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Polysome distribution of phospholipid hydroperoxide glutathione peroxidase mRNA: Evidence for a block in elongation at the UGA/selenocysteine codon

机译:磷脂氢过氧化物谷胱甘肽过氧化物酶mRNA的多核糖体分布:在UGA /硒代半胱氨酸密码子的延伸受阻的证据

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The translation of mammalian selenoprotein mRNAs requires the 3' untranslated region that contains a selenocysteine insertion sequence (SECIS) element necessary for decoding an in-frame UGA codon as selenocysteine (Sec), Selenoprotein biosynthesis is inefficient, which may be due to competition between Sec insertion and termination at the UGA/Sec codon, We analyzed the polysome distribution of phospholipid hydroperoxide glutathione peroxidase (PHGPx) mRNA, a member of the glutathione peroxidase family of selenoproteins, in rat hepatoma cell and mouse liver extracts, In linear sucrose gradients, the sedimentation velocity of PHGPx mRNA was impeded compared to CuZn superoxide dismutase (SOD) mRNA, which has a coding region of similar size, Selenium supplementation increased the loading of ribosomes onto PHGPx mRNA, but not CuZn SOD mRNA, To determine whether the slow sedimentation velocity of PHGPx mRNA is due to a block in elongation, we analyzed the polysome distribution of wild-type and mutant mRNAs translated in vitro, Mutation of the UGA/Sec codon to UGU/cysteine increased ribosome loading and protein synthesis. When UGA/Sec was replaced with UAA or when the SECIS element core was deleted, the distribution of the mutant mRNAs was similar to the wild-type mRNA, Addition of SECIS-binding protein SBP2, which is essential for Sec insertion, increased ribosome loading and translation of wild-type PHGPx mRNA, but had no effect on the mutant mRNAs, These results suggest that elongation is impeded at UGA/Sec, and that selenium and SBP2 alleviate this block by promoting Sec incorporation instead of termination. [References: 41]
机译:哺乳动物硒蛋白mRNA的翻译需要3'非翻译区域,该区域包含一个硒半胱氨酸插入序列(SECIS)元素,是硒内半胱氨酸(Sec)解码帧内UGA密码子所必需,硒蛋白的生物合成效率低下,这可能是由于Sec之间的竞争在UGA / Sec密码子的插入和终止处,我们分析了大鼠肝癌细胞和小鼠肝提取物中磷脂酰氢过氧化物谷胱甘肽过氧化物酶家族中硒蛋白的一种成员的磷脂多体分布与具有相似大小编码区的CuZn超氧化物歧化酶(SOD)mRNA相比,PHGPx mRNA的沉降速度受到阻碍,硒的添加增加了PHGPx mRNA上核糖体的负载,而CuZn SOD mRNA没有增加,从而确定沉降速度是否缓慢PHGPx mRNA的表达是由于延伸受阻,我们分析了野生型a的多核糖体分布nd突变体mRNA在体外翻译后,UGA / Sec密码子突变为UGU /半胱氨酸会增加核糖体的负载和蛋白质合成。当用UAA代替UGA / Sec或删除SECIS元件核心时,突变mRNA的分布与野生型mRNA相似,添加SECIS结合蛋白SBP2(对于Sec插入必不可少),增加了核糖体负荷和野生型PHGPx mRNA的翻译,但对突变体mRNA没有影响。这些结果表明,UGA / Sec的延伸受到阻碍,硒和SBP2通过促进Sec掺入而不是终止而减轻了这种阻滞作用。 [参考:41]

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