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首页> 外文期刊>Archives of Biochemistry and Biophysics >The Cu(II)-reductase NADH dehydrogenase-2 of Escherichia coli improves the bacterial growth in extreme copper concentrations and increases the resistance to the damage caused by copper and hydroperoxide
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The Cu(II)-reductase NADH dehydrogenase-2 of Escherichia coli improves the bacterial growth in extreme copper concentrations and increases the resistance to the damage caused by copper and hydroperoxide

机译:大肠杆菌的Cu(II)-还原酶NADH脱氢酶2改善了极端铜浓度下的细菌生长并提高了对铜和氢过氧化物造成的破坏的抵抗力

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NADH dehydrogenase-2 (NDH-2) from Escherichia coli respiratory chain is a membrane-bound cupric-reductase encoded by ndh gene. Here, we report that the respiratory system of a ndh deficient strain suffered a faster inactivation than that of the parental strain in the presence of tert-butyl hydroperoxide due to endogenous copper. The inactivation was similar for both strains when copper concentration increased in the culture media. Furthermore, several ndh deficient mutants grew less well than the corresponding parental strains in media containing either high or low copper concentrations. A mutant strain complemented with ndh gene almost recovered the parental phenotype for growing in copper limitation or excess. Then, NDH-2 gives the bacteria advantages to diminish the susceptibility of the respiratory chain to damaging effects produced by copper and hydroperoxides and to survive in extreme copper conditions. These results suggest that NDH-2 contributes in the bacterial oxidative protection and in the copper homeostasis. (c) 2006 Elsevier Inc. All rights reserved.
机译:来自大肠杆菌呼吸链的NADH脱氢酶-2(NDH-2)是由ndh基因编码的膜结合的铜还原酶。在这里,我们报道由于内源性铜,在存在氢过氧化叔丁基的情况下,ndh缺陷型菌株的呼吸系统比亲代菌株的呼吸系统失活更快。当培养基中铜浓度增加时,两种菌株的灭活作用相似。此外,在含有高或低铜浓度的培养基中,几个ndh缺陷型突变体的生长不如相应的亲本菌株好。补充了ndh基因的突变株几乎恢复了亲本表型,以限制铜或过量生长。然后,NDH-2使细菌具有减少呼吸链对铜和氢过氧化物产生的破坏作用的敏感性,并能在极端的铜条件下生存的优势。这些结果表明,NDH-2有助于细菌的氧化保护和铜稳态。 (c)2006 Elsevier Inc.保留所有权利。

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