Tohoyama H, Tomoyasu T, Inouhe M, Joho M, Murayama T
Department of Biology, Faculty of Science, Ehime University, Matsuyama, Japan.
Curr Genet. 1992 Apr;21(4-5):275-80. doi: 10.1007/BF00351682.
A cadmium-resistant strain of Saccharomyces cerevisiae produces a cadmium metallothionein with the same characteristics as the copper metallothionein that is encoded by CUP1 in a copper-resistant strain. The structural gene for metallothionein from the cadmium-resistant strain resembles CUP1 in terms of the fragmentation patterns generated by restriction enzymes. Furthermore, the gene may be amplified as 2.0 kb repeating units in both the cadmium-resistant and the copper-resistant strains. However, transformants with a plasmid that carried the metallothionein gene from the cadmium-resistant strain were resistant to copper but not to cadmium. It appears that the same metallothionein gene, CUP1, is amplified in both cadmium- and copper-resistant yeasts. However, the mechanism for the cadmium-specific inducibility of the gene may be restricted to the cadmium-resistant strain.
一株抗镉的酿酒酵母产生一种镉金属硫蛋白,其特性与抗铜菌株中由CUP1编码的铜金属硫蛋白相同。来自抗镉菌株的金属硫蛋白的结构基因在限制性内切酶产生的片段模式方面与CUP1相似。此外,该基因在抗镉和抗铜菌株中均可作为2.0 kb的重复单元进行扩增。然而,携带来自抗镉菌株的金属硫蛋白基因的质粒转化体对铜有抗性,但对镉没有抗性。似乎相同的金属硫蛋白基因CUP1在抗镉和抗铜酵母中均有扩增。然而,该基因镉特异性诱导的机制可能仅限于抗镉菌株。