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线粒体膜系统的组装。MRP1和MRP2,两个编码线粒体核糖体蛋白的酵母核基因。

Assembly of the mitochondrial membrane system. MRP1 and MRP2, two yeast nuclear genes coding for mitochondrial ribosomal proteins.

作者信息

Myers A M, Crivellone M D, Tzagoloff A

出版信息

J Biol Chem. 1987 Mar 5;262(7):3388-97.

PMID:3029111
Abstract

Nuclear respiratory deficient mutants of Saccharomyces cerevisiae impaired in mitochondrial protein synthesis have been screened for lesions in ribosomal protein constituents. Two mutants, each representative of a separate pet complementation group, have been analyzed. One of the mutants, E795, was found to have altered mitochondrial ribosomes as evidenced by the absence of some ribosomal proteins. The second mutant studied, C167, appeared to have more grossly altered ribosomes that could not be isolated by standard preparative procedures. In addition to being defective in mitochondrial protein synthesis, the mutants exhibit an absence of "a" and "b" type cytochromes, are partially blocked in processing of intron bI4 of the apocytochrome b gene, have reduced levels of mitochondrial 15 S rRNA, and convert to rho- and rho 0 mutants at a high frequency. The wild type genes MRP1 and MRP2 were cloned by transformation of the pet mutations in E795 and C167, respectively, with a recombinant plasmid library of wild type yeast genomic DNA. MRP1 codes for a basic protein of 37 kDa with no significant homology to any known prokaryotic or eukaryotic ribosomal protein. MRP2 codes for a 14-kDa polypeptide homologous to protein S14 of the Escherichia coli small ribosomal subunit and to a chloroplast-encoded component of chloroplast ribosomes. The levels of MRP1 and MRP2 mRNAs were examined in glucose-repressed cells and in cells undergoing adaptation to aerobic metabolism of ethanol. The steady state concentrations of the mRNAs increased during the first 3 h of derepression, indicating that expression of these mitochondrial ribosomal protein genes is transcriptionally regulated by glucose in a fashion analogous to respiratory carriers such as cytochrome c.

摘要

已对酿酒酵母中在线粒体蛋白质合成方面受损的核呼吸缺陷型突变体进行筛选,以寻找核糖体蛋白质成分中的损伤。已分析了两个突变体,每个突变体代表一个独立的pet互补群。其中一个突变体E795被发现其线粒体核糖体发生了改变,这可通过某些核糖体蛋白的缺失得以证明。所研究的第二个突变体C167似乎具有更严重改变的核糖体,无法通过标准制备程序分离出来。除了在线粒体蛋白质合成方面存在缺陷外,这些突变体还缺乏“a”型和“b”型细胞色素,在脱辅基细胞色素b基因的内含子bI4加工过程中部分受阻,线粒体15S rRNA水平降低,并以高频率转变为rho - 和rho0突变体。通过分别用野生型酵母基因组DNA的重组质粒文库转化E795和C167中的pet突变,克隆了野生型基因MRP1和MRP2。MRP1编码一种37 kDa的碱性蛋白,与任何已知的原核或真核核糖体蛋白均无明显同源性。MRP2编码一种14 kDa的多肽,与大肠杆菌小核糖体亚基的蛋白S14以及叶绿体核糖体的一种叶绿体编码成分同源。在葡萄糖抑制的细胞以及正在适应乙醇有氧代谢的细胞中检测了MRP1和MRP2 mRNA的水平。在去阻遏的最初3小时内,mRNA的稳态浓度增加,表明这些线粒体核糖体蛋白基因的表达受葡萄糖转录调控,其方式类似于细胞色素c等呼吸载体。

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