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Helicobacter hepaticus Dps protein plays an important role in protecting DNA from oxidative damage

机译:Helicobacter hepaticus Dps蛋白在保护DNA免受氧化损伤中起重要作用

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The ferritin-like DNA-binding protein from starved cells (Dps) family proteins are present in a number of pathogenic bacteria. Dps in the enterohepatic pathogen, Helicobacter hepaticus is characterized and a H. hepaticus dps mutant was generated by insertional mutagenesis. While the wild type H. hepaticus cells were able to survive in an atmosphere containing up to 6.0% O-2, the dps mutant failed to grow in 3.0% O-2, and it was also more sensitive to oxidative reagents like H2O2, cumene hydroperoxide and t-butyl hydroperoxide. Upon air exposure, the dps 2 cells had more damaged DNA than the wild type; they became coccoid or lysed and they contained similar to 6-fold higher amount of 8-oxoguanine (8-oxoG) DNA lesions than wild type cells. Purified H. hepaticus Dps was shown to be able to bind both iron and DNA. The iron-loaded form of Dps protein had much greater DNA binding ability than the native Dps or the iron-free Dps.
机译:饥饿细胞(Dps)家族蛋白中的铁蛋白样DNA结合蛋白存在于许多致病细菌中。表征肠肝病原体中的Dps,即Helicobacter hepaticus,并通过插入诱变产生了H. hepaticus dps突变体。尽管野生型肝细胞能够在含有高达6.0%O-2的气氛中存活,但dps突变体无法在3.0%O-2中生长,并且它对诸如H2O2,枯烯等氧化剂也更敏感氢过氧化物和叔丁基氢过氧化物。暴露于空气中后,dps 2细胞的DNA损伤程度比野生型细胞要大。它们变成了类球体或被溶解,它们所含的8-氧鸟嘌呤(8-oxoG)DNA损伤的量是野生型细胞的6倍。纯化的肝嗜血杆菌Dps被证明能够结合铁和DNA。铁负载形式的Dps蛋白比天然Dps或无铁Dps具有更大的DNA结合能力。

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