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Ambiguous decoding of the CUG codon alters the functionality of the Candida albicans translation initiation factor 4E

机译:CUG密码子的歧义解码会改变白色念珠菌翻译起始因子4E的功能

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摘要

The eukaryotic translation initiation factor 4E is an essential and highly conserved protein. As a part of the translational machinery, it plays a key role in the recruitment of mRNA via binding to its m"GpppN 5o terminal cap structure. The opportunistic human pathogen Candida albicans is the only known eukaryotic organism with the ability to survive defects in mRNA capping, which suggests unique features of its eIF4E protein. Here, we provide the first experimental evidence of the function of the C. albicans putative gene orf19.7626 as an eIF4E protein. We also show that Ca4ELeup#p#e and Ca4ESerp#p#e protein variants, both of which occur naturally in C. albicans due to the ambiguous decoding of the CUGp#p#e codon, display different sensitivities to elevated temperature. Our results clearly point to the importance of the S4-H4 loop for the function of the Ca4E translation initiation factor, and suggest the possible regulatory role of the codon-reading ambiguity within this loop in C. albicans. We proved Saccharomyces cerevisiae as a useful tool organism for studies of C. albicans translation initiation apparatus.
机译:真核翻译起始因子4E是必需且高度保守的蛋白质。作为翻译机制的一部分,它通过与m“ GpppN 5o末端帽结构结合而在募集mRNA中起关键作用。机会性人类病原体白色念珠菌是唯一已知的能够克服mRNA缺陷的真核生物上限,这表明其eIF4E蛋白具有独特的功能在这里,我们提供了白色假丝酵母推定基因orf19.7626作为eIF4E蛋白的功能的第一个实验证据,还显示了Ca4ELeup#p#e和Ca4ESerp#p由于CUGp#p#e密码子的模棱两可,#e蛋白变体(在白色念珠菌中自然存在)对温度升高表现出不同的敏感性,我们的结果清楚地表明了S4-H4循环对于C.p4蛋白的重要性。 Ca4E翻译起始因子的功能,并暗示在白色念珠菌中该环内的密码子阅读歧义可能具有调节作用,我们证明了酿酒酵母是研究白色念珠菌的有用工具。 ns翻译启动装置。

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