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Studying membrane proteins through the eyes of the genetic code revealed a strong uracil bias in their coding mRNAs

机译:通过遗传密码的眼睛研究膜蛋白,发现其编码mRNA中存在强烈的尿嘧啶偏见

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摘要

Posttranscriptional processes often involve specific signals in mRNAs. Because mRNAs of integral membrane proteins across evolution are usually translated at distinct locations, we searched for universally conserved specific features in this group of mRNAs. Our analysis revealed that codons of very hydrophobic amino acids, highly represented in integral membrane proteins, are composed of 50% uracils (U). As expected from such a strong U bias, the calculated U profiles of mRNAs closely resemble the hydrophobicity profiles of their encoded proteins and may designate genes encoding integral membrane proteins, even in the absence of information on ORFs. We also show that, unexpectedly, the U-richness phenomenon is not merely a consequence of the codon composition of very hydrophobic amino acids, because counterintuitively, the relatively hydrophilic serine and tyrosine, also encoded by U-rich codons, are overrepresented in integral membrane proteins. Interestingly, although the U-richness phenomenon is conserved, there is an evolutionary trend that minimizes usage of U-rich codons. Taken together, the results suggest that U-richness is an evolutionarily ancient feature of mRNAs encoding integral membrane proteins, which might serve as a physiologically relevant distinctive signature to this group of mRNAs.
机译:转录后过程通常涉及mRNA中的特定信号。由于跨进化的完整膜蛋白的mRNA通常在不同的位置翻译,因此我们在这组mRNA中搜索了普遍保守的特定特征。我们的分析表明,高度疏水性氨基酸的密码子在完整的膜蛋白中高度代表,由50%尿嘧啶(U)组成。正如从这种强大的U偏见所预期的那样,即使在没有ORF信息的情况下,mRNA的计算U谱也非常类似于其编码蛋白的疏水谱,并且可以指定编码整合膜蛋白的基因。我们还表明,出乎意料的是,富U现象不仅仅是疏水性很高的氨基酸的密码子组成的结果,因为与直觉相反,同样由富U密码子编码的相对亲水的丝氨酸和酪氨酸在完整膜中也过分表达蛋白质。有趣的是,尽管保留了富含U的密码子,但是有一种进化趋势,可以最大限度地减少富含U的密码子的使用。两者合计,结果表明,U丰富性是编码完整膜蛋白的mRNA的一个进化上的古老特征,它可能是这组mRNA的生理相关的独特特征。

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