Cell and Molecular Biology Program, University of Arkansas, Fayetteville, AR 72701, USA.
J Appl Microbiol. 2011 Feb;110(2):375-86. doi: 10.1111/j.1365-2672.2010.04890.x. Epub 2010 Dec 8.
Dps, the DNA-binding protein from starved cells, is capable of providing protection to cells during exposure to severe environmental assaults; including oxidative stress and nutritional deprivation. The structure and function of Dps have been the subject of numerous studies and have been examined in several bacteria that possess Dps or a structural/functional homologue of the protein. Additionally, the involvement of Dps in stress resistance has been researched extensively as well. The ability of Dps to provide multifaceted protection is based on three intrinsic properties of the protein: DNA binding, iron sequestration, and its ferroxidase activity. These properties also make Dps extremely important in iron and hydrogen peroxide detoxification and acid resistance as well. Regulation of Dps expression in E. coli is complex and partially dependent on the physiological state of the cell. Furthermore, it is proposed that Dps itself plays a role in gene regulation during starvation, ultimately making the cell more resistant to cytotoxic assaults by controlling the expression of genes necessary for (or deleterious to) stress resistance. The current review focuses on the aforementioned properties of Dps in E. coli, its prototypic organism. The consequences of elucidating the protective mechanisms of this protein are far-reaching, as Dps homologues have been identified in over 1000 distantly related bacteria and Archaea. Moreover, the prevalence of Dps and Dps-like proteins in bacteria suggests that protection involving DNA and iron sequestration is crucial and widespread in prokaryotes.
Dps(饥饿细胞中的 DNA 结合蛋白)能够为细胞提供保护,使其免受严重环境胁迫(包括氧化应激和营养剥夺)的影响。Dps 的结构和功能已经成为许多研究的主题,并在具有 Dps 或该蛋白结构/功能同源物的几种细菌中进行了研究。此外,Dps 在应激抗性中的作用也得到了广泛的研究。Dps 提供多方面保护的能力基于该蛋白的三个内在特性:DNA 结合、铁螯合和其亚铁氧化酶活性。这些特性也使 Dps 在铁和过氧化氢解毒以及耐酸方面非常重要。E. coli 中 Dps 的表达调控非常复杂,部分依赖于细胞的生理状态。此外,有人提出 Dps 本身在饥饿时在基因调控中发挥作用,通过控制应激抗性所需(或有害)基因的表达,使细胞对细胞毒性攻击更具抵抗力。本综述重点介绍了 E. coli 中 Dps 的上述特性,这是其原型生物。阐明该蛋白保护机制的意义深远,因为在 1000 多种远缘细菌和古菌中已经鉴定出 Dps 同源物。此外,Dps 和 Dps 样蛋白在细菌中的普遍存在表明,涉及 DNA 和铁螯合的保护在原核生物中至关重要且广泛存在。