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Cloning, characterization and expression analysis of glutathione S-transferase from the Antarctic yeast Rhodotorula mucilaginosa AN5

机译:南极叶绿菌丧霉素粘液菌粘虫草菌粘虫草菌粘土素的克隆,表征及表达分析

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The gene for glutathione S-transferase (GST) in Antarctic sea-ice yeast Rhodotorula mucilaginosa AN5 was cloned and expressed in Escherichia coli and named RmGST. Sequence analysis showed that the RmGST gene contained a 843 bp open reading frame, which encoded 280 amino acid residues with a calculated molecular mass of 30.4 kDa and isoelectric point of 5.40. RmGST has the typical C- and N-terminal double domains of glutathione S-transferase. Recombinant RmGST (rRmGST) was expressed in E. coli to produce heterologous protein that had a high specific activity of 60.2 U/mg after purification. The apparent K-m values of rRmGST for glutathione and 1-chloro-2,4-dinitrobenzene were 0.35 mM and 0.40 mM, respectively. Optimum enzyme activity was measured at 35 degrees C and at pH 7.0 and complete inactivation was observed after incubation at 55 degrees C for 60 min rRmGST tolerated high salt concentrations (1.0 M NaCl) and was stable at pH 3.0. Additionally, the recombinant protein nearly kept whole activity in Hg2+ and Mn2+, and could tolerate Ca2+, Cu2+, Mg2+, Cd2+, EDTA, thiourea, urea, Tween-80, H2O2 and Triton X-100. Real-time quantitative PCR showed that relative expression of the GST gene was significantly increased under Cu2+ and low temperature stress. These results indicate that rRmGST is a typical low thermostable enzyme, while its other characteristics, heavy metal and low temperature tolerance, might be related to its Antarctic home environment.
机译:克隆了南极海冰酵母粘液红酵母AN5中谷胱甘肽S-转移酶(GST)基因,并在大肠杆菌中表达,命名为RmGST。序列分析表明,RmGST基因包含一个843bp的开放阅读框,编码280个氨基酸残基,计算分子量为30.4kDa,等电点为5.40。RmGST具有典型的谷胱甘肽S-转移酶C端和N端双结构域。重组RmGST(rRmGST)在大肠杆菌中表达,纯化后产生具有60.2u/mg高比活性的异源蛋白。谷胱甘肽和1-氯-2,4-二硝基苯的rRmGST表观K-m值分别为0.35 mM和0.40 mM。在35℃和pH 7.0下测定最佳酶活性,在55℃下培养60分钟后观察到完全失活。rRmGST耐受高盐浓度(1.0 M NaCl),并在pH 3.0下稳定。此外,重组蛋白在Hg2+和Mn2+中几乎保持全部活性,并能耐受Ca2+、Cu2+、Mg2+、Cd2+、EDTA、硫脲、尿素、吐温-80、H2O2和Triton X-100。实时定量PCR显示,在Cu2+和低温胁迫下,GST基因的相对表达显著增加。这些结果表明,rRmGST是一种典型的低热稳定性酶,而它的其他特性,重金属和耐低温性,可能与它的南极家庭环境有关。

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