Chang S, Wasmuth J J
Mol Cell Biol. 1983 Mar;3(3):429-38. doi: 10.1128/mcb.3.3.429-438.1983.
Genetic and biochemical experiments have enabled us to more clearly distinguish three genetic loci, emtA, emtB, and emtC, all of which can be altered to give rise to resistance to the protein synthesis inhibitor, emetine, in cultured Chinese hamster cells. Genetic experiments have demonstrated that, unlike the emtB locus, neither the emtA locus nor the emtC locus is linked to chromosome 2 in Chinese hamster cells, clearly distinguishing the latter two genes from emtB. emtA mutants can also be distinguished, biochemically, from emtB and emtC mutants based upon different degrees of cross-resistance to another inhibitor of protein synthesis, cryptopleurine. Two-dimensional gel electrophoretic analysis of ribosomal proteins failed to detect any electrophoretic alterations in ribosomal proteins from emtA or emtC mutants that could be correlated with emetine resistance. However, a distinct electrophoretic alteration in ribosomal protein S14 was observed in an emtB mutant. In addition, the parental Chinese hamster peritoneal cell line of an emtC mutant, and the emtC mutant itself, are apparently heterozygous for an electrophoretic alteration in ribosomal protein L9.
遗传和生化实验使我们能够更清楚地区分三个基因位点,即emtA、emtB和emtC,在培养的中国仓鼠细胞中,所有这些位点都可发生改变,从而产生对蛋白质合成抑制剂依米丁的抗性。遗传实验表明,与emtB位点不同,emtA位点和emtC位点在中国仓鼠细胞中均不与2号染色体相连,这清楚地将后两个基因与emtB区分开来。基于对另一种蛋白质合成抑制剂隐品碱的不同程度的交叉抗性,emtA突变体在生化方面也可与emtB和emtC突变体区分开来。对核糖体蛋白进行二维凝胶电泳分析,未在emtA或emtC突变体的核糖体蛋白中检测到任何与依米丁抗性相关的电泳变化。然而,在一个emtB突变体中观察到核糖体蛋白S14有明显的电泳变化。此外,一个emtC突变体的亲代中国仓鼠腹膜细胞系以及emtC突变体本身,在核糖体蛋白L9的电泳变化方面显然是杂合的。