C.N.R. Institute of Molecular Biology and Pathology, Department of Biochemical Sciences A. Rossi-Fanelli, Sapienza, University of Rome, 00185 Rome, Italy.
Front Biosci (Landmark Ed). 2010 Jan 1;15(1):122-31. doi: 10.2741/3610.
The review outlines the experimental studies that have led to the current understanding at a molecular level of the protective role exerted by Dps proteins under stress conditions. After a brief description of the structural signatures and of the ferroxidase activity, which confers to all Dps proteins the capacity to decrease the hydroxyl radical induced DNA damage, the interaction of some family members with DNA is analysed. Special emphasis is given to the Dps structural elements that render the interaction with DNA possible and to the consequences that complex formation has on nucleoid organization and microbial survival.
该综述概述了导致目前在分子水平上理解 Dps 蛋白在应激条件下发挥保护作用的实验研究。在简要描述了结构特征和亚铁氧化酶活性之后,所有 Dps 蛋白都具有降低羟基自由基诱导的 DNA 损伤的能力。然后分析了一些家族成员与 DNA 的相互作用。特别强调了使 Dps 与 DNA 相互作用成为可能的结构元素,以及形成复合物对核体组织和微生物存活的影响。