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首页> 外文期刊>World Journal of Microbiology and Biotechnology >Glutathione reductase from Brassica rapa affects tolerance and the redox state but not fermentation ability in response to oxidative stress in genetically modified Saccharomyces cerevisiae
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Glutathione reductase from Brassica rapa affects tolerance and the redox state but not fermentation ability in response to oxidative stress in genetically modified Saccharomyces cerevisiae

机译:甘蓝型油菜中的谷胱甘肽还原酶影响转基因酿酒酵母中的耐性和氧化还原状态,但对氧化应激反应的发酵能力没有影响

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To determine whether the exogenous expression of glutathione reductase (GR) from Brassica rapa subsp. pekinensis (BrGR) can reduce the deleterious effects of unfavorable conditions, we constructed a transgenic Saccharomyces cerevisiae strain bearing the GR gene cloned into the yeast expression vector, pVTU260. BrGR expression was confirmed by semi reverse transcriptase-polymerase chain reaction (RT-PCR) analysis, immunoblotting analysis and an enzyme assay. Ectopic BrGR-expression improved cellular glutathione (GSH) homeostasis after higher GSH accumulation in the transgenic yeast than in the wild-type yeast under H2O2-induced oxidative stress. The BrGR-expressing yeast strain induced the activation of metabolic enzymes (Hxt, G6PDH, GAPDH and Ald), antioxidant systems (Gpx, Trx2, Trx3, Trr1, Tsa1 and porin) and molecular chaperones (Hsp104, Hsp90, Hsp70, Hsp42, Hsp26, Grp, Sti1 and Zpr1), which led to lower oxidative protein damage after a reduction in the level of cellular ROS in the BrGR-expressing yeast strain exposed to H2O2 than in the wild-type yeast strain. BrGR-expression increased the ability to adapt and recover from H2O2-induced oxidative stress and various stressors, including heat shock, menadione, tert-butyl hydroperoxide, heavy metals, sodium dodecyl sulfate, ethanol and NaCl, but did not affect fermentation capacity. These results suggest that ectopic BrGR expression confers acquired tolerance by improving proteostasis and redox homeostasis through co-activation of various cell rescue proteins against ROS-induced oxidative stress in yeast cells.
机译:要确定是否从甘蓝型油菜亚种谷胱甘肽还原酶(GR)的外源表达。 pekinensis(BrGR)可以减少不利条件的有害影响,我们构建了带有GR基因的转基因啤酒酵母菌株,该GR基因克隆到酵母表达载体pVTU260中。通过半逆转录酶-聚合酶链反应(RT-PCR)分析,免疫印迹分析和酶测定法确认了BrGR的表达。在H 2 O 2 诱导的氧化胁迫下,转基因酵母中的GSH积累高于野生型酵母,异位BrGR表达改善了细胞的谷胱甘肽(GSH)稳态。表达BrGR的酵母菌株诱导代谢酶(Hxt,G6PDH,GAPDH和Ald),抗氧化剂系统(Gpx,Trx2,Trx3,Trr1,Tsa1和孔蛋白)和分子伴侣(Hsp104,Hsp90,Hsp70,Hsp42,Hsp26 ,Grp,Sti1和Zpr1)降低了暴露于H 2 O 2 2 O 2 诱导的氧化应激和各种应激源(包括热激,甲萘醌,叔丁基氢过氧化物,重金属)适应和恢复的能力。 ,十二烷基硫酸钠,乙醇和NaCl,但不影响发酵能力。这些结果表明异位BrGR表达通过共同活化各种细胞拯救蛋白抵抗ROS诱导的酵母细胞氧化应激而改善蛋白稳态和氧化还原稳态来赋予获得性耐受。

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