrough efficiency was further elevated by inclusion of a SECIS. In order to examine the nature of the redefinition event stimulated by the SEPN1 SRE, we have modified an experimentally tractable in vitro translation system that recapitulates efficient selenocysteine insertion. The results presented here illustrate that the SRE element has a stimulatory effect on decoding of the UGA-Sec codon by both the methylated and unmethylated isoforms of Sec tRNA([Ser]Sec), and confirm that efficient selenocysteine insertion is dependent on the presence of a 3'-UTR SECIS. The variation in recoding elements predicted near UGA-Sec codons implies that these elements may play a differential role in determining the amount of selenoprotein produced by acting as controllers of UGA decoding efficiency.
机译:真核硒蛋白mRNA解码过程中的硒代半胱氨酸插入需要几个反式作用因子和一个顺式作用的硒代半胱氨酸插入序列(SECIS),通常位于39个UTR中。最近已经描述了第二种顺式作用的硒代半胱氨酸密码子重定义元件(SRE),其位于硒蛋白N(SEPN1)的UGA-Sec密码子附近。可以在真核硒蛋白mRNA的子集中预测相似的系统发育保守元件。先前对SEPN1 SRE进行的实验分析表明,它对UGA-Sec密码子的通读具有刺激作用,这不依赖于39 UTR中SECIS元素的存在。尽管如预期的那样,通过包含SECIS可以进一步提高通读效率。为了检查SEPN1 SRE刺激的重定义事件的性质,我们修改了一个实验易处理的体外翻译系统,该系统概括了有效的硒代半胱氨酸插入。此处显示的结果表明,SRE元件对Sec tRNA([Ser] Sec)的甲基化和未甲基化同工型均具有UGA-Sec密码子解码的刺激作用,并证实有效的硒代半胱氨酸插入取决于Sec tRNA的存在。 3'-UTR SECIS。预测在UGA-Sec密码子附近的编码元件的变化意味着,这些元件可能在确定作为UGA解码效率的控制器而产生的硒蛋白量中起不同作用。

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