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首页> 外文期刊>Applied and Environmental Microbiology >Nickel and Cobalt Resistance Engineered in Escherichia coli by Overexpression of Serine Acetyltransferase from the Nickel Hyperaccumulator Plant Thlaspi goesingense
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Nickel and Cobalt Resistance Engineered in Escherichia coli by Overexpression of Serine Acetyltransferase from the Nickel Hyperaccumulator Plant Thlaspi goesingense

机译:镍和钴的抗性通过过量表达镍超蓄积植物Thlaspi goingense的丝氨酸乙酰基转移酶在大肠杆菌中工程化

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The overexpression of serine acetyltransferase from the Ni-hyperaccumulating plant Thlaspi goesingense causes enhanced nickel and cobalt resistance in Escherichia coli. Furthermore, overexpression of T. goesingense serine acetyltransferase results in enhanced sensitivity to cadmium and has no significant effect on resistance to zinc. Enhanced nickel resistance is directly related to the constitutive overactivation of sulfur assimilation and glutathione biosynthesis, driven by the overproduction of O-acetyl-l-serine, the product of serine acetyltransferase and a positive regulator of the cysteine regulon. Nickel in the serine acetyltransferase-overexpressing strains is not detoxified by coordination or precipitation with sulfur, suggesting that glutathione is involved in reducing the oxidative damage imposed by nickel.
机译:Ni过度富集植物Thlaspi goingense中丝氨酸乙酰基转移酶的过表达导致大肠杆菌对镍和钴的抗性增强。此外,高斯金丝瓜丝氨酸乙酰转移酶的过表达导致对镉的敏感性增强,并且对锌的抗性没有显着影响。增强的镍抗性与硫同化和谷胱甘肽生物合成的组成型过度活化直接相关,这是由O-乙酰基-1-丝氨酸,丝氨酸乙酰基转移酶的产物和半胱氨酸调节子的正调节剂的过量生产驱动的。丝氨酸乙酰转移酶过表达菌株中的镍没有通过与硫的配位或沉淀而被解毒,这表明谷胱甘肽参与减少镍施加的氧化损伤。

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