首页> 外文期刊>Ukrainian Biochemical Journal >Cloning and functional analysis of the GSH1/MET1 gene complementing cysteine and glutathione auxotrophy of the methylotrophic yeast Hansenula polymorpha
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Cloning and functional analysis of the GSH1/MET1 gene complementing cysteine and glutathione auxotrophy of the methylotrophic yeast Hansenula polymorpha

机译:甲基营养型多形汉逊酵母半胱氨酸和谷胱甘肽营养缺陷型的GSH1 / MET1基因互补的克隆和功能分析

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The Hansenula polymorpha GSH1 / MET1 gene was cloned by complementation of glutathione-dependent growth of H. polymorpha gsh1 mutant isolated previously as N-methyl-N′-nitro-N-nitrosoguanidine (MNNG) resistant and cadmium ion sensitive clone. The H. polymorpha GSH1 gene was capable of restoring cadmium ion resistance, MNNG sensitivity, normal glutathione level and cell proliferation on minimal media without addition of cysteine or glutathione, when introduced into the gsh1 mutant cells. It was shown that the H. polymorpha GSH1 gene has homology to the Saccharomyces cerevisiae MET1 gene encoding S-adenosyl-L-methionine uroporphyrinogen III transmethylase, responsible for the biosynthesis of sulfite reductase cofactor, sirohaem. The H. polymorpha GSH1 / MET1 gene deletion cassette ( Hpgsh1/met1::ScLEU2 ) was constructed and corresponding null mutants were isolated. Crossing data of the point gsh1 and null gsh1/met1 mutants demonstrated that both alleles were located to the same gene. The null gsh1/met1 mutant showed total growth restoration on minimal media supplemented with cysteine or glutathione as a sole sulfur source, but not with inorganic (sulfate, sulfite) or organic (methionine, S-adenosylmethionine) sources of sulfur. Moreover, both the point gsh1 and null gsh1/met1 mutants displayed increased sensitivity to the toxic carbon substrate methanol, formaldehyde, organic peroxide and cadmium ions.
机译:多形汉逊酵母GSH1 / MET1基因是通过补充谷胱甘肽依赖性生长的多形汉逊酵母gsh1突变体而克隆的,该突变体以前是作为耐N-甲基-N'-硝基-N-亚硝基胍(MNNG)和镉离子敏感的克隆而分离的。当引入gsh1突变细胞时,多形汉逊酵母GSH1基因能够在不添加半胱氨酸或谷胱甘肽的最小培养基上恢复镉离子抗性,MNNG敏感性,正常的谷胱甘肽水平和细胞增殖。结果表明,多形汉逊酵母GSH1基因与酿酒酵母MET1编码S-腺苷-L-蛋氨酸尿卟啉原III转甲基酶的基因具有同源性,负责亚硫酸盐还原酶辅因子西罗海姆的生物合成。构建了多形汉逊酵母GSH1 / MET1基因缺失盒(Hpgsh1 / met1 :: ScLEU2),并分离了相应的无效突变体。点gsh1和无效gsh1 / met1突变体的交叉数据表明,两个等位基因都位于同一基因上。无效的gsh1 / met1突变体在补充半胱氨酸或谷胱甘肽作为唯一硫源的基本培养基上显示了全部生长恢复,但没有无机(硫酸盐,亚硫酸盐)或有机(蛋氨酸,S-腺苷甲硫氨酸)源的培养基。此外,点gsh1和无效gsh1 / met1突变体均显示出对有毒碳底物甲醇,甲醛,有机过氧化物和镉离子的敏感性增加。

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