Williams Elizabeth H, Bsat Nada, Bonnefoy Nathalie, Butler Christine A, Fox Thomas D
Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY 14853-2703, USA.
Eukaryot Cell. 2005 Feb;4(2):337-45. doi: 10.1128/EC.4.2.337-345.2005.
Mutations affecting the RNA sequence of the first 10 codons of the Saccharomyces cerevisiae mitochondrial gene COX2 strongly reduce translation of the mRNA, which encodes the precursor of cytochrome c oxidase subunit II. A dominant chromosomal mutation that suppresses these defects is an internal in-frame deletion of 67 codons from the gene YDR494w. Wild-type YDR494w encodes a 361-residue polypeptide with no similarity to proteins of known function. The epitope-tagged product of this gene, now named RSM28, is both peripherally associated with the inner surface of the inner mitochondrial membrane and soluble in the matrix. Epitope-tagged Rsm28p from Triton X-100-solubilized mitochondria sedimented with the small subunit of mitochondrial ribosomes in a sucrose gradient containing 500 mM NH4Cl. Complete deletion of RSM28 caused only a modest decrease in growth on nonfermentable carbon sources in otherwise wild-type strains and enhanced the respiratory defect of the suppressible cox2 mutations. The rsm28 null mutation also reduced translation of an ARG8m reporter sequence inserted at the COX1, COX2, and COX3 mitochondrial loci. We tested the ability of RSM28-1 to suppress a variety of cox2 and cox3 mutations and found that initiation codon mutations in both genes were suppressed. We conclude that Rsm28p is a dispensable small-subunit mitochondrial ribosomal protein previously undetected in systematic investigations of these ribosomes, with a positive role in translation of several mitochondrial mRNAs.
影响酿酒酵母线粒体基因COX2前10个密码子RNA序列的突变会强烈降低mRNA的翻译效率,该mRNA编码细胞色素c氧化酶亚基II的前体。一个抑制这些缺陷的显性染色体突变是基因YDR494w内部67个密码子的读框内缺失。野生型YDR494w编码一个361个残基的多肽,与已知功能的蛋白质没有相似性。该基因的表位标记产物,现命名为RSM28,既与线粒体内膜内表面外周相关,又可溶于线粒体基质。在含有500 mM NH4Cl的蔗糖梯度中,来自Triton X-100增溶线粒体的表位标记Rsm28p与线粒体核糖体小亚基一起沉降。在其他方面为野生型的菌株中,RSM28的完全缺失仅导致在非发酵碳源上生长的适度下降,并增强了可抑制的cox2突变的呼吸缺陷。rsm28无效突变也降低了插入COX1、COX2和COX3线粒体基因座的ARG8m报告序列的翻译。我们测试了RSM28-1抑制多种cox2和cox3突变的能力,发现这两个基因中的起始密码子突变都能被抑制。我们得出结论,Rsm28p是一种在这些核糖体的系统研究中先前未被检测到的可有可无的线粒体核糖体小亚基蛋白,在几种线粒体mRNA的翻译中起积极作用。