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Sequence analysis of mitochondrial DNA in a mouse cell line resistant to chloramphenicol and oligomycin.

机译:对氯霉素和寡霉素具有抗性的小鼠细胞系中线粒体DNA的序列分析。

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摘要

A mouse L-cell line, designated 111-OB3, is described which is resistant to two drugs, chloramphenicol and oligomycin. The cells contain two types of mitochondrial DNA molecules, in roughly equal proportions, which differ in that one is cleaved by endonuclease EcoRI at a novel site within the coding sequence for subunit 6 of the mitochondrial ATPase (ATPase-6). Sequence analysis reveals that the cleavage site was created by a single transversion which predicts a replacement of valine in the wild-type ATPase-6 by glutamic acid. The replacement occurs in a hydrophobic amino acid sequence which is highly conserved in mouse, human, and bovine proteins. The position of the replacement is similar to a substitution observed in one class of yeast mutants resistant to oligomycin. Both of the mitochondrial DNA molecules in 111-OB3 also have a single nucleotide change in the gene encoding the large (16S) rRNA. These observations are consistent with the hypothesis that oligomycin resistance in mammalian cells can be cytoplasmically determined and can result from alterations in ATPase-6. The appearance of the mutation before selection in oligomycin suggests a model for the origin of mitochondrial mutations in mammalian cells.
机译:描述了命名为111-OB3的小鼠L细胞系,其对氯霉素和寡霉素两种药物具有抗性。该细胞含有两种大致相等比例的线粒体DNA分子,不同之处在于一种被线粒体ATPase(ATPase-6)亚基6编码序列内新位点的核酸内切酶EcoRI切割。序列分析揭示了该切割位点是由单个转化产生的,该转化预测谷氨酸替代野生型ATPase-6中的缬氨酸。替换发生在疏水氨基酸序列中,该序列在小鼠,人类和牛蛋白中高度保守。置换的位置类似于在一类对寡霉素具有抗性的酵母突变体中观察到的置换。 111-OB3中的两个线粒体DNA分子在编码大(16S)rRNA的基因中也都有一个单核苷酸变化。这些观察结果与以下假设相一致:哺乳动物细胞中的寡霉素抗性可以通过细胞质确定,并且可以由ATPase-6的改变引起。在寡霉素中选择之前突变的出现提示了哺乳动物细胞中线粒体突变起源的模型。

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