Yu W, Santhanagopalan V, Sewell A K, Jensen L T, Winge D R
Department of Medicine, University of Utah Health Science Center, Salt Lake City 84132.
J Biol Chem. 1994 Aug 19;269(33):21010-5.
The relationship of yeast metallothionein (MT) and (gamma EC)nG isopeptides (phytochelatins) in metal ion buffering was assessed. The effect of constitutive expression of yeast metallothionein (MT) genes on accumulation of metal-(gamma EC)nG isopeptide (phytochelatin) complexes was analyzed in Candida glabrata and Schizosaccharomyces pombe cultures incubated in the presence of cadmium salts. Constitutive expression of the Saccharomyces cerevisiae MT (CUP1) gene inhibited the accumulation of metal-phytochelatin complexes in both C. glabrata and S. pombe. Intracellular Cd(II) sequestration occurred by formation of CdMT complexes. Phytochelatin (gamma EC)nG complexes appear to function in metal buffering in cells when MT genes are not present or expressed. A third condition in which metal-(gamma EC)nG complexes are observed is when constitutively expressed MT does not accumulate. We observed that C. glabrata lacking the AMT1 gene necessary for copper induction of the MT genes expressed MTII constitutively, but this expression does not lead to CdMTII accumulation. Only Cd-(gamma EC)nG complexes accumulate. Likewise, metal exposed cultures of S. cerevisiae (cup1) transformed with C. glabrata MTII under the constitutive ADH1 promoter resulted in constitutive expression of MTII and accumulation of CuMTII complexes but no CdMTII complexes. The inability of constitutively expressed C. glabrata MTII to buffer Cd(II) ions may arise in part from an inherent kinetic lability of CdMTII complexes. Incubation of ZnMTII with a metallochromic chelator, 4-(2-pyridylazo)resorcinol resulted in greater Zn(II) loss than Zn(II) complexes with CUP1 MT and C. glabrata MTI. C. glabrata MTII appears to be the first MT described which forms an unstable Cd(II) complex.
评估了酵母金属硫蛋白(MT)与(γEC)nG 异肽(植物螯合素)在金属离子缓冲中的关系。在镉盐存在下培养的光滑念珠菌和粟酒裂殖酵母培养物中,分析了酵母金属硫蛋白(MT)基因的组成型表达对金属 -(γEC)nG 异肽(植物螯合素)复合物积累的影响。酿酒酵母 MT(CUP1)基因的组成型表达抑制了光滑念珠菌和粟酒裂殖酵母中金属 - 植物螯合素复合物的积累。细胞内 Cd(II)通过形成 CdMT 复合物而被螯合。当 MT 基因不存在或不表达时,植物螯合素(γEC)nG 复合物似乎在细胞的金属缓冲中起作用。观察到金属 -(γEC)nG 复合物的第三种情况是组成型表达的 MT 不积累时。我们观察到,缺乏 MT 基因铜诱导所需的 AMT1 基因的光滑念珠菌组成型表达 MTII,但这种表达不会导致 CdMTII 积累。只有 Cd -(γEC)nG 复合物积累。同样,在组成型 ADH1 启动子下用光滑念珠菌 MTII 转化的酿酒酵母(cup1)的金属暴露培养物导致 MTII 的组成型表达和 CuMTII 复合物的积累,但没有 CdMTII 复合物。组成型表达的光滑念珠菌 MTII 无法缓冲 Cd(II)离子,这可能部分源于 CdMTII 复合物固有的动力学不稳定性。用金属显色螯合剂 4 -(2 - 吡啶偶氮)间苯二酚孵育 ZnMTII 导致的 Zn(II)损失比 Zn(II)与 CUP1 MT 和光滑念珠菌 MTI 的复合物更大。光滑念珠菌 MTII 似乎是所描述的第一种形成不稳定 Cd(II)复合物的 MT。