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The structure of DdrB from Deinococcus: a new fold for single-stranded DNA binding proteins

机译:Deinococcus DdrB的结构:单链DNA结合蛋白的新折叠

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Deinococcus spp. are renowned for their amazing ability to recover rapidly from severe genomic fragmentation as a result of exposure to extreme levels of ionizing radiation or desiccation. Despite having been originally characterized over 50 years ago, the mechanism underlying this remarkable repair process is still poorly understood. Here, we report the 2.8 A structure of DdrB, a single-stranded DNA (ssDNA) binding protein unique to Deinococcus spp. that is crucial for recovery following DNA damage. DdrB forms a pentameric ring capable of binding single-stranded but not double-stranded DNA. Unexpectedly, the crystal structure reveals that DdrB comprises a novel fold that is structurally and topologically distinct from all other single-stranded binding (SSB) proteins characterized to date. The need for a unique ssDNA binding function in response to severe damage, suggests a distinct role for DdrB which may encompass not only standard SSB protein function in protection of ssDNA, but also more specialized roles in protein recruitment or DNA architecture maintenance. Possible mechanisms of DdrB action in damage recovery are discussed.
机译:迪诺球菌因暴露于极端水平的电离辐射或干燥中而从严重的基因组断裂中快速恢复的惊人能力而闻名。尽管最初在50多年前就已进行了特征描述,但对于这种出色的修复过程所基于的机制仍然知之甚少。在这里,我们报告DdrB的2.8 A结构,这是Deinococcus spp特有的单链DNA(ssDNA)结合蛋白。这对于DNA损伤后的恢复至关重要。 DdrB形成一个五聚体环,能够结合单链而不是双链DNA。出乎意料的是,该晶体结构揭示了DdrB包含一个新颖的折叠,该折叠在结构和拓扑上与迄今已表征的所有其他单链结合(SSB)蛋白不同。对独特的ssDNA结合功能的需求,以应对严重的损害,表明DdrB的独特作用可能不仅包括在保护ssDNA方面的标准SSB蛋白质功能,而且还包括蛋白质募集或DNA结构维护中的更多专门作用。讨论了DdrB作用在损伤恢复中的可能机制。

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