Hwang Gi-Wook, Furuchi Takemitsu, Naganuma Akira
Laboratory of Molecular and Biochemical Toxicology, Graduate School of Pharmaceutical Sciences, Tohoku University, Sendai 980-8578, Japan.
Biochem Biophys Res Commun. 2007 Nov 23;363(3):873-8. doi: 10.1016/j.bbrc.2007.09.064. Epub 2007 Sep 24.
Overexpression of the ubiquitin-conjugating enzyme Cdc34 conferred strong cadmium resistance on budding yeast. Proteasome activity, which is involved in the degradation of ubiquitinated proteins, was not essential for the acquisition of resistance to cadmium. The overexpression of Cdc34 accelerated the ubiquitination of the transcription factor Met4 and reduced expression of MET25 gene, which is a target of Met4. A MET25-disrupted strain of yeast was more resistant to cadmium than was the wild-type strain, but overexpression of Cdc34 in the MET25-disrupted cells did not affect sensitivity to cadmium. Met25 is an enzyme that catalyzes the synthesis of homocysteine from sulfide (S(2-)) and O-acetylhomocysteine and we detected the increased production of S(2-) upon overexpression of Cdc34. Our results suggest that overexpression of Cdc34 inactivates Met4 and interferes with expression of the MET25, with subsequent production of CdS, which has low toxicity, and, thus, a decrease in the cadmium toxicity.
泛素结合酶Cdc34的过表达赋予了芽殖酵母对镉的强抗性。参与泛素化蛋白降解的蛋白酶体活性对于获得镉抗性并非必需。Cdc34的过表达加速了转录因子Met4的泛素化,并降低了Met4的靶基因MET25的表达。与野生型菌株相比,MET25基因缺失的酵母菌株对镉更具抗性,但在MET25基因缺失的细胞中过表达Cdc34并不影响其对镉的敏感性。Met25是一种催化由硫化物(S(2-))和O-乙酰高半胱氨酸合成高半胱氨酸的酶,我们检测到Cdc34过表达时S(2-)的产量增加。我们的结果表明,Cdc34的过表达使Met4失活并干扰MET25的表达,随后产生低毒性的硫化镉,从而降低了镉的毒性。