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中国仓鼠细胞的吐根碱抗性:野生型和突变型核糖体蛋白S14 mRNA的结构

Emetine resistance of Chinese hamster cells: structures of wild-type and mutant ribosomal protein S14 mRNAs.

作者信息

Rhoads D D, Roufa D J

出版信息

Mol Cell Biol. 1985 Jul;5(7):1655-9. doi: 10.1128/mcb.5.7.1655-1659.1985.

Abstract

The Chinese hamster ovary (CHO) cell 40S ribosomal subunit protein S14 provides a unique opportunity to investigate an important mammalian housekeeping gene and its mRNA and protein products. The S14 gene appears to be single copy, and CHO cell S14 mutants have been isolated as emetine-resistant (emtB) clones in tissue culture. Thus, S14 is the only mammalian ribosomal protein whose gene structure and function are amenable to straightforward genetic and biochemical analysis. Recently, we isolated a wild-type Chinese hamster lung cell cDNA clone, pCS14-1, including an almost complete copy of the ribosomal protein S14 message (N. Nakamichi, D. D. Rhoads, and D. J. Roufa, J. Biol. Chem. 258: 13236-13242, 1983). Here we describe comparable cDNAs from wild-type and emtB CHO cells. We report both mRNA and polypeptide sequences of the wild-type and mutant ribosomal protein transcripts. As a consequence of the genetic methods used to obtain our emetine-resistant mutants, the emtB S14 cDNAs differ from wild-type cDNA by single-base changes. Physical and chemical features of polypeptides encoded by the cDNAs are consistent with well-characterized S14 protein polymorphisms. The three emtB mutations analyzed affect two adjacent arginine codons within the very basic S14 carboxyl region, indicating a significant role for this portion of the protein in the function and architecture of the mammalian 40S ribosomal subunit.

摘要

中国仓鼠卵巢(CHO)细胞的40S核糖体亚基蛋白S14为研究一个重要的哺乳动物管家基因及其mRNA和蛋白质产物提供了独特的机会。S14基因似乎是单拷贝的,并且在组织培养中已将CHO细胞S14突变体分离为耐依米丁(emtB)克隆。因此,S14是唯一其基因结构和功能适合直接进行遗传和生化分析的哺乳动物核糖体蛋白。最近,我们分离出一个野生型中国仓鼠肺细胞cDNA克隆pCS14-1,它包含核糖体蛋白S14信息的几乎完整拷贝(N. Nakamichi、D. D. Rhoads和D. J. Roufa,《生物化学杂志》258: 13236 - 13242,1983)。在此我们描述来自野生型和emtB CHO细胞的类似cDNA。我们报告野生型和突变型核糖体蛋白转录本的mRNA和多肽序列。由于用于获得我们的耐依米丁突变体的遗传方法,emtB S14 cDNA与野生型cDNA的差异在于单碱基变化。由这些cDNA编码的多肽的物理和化学特征与特征明确的S14蛋白多态性一致。分析的三个emtB突变影响非常碱性的S14羧基区域内的两个相邻精氨酸密码子,表明该蛋白的这一部分在哺乳动物40S核糖体亚基的功能和结构中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74bd/367284/6ac21b5f20d9/molcellb00103-0124-a.jpg

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