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Nonsense-mediated decay: paving the road for genome diversification

机译:废话介导的衰变:为基因组多样化铺平道路

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摘要

The expression of protein-encoding genes is a complex process culminating in the production of mature mRNA and its translation by the ribosomes. The production of a mature mRNA involves an intricate series of processing steps. The majority of eukaryotic protein-encoding genes contain intron sequences that disrupt the protein-encoding frame, and hence have to be removed from immature mRNA prior to translation into protein. The mechanism involved in the selection of correct splice sites is incompletely understood. A considerable body of evidence suggests that the splicing machinery has suboptimal efficiency and fidelity leading to substantial processing inaccuracy. Here we discuss a recently published article1 that extends observations that cells rely on nonsense-mediated mRNA decay (NMD) to compensate for such suboptimal processing accuracy. Intriguingly these authors provide evidence for a strong selective pressure in favour of premature termination of mRNA translation in the event of intron retention. The analysis presented implies a positive role of NMD in transcript diversification through alternative splicing and suggest that this ancient surveillance mechanism may have co-evolved with intron acquisition born from the need for quality control of splicing patterns. BioEssays 30:926-928, 2008.
机译:蛋白质编码基因的表达是一个复杂的过程,最终导致成熟mRNA的产生以及核糖体的翻译。成熟mRNA的产生涉及一系列复杂的加工步骤。大多数的真核蛋白质编码基因都包含内含子序列,这些内含子序列会破坏蛋白质编码框架,因此在翻译成蛋白质之前必须先从未成熟的mRNA中去除。选择正确的剪接位点的机制尚不完全清楚。大量证据表明,拼接机的效率和保真度欠佳,从而导致严重的加工误差。在这里,我们讨论了最近发表的文章1,该文章扩展了观察结果,即细胞依赖于无义介导的mRNA衰减(NMD)来补偿这种次优的加工精度。有趣的是,这些作者为内含子保留事件提供了强大的选择性压力,支持过早终止mRNA翻译。提出的分析表明,NMD通过替代剪接在转录本多样化中发挥了积极作用,并表明这种古老的监视机制可能与对剪接模式进行质量控制的需求而产生的内含子获取共同发展。 BioEssays 30:926-928,2008。

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