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金属硫蛋白-I基因在耐镉小鼠细胞中的扩增。

Amplification of the metallothionein-I gene in cadmium-resistant mouse cells.

作者信息

Beach L R, Palmiter R D

出版信息

Proc Natl Acad Sci U S A. 1981 Apr;78(4):2110-4. doi: 10.1073/pnas.78.4.2110.

Abstract

Friend leukemia cells resistant to cadmium toxicity were selected. More than 70% of total cysteine incorporation in these cells was into the metal-binding protein, metallothionein. We used cDNA and genomic DNA clones containing the metallothionein-I gene to measure the concentration of its mRNA, the rate of gene transcription, and the number of genes. On a per cell basis, optimally induced, cadmium-resistant cells have a 14-fold more metallothionein-I mRNA, a 6-fold higher rate of metallothionein-I gene transcription, and 6-fold more metallothionein-I genes than do nonresistant cells. Metaphase spreads revealed that the resistant cells are nearly tetraploid and contain, on the average, three very small chromosomes that are absent from non-resistant Friend cells.

摘要

选择了对镉毒性具有抗性的弗瑞德白血病细胞。这些细胞中超过70%的总半胱氨酸掺入到金属结合蛋白金属硫蛋白中。我们使用含有金属硫蛋白-I基因的cDNA和基因组DNA克隆来测量其mRNA浓度、基因转录速率和基因数量。在每个细胞的基础上,经过最佳诱导的抗镉细胞比非抗性细胞具有多14倍的金属硫蛋白-I mRNA、高6倍的金属硫蛋白-I基因转录速率和多6倍的金属硫蛋白-I基因。中期染色体铺展显示,抗性细胞几乎是四倍体,平均含有三条非常小的染色体,而非抗性弗瑞德细胞中不存在这些染色体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3fd/319293/165e55e2a231/pnas00655-0155-a.jpg

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