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Cellular strategies for regulating DNA supercoiling: A single-molecule perspective

机译:调控DNA超螺旋的细胞策略:单分子观点

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摘要

Entangling and twisting of cellular DNA (i.e., supercoiling) are problems inherent to the helical structure of double-stranded DNA. Supercoiling affects transcription, DNA replication, and chromosomal segregation. Consequently the cell must fine-tune supercoiling to optimize these key processes. Here, we summarize how supercoiling is generated and review experimental and theoretical insights into supercoil relaxation. We distinguish between the passive dissipation of supercoils by diffusion and the active removal of supercoils by topoisomerase enzymes. We also review single-molecule studies that elucidate the timescales and mechanisms of supercoil removal.
机译:细胞DNA的缠结和扭曲(即超螺旋)是双链DNA的螺旋结构固有的问题。超螺旋会影响转录,DNA复制和染色体分离。因此,单元必须微调超螺旋以优化这些关键过程。在这里,我们总结了超线圈的产生方式,并回顾了对超线圈松弛的实验和理论见解。我们区分了通过扩散消散超螺旋和通过拓扑异构酶主动去除超螺旋。我们还回顾了阐明超螺旋去除时间尺度和机理的单分子研究。

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