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The CUG codon is decoded in vivo as serine and not leucine in Candida albicans.

机译:在白色念珠菌中CUG密码子在体内被解码为丝氨酸而不是亮氨酸。

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摘要

Previous studies have shown that the yeast Candida albicans encodes a unique seryl-tRNA(CAG) that should decode the leucine codon CUG as serine. However, in vitro translation of several different CUG-containing mRNAs in the presence of this unusual seryl-tRNA(CAG) result in an apparent increase in the molecular weight of the encoded polypeptides as judged by SDS-PAGE even though the molecular weight of serine is lower than that of leucine. A possible explanation for this altered electrophoretic mobility is that the CUG codon is decoded as modified serine in vitro. To elucidate the nature of CUG decoding in vivo, a reporter system based on the C. albicans gene (RBP1) encoding rapamycin-binding protein (RBP), coupled to the promoter of the C. albicans TEF3 gene, was utilized. Sequencing and mass-spectrometry analysis of the recombinant RBP expressed in C. albicans demonstrated that the CUG codon was decoded exclusively as serine while the related CUU codon was translated as leucine. A database search revealed that 32 out of the 65 C. albicans gene sequences available have CUG codons in their open reading frames. The CUG-containing genes do not belong to any particular gene family. Thus the amino acid specified by the CUG codon has been reassigned within the mRNAs of C. albicans. We argue here that this unique genetic code change in cellular mRNAs cannot be explained by the 'Codon Reassignment Theory'.
机译:先前的研究表明,白色念珠菌酵母编码一种独特的丝氨酸-tRNA(CAG),该蛋白应将亮氨酸密码子CUG解码为丝氨酸。然而,在这种不常见的丝氨酰-tRNA(CAG)存在下,几种不同的含CUG的mRNA的体外翻译导致SDS-PAGE判断编码多肽的分子量明显增加,即使丝氨酸的分子量低于亮氨酸。这种改变的电泳迁移率的可能解释是,CUG密码子在体外被解码为修饰的丝氨酸。为了阐明体内CUG解码的性质,使用了基于白色念珠菌基因(RBP1)的编码雷帕霉素结合蛋白(RBP)的报告系统,并与白色念珠菌TEF3基因的启动子偶联。对在白色念珠菌中表达的重组RBP进行测序和质谱分析表明,CUG密码子仅被解码为丝氨酸,而相关的CUU密码子被翻译为亮氨酸。数据库搜索显示,可用的65个白色念珠菌基因序列中有32个在其开放阅读框中具有CUG密码子。包含CUG的基因不属于任何特定的基因家族。因此,由CUG密码子指定的氨基酸已在白色念珠菌的mRNA内重新分配。我们在这里争论说,细胞mRNA中这种独特的遗传密码变化不能用“密码子重分配理论”来解释。

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