Wasmuth J J, Hill J M, Vock L S
Department of Biological Chemistry, California College of Medicine, University of California-Irvine 92717.
Mol Cell Biol. 1981 Jan;1(1):58-65. doi: 10.1128/mcb.1.1.58-65.1981.
We have isolated emetine-resistant cell lines from Chinese hamster peritoneal fibroblasts and have shown that they represent a third distinct class or complementation group of emetine-resistant mutants, as determined by three different criteria. These mutants, like those belonging to the two other complementation groups we have previously defined, which were isolated from Chinese hamster lung and Chinese hamster ovary cells, have alterations that directly affect the protein biosynthetic machinery. So far, there is absolute cell line specificity with respect to the three complementation groups, in that all the emetine-resistant mutants we have isolated from Chinese hamster lung cells belong to one complementation group, all those we have isolated from Chinese hamster ovary cells belong to a second complementation group, and all those isolated from Chinese hamster peritoneal cells belong to a third complementation group. Thus, in cultured Chinese hamster cells, mutations in at least three different loci, designated emtA, emtB, and emtC, encoding for different components of the protein biosynthetic machinery, can give rise to the emetine-resistant phenotype.
我们已经从中国仓鼠腹膜成纤维细胞中分离出了抗吐根碱细胞系,并表明根据三种不同标准,它们代表了抗吐根碱突变体的第三个不同类别或互补群。这些突变体,就像我们之前从中国仓鼠肺细胞和中国仓鼠卵巢细胞中分离出的属于其他两个互补群的突变体一样,具有直接影响蛋白质生物合成机制的改变。到目前为止,这三个互补群具有绝对的细胞系特异性,即我们从中国仓鼠肺细胞中分离出所有抗吐根碱突变体都属于一个互补群,从中国仓鼠卵巢细胞中分离出的所有突变体都属于第二个互补群,从中国仓鼠腹膜细胞中分离出的所有突变体都属于第三个互补群。因此,在培养的中国仓鼠细胞中,至少三个不同位点(命名为emtA, emtB和emtC)发生突变,这些位点编码蛋白质生物合成机制的不同组分,可导致抗吐根碱表型。