首页> 美国卫生研究院文献>Journal of Bacteriology >Note: Expression of Two Glutathione S-Transferase Genes in the Yeast Issatchenkia orientalis Is Induced by o-Dinitrobenzene during Cell Growth Arrest
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Note: Expression of Two Glutathione S-Transferase Genes in the Yeast Issatchenkia orientalis Is Induced by o-Dinitrobenzene during Cell Growth Arrest

机译:注意:邻苯二硝基苯诱导细胞生长停滞期间在东方伊萨酵母中的两个谷胱甘肽S-转移酶基因的表达。

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摘要

Glutathione S-transferases (GSTs) Y-1 and Y-2 from the yeast Issatchenkia orientalis were purified by passage through a glutathione-agarose column, and the cDNA for GST Y-1 was cloned and sequenced. The deduced amino acid sequence consisted of 188 residues with a total calculated molecular mass of 21,001 Da and showed 36.7% identity to that of GST Y-2, another GST isoenzyme expressed in this strain. Escherichia coli DH5α transformed with pUC119 harboring the GST Y-1 gene under the control of the lac promoter exhibited 29-fold-higher GST activity than the same strain with pUC119. Northern blot analysis revealed that both genes were highly expressed in cells cultured in the presence of 200 μM o-dinitrobenzene (DNB), one of the substrates of GST, while only the GST Y-1 gene was expressed, and only slightly, under normal (DNB-free) culture conditions. The DNB in the medium arrested cell growth until it was reduced by conjugation with reduced glutathione. Kinetic analysis of GST gene expression during detoxification of DNB revealed that the levels of expression of both genes were elevated within 3 h after the addition of DNB and that they further increased until 12 h postaddition. The levels of expression of both genes were decreased markedly when the DNB concentration in the culture medium was lowered. These results suggest that I. orientalis cells sense xenobiotics and arrest cell growth as a mechanism for preventing the induction of mutations by these compounds, while the levels of expression of the GST genes are up-regulated for detoxification.
机译:通过穿过谷胱甘肽-琼脂糖柱纯化来自东方伊萨氏酵母的谷胱甘肽S-转移酶(GST)Y-1和Y-2,并克隆和测序GST Y-1的cDNA。推导的氨基酸序列由188个残基组成,总计算分子量为21,001 Da,与该菌株中表达的另一种GST同工酶GST Y-2显示出36.7%的同一性。在lac启动子的控制下,用带有GST Y-1基因的pUC119转化的大肠杆菌DH5α的GST活性比带有pUC119的相同菌株高29倍。 Northern印迹分析表明,两个基因均在存在200μM邻二硝基苯(DNB)(GST的底物之一)的情况下培养的细胞中高表达,而在正常情况下仅表达GST Y-1基因,而仅表达少量(无DNB)培养条件。培养基中的DNB会阻止细胞生长,直到通过与还原型谷胱甘肽结合而降低。在DNB解毒过程中GST基因表达的动力学分析表明,在添加DNB后3小时内,两个基因的表达水平均升高,并且在添加后12小时内进一步升高。当培养基中DNB浓度降低时,两个基因的表达水平均显着降低。这些结果表明,东方I.细胞感觉到异种生物并阻止细胞生长,作为防止这些化合物引起突变的机制,而GST基因的表达水平被上调以进行解毒。

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