Vincent A, Liebman S W
Department of Biological Sciences, University of Illinois, Chicago 60680.
Genetics. 1992 Oct;132(2):375-86. doi: 10.1093/genetics/132.2.375.
The accurate synthesis of proteins is crucial to the existence of a cell. In yeast, several genes that affect the fidelity of translation have been identified (e.g., omnipotent suppressors, antisuppressors and allosuppressors). We have found that the dominant omnipotent suppressor SUP46 encodes the yeast ribosomal protein S13. S13 is encoded by two similar genes, but only the sup46 copy of the gene is able to fully complement the recessive phenotypes of SUP46 mutations. Both copies of the S13 genes contain introns. Unlike the introns of other duplicated ribosomal protein genes which are highly diverged, the duplicated S13 genes have two nearly identical DNA sequences of 25 and 31 bp in length within their introns. The SUP46 protein has significant homology to the S4 ribosomal protein in prokaryotic-type ribosomes. S4 is encoded by one of the ram (ribosomal ambiguity) genes in Escherichia coli which are the functional equivalent of omnipotent suppressors in yeast. Thus, SUP46 and S4 demonstrate functional as well as sequence conservation between prokaryotic and eukaryotic ribosomal proteins. SUP46 and S4 are most similar in their central amino acid sequences. Interestingly, the alterations resulting from the SUP46 mutations and the segment of the S4 protein involved in binding to the 16S rRNA are within this most conserved region.
蛋白质的精确合成对细胞的生存至关重要。在酵母中,已经鉴定出几个影响翻译保真度的基因(例如,全能抑制基因、反抑制基因和异源抑制基因)。我们发现,显性全能抑制基因SUP46编码酵母核糖体蛋白S13。S13由两个相似的基因编码,但只有该基因的sup46拷贝能够完全互补SUP46突变的隐性表型。S13基因的两个拷贝都含有内含子。与其他高度分化的重复核糖体蛋白基因的内含子不同,重复的S13基因在其内含子中有两个长度分别为25和31 bp的几乎相同的DNA序列。SUP46蛋白与原核型核糖体中的S4核糖体蛋白具有显著的同源性。S4由大肠杆菌中的一个ram(核糖体模糊性)基因编码,这些基因在功能上等同于酵母中的全能抑制基因。因此,SUP46和S4表明原核和真核核糖体蛋白之间在功能以及序列上具有保守性。SUP46和S4在其中心氨基酸序列上最为相似。有趣的是,SUP46突变导致的改变以及S4蛋白中与16S rRNA结合的片段都在这个最保守的区域内。