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Expression and characterization analysis of type 2 metallothionein from grey mangrove species (Avicennia marina) in response to metal stress

机译:Expression and characterization analysis of type 2 metallothionein from grey mangrove species (avicennia marina) in response to metal stress

摘要

Metallothioneins (MTs) are a family of low-molecular-weight cysteine-rich proteins and are thought to play possible roles in metal metabolism or detoxification. To evaluate the roles of metallothioneins in metal homeostasis or tolerance in Avicennia marina, a real-time quantitative PCR protocol was developed to directly evaluate the expression of AmMT2 mRNA, when A. marina seedlings were exposed to different concentrations of zinc (Zn), copper (Cu) or lead (Pb) for 3 and 7d. Real-time quantitative PCR results indicated that the regulation of AmMT2 mRNA expression by Zn, Cu and Pb was strongly dependent on concentration and time of exposure. A significant increase in the transcripts of AmMT2 gene was also found in response to Zn, Cu and Pb, at least under some experimental conditions. When AmMT2 was overexpressed in Escherichia coli BL21 as a carboxy-terminal extension of glutathione-S-transferase (GST), the transgenic bacteria showed an increased tolerance to Zn, Cu, Pb and Cd exposure as compared to control strains. Moreover, GST-AmMT2 was purified from E. coli cells grown in the presence of 400 mu M Zn, Cu, Pb or Cd. The purified GST-AmMT2 fusion protein could bind higher levels of all four metals than GST alone. Taken together, these data support the hypothesis that AmMT2 may be involved in processes of metal homeostasis or tolerance in A. marina. (C) 2010 Elsevier B.V. All rights reserved.
机译:金属硫蛋白(MTs)是一类低分子量富含半胱氨酸的蛋白质,被认为在金属代谢或排毒中可能发挥作用。为了评估金属硫蛋白在Avicennia滨海植物金属稳态或耐性中的作用,开发了一种实时定量PCR协议以直接评估A. marina幼苗暴露于不同浓度的锌,铜时AmMT2 mRNA的表达。 (Cu)或铅(Pb)3d和7d。实时定量PCR结果表明,Zn,Cu和Pb对AmMT2 mRNA表达的调节强烈依赖于浓度和暴露时间。至少在某些实验条件下,还发现响应于Zn,Cu和Pb,AmMT2基因的转录物显着增加。当AmMT2作为谷胱甘肽S-转移酶(GST)的羧基末端延伸在大肠杆菌BL21中过表达时,与对照菌株相比,转基因细菌对Zn,Cu,Pb和Cd暴露的耐受性增强。此外,从在400μMZn,Cu,Pb或Cd存在下生长的大肠杆菌细胞中纯化出GST-AmMT2。纯化的GST-AmMT2融合蛋白可以比单独的GST结合更高的所有四种金属。综上所述,这些数据支持以下假设:AmMT2可能参与了滨海曲霉的金属稳态或耐受过程。 (C)2010 Elsevier B.V.保留所有权利。

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    Huang GY; Wang YS;

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