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Human single-stranded DNA binding proteins are essential for maintaining genomic stability

机译:人类单链DNA结合蛋白对于维持基因组稳定性至关重要

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The double-stranded conformation of cellular DNA is a central aspect of DNA stabilisation and protection. The helix preserves the genetic code against chemical and enzymatic degradation, metabolic activation, and formation of secondary structures. However, there are various instances where single-stranded DNA is exposed, such as during replication or transcription, in the synthesis of chromosome ends, and following DNA damage. In these instances, single-stranded DNA binding proteins are essential for the sequestration and processing of single-stranded DNA. In order to bind single-stranded DNA, these proteins utilise a characteristic and evolutionary conserved single-stranded DNA-binding domain, the oligonucleotide/oligosaccharide-binding (OB)-fold. In the current review we discuss a subset of these proteins involved in the direct maintenance of genomic stability, an important cellular process in the conservation of cellular viability and prevention of malignant transformation. We discuss the central roles of single-stranded DNA binding proteins from the OB-fold domain family in DNA replication, the restart of stalled replication forks, DNA damage repair, cell cycle-checkpoint activation, and telomere maintenance.
机译:细胞DNA的双链构象是DNA稳定和保护的重要方面。螺旋结构保留了针对化学和酶促降解,代谢活化以及二级结构形成的遗传密码。但是,在许多情况下,例如在复制或转录过程中,在染色体末端的合成中以及在DNA损伤之后,单链DNA都会暴露出来。在这些情况下,单链DNA结合蛋白对于隔离和加工单链DNA是必不可少的。为了结合单链DNA,这些蛋白质利用特征和进化保守的单链DNA结合结构域,即寡核苷酸/寡糖结合(OB)-折叠。在当前的审查中,我们讨论了这些蛋白质的子集,它们直接参与基因组稳定性的维持,这是在保存细胞活力和预防恶性转化中的重要细胞过程。我们讨论了来自OB折叠域家族的单链DNA结合蛋白在DNA复制,停滞的复制叉的重启,DNA损伤修复,细胞周期检查点激活和端粒维护中的核心作用。

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