为什么真核生物的起始密码子选择如此精确?

K. Asano
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引用次数: 64

摘要

翻译通常从AUG密码子开始。虽然在原核生物(古生菌和细菌)中允许在GUG和UUG起始,但最近在人类细胞中报道了CUG起始的病例。真核和原核结构域翻译起始的不同严格性很大程度上源于核糖体在肽基- trna结合位点识别密码子的基本问题。每个生命领域特有的起始因子进化为核糖体严格的起始。基于最近关于多因子复合物(MFC)在真核起始过程中的作用的发现,描述了真核起始过程高精度的机制基础。还讨论了非aug起始是否在翻译控制中起作用以及起始密码子的准确性是否在真核生物中受到调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Why is start codon selection so precise in eukaryotes?
Translation generally initiates with the AUG codon. While initiation at GUG and UUG is permitted in prokaryotes (Archaea and Bacteria), cases of CUG initiation were recently reported in human cells. The varying stringency in translation initiation between eukaryotic and prokaryotic domains largely stems from a fundamental problem for the ribosome in recognizing a codon at the peptidyl-tRNA binding site. Initiation factors specific to each domain of life evolved to confer stringent initiation by the ribosome. The mechanistic basis for high accuracy in eukaryotic initiation is described based on recent findings concerning the role of the multifactor complex (MFC) in this process. Also discussed are whether non-AUG initiation plays any role in translational control and whether start codon accuracy is regulated in eukaryotes.
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