首页> 美国卫生研究院文献>International Journal of Molecular Sciences >A Heavy Metal-Associated Protein (AcHMA1) from the Halophyte Atriplex canescens (Pursh) Nutt. Confers Tolerance to Iron and Other Abiotic Stresses When Expressed in Saccharomyces cerevisiae
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A Heavy Metal-Associated Protein (AcHMA1) from the Halophyte Atriplex canescens (Pursh) Nutt. Confers Tolerance to Iron and Other Abiotic Stresses When Expressed in Saccharomyces cerevisiae

机译:重金属相关蛋白(AcHMA1)来自盐生植物滨藜(Pursh)坚果在酿酒酵母中表达时具有耐铁和其他非生物胁迫的能力

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摘要

Many heavy metals are essential for metabolic processes, but are toxic at elevated levels. Metal tolerance proteins provide resistance to this toxicity. In this study, we identified and characterized a heavy metal-associated protein, AcHMA1, from the halophyte, Atriplex canescens. Sequence analysis has revealed that AcHMA1 contains two heavy metal binding domains. Treatments with metals (Fe, Cu, Ni, Cd or Pb), PEG6000 and NaHCO3 highly induced AcHMA1 expression in A. canescens, whereas NaCl and low temperature decreased its expression. The role of AcHMA1 in metal stress tolerance was examined using a yeast expression system. Expression of the AcHMA1 gene significantly increased the ability of yeast cells to adapt to and recover from exposure to excess iron. AcHMA1 expression also provided salt, alkaline, osmotic and oxidant stress tolerance in yeast cells. Finally, subcellular localization of an AcHMA1/GFP fusion protein expressed in tobacco cells showed that AcHMA1 was localized in the plasma membrane. Thus, our results suggest that AcHMA1 encodes a membrane-localized metal tolerance protein that mediates the detoxification of iron in eukaryotes. Furthermore, AcHMA1 also participates in the response to abiotic stress.
机译:许多重金属对于代谢过程必不可少,但在高水平时有毒。金属耐受蛋白可抵抗这种毒性。在这项研究中,我们从盐生植物Atriplex canescens中鉴定并鉴定了重金属相关蛋白AcHMA1。序列分析表明AcHMA1包含两个重金属结合域。用金属(Fe,Cu,Ni,Cd或Pb),PEG6000和NaHCO3处理可在蔗糖曲霉中诱导AcHMA1表达,而NaCl和低温会降低其表达。使用酵母表达系统检查了AcHMA1在金属胁迫耐受性中的作用。 AcHMA1基因的表达显着提高了酵母细胞适应和吸收过量铁的能力。 AcHMA1的表达还提供了酵母细胞中的盐,碱性,渗透压和氧化应激耐受性。最后,烟草细胞中表达的AcHMA1 / GFP融合蛋白的亚细胞定位表明AcHMA1位于质膜中。因此,我们的结果表明AcHMA1编码一种膜定位的金属耐受蛋白,该蛋白介导真核生物中铁的解毒作用。此外,AcHMA1还参与了对非生物胁迫的反应。

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