Mechanobiology Institute, National University of Singapore, 5A Engineering Drive 1, Singapore, 117411, Singapore.
School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, SBS-02n-49, Singapore, 637551, Singapore.
Sci Rep. 2017 Aug 16;7(1):8440. doi: 10.1038/s41598-017-09104-5.
HMGA2 belongs to the family of the high mobility group (HMG) proteins. It binds DNA via three AT-hook domains to the minor groove of adenine-thymine (AT) rich DNA. Recently, a new function of HMGA2 as a replication fork chaperone that protects stem and cancer cells from replication fork collapse induced by chemotherapeutic agents was uncovered, suggesting a previously uncharacterized binding at replication forks. In this study, we examined HMGA2 binding to four DNA structures relevant to replication forks, namely ds DNA, ss DNA, forked DNA and supercoiled DNA plectonemes. We detected HMGA2 binding to supercoiled DNA at the lowest concentration and this binding mode transiently stabilizes the supercoiled plectonemes against relaxation by type I topoisomerase. Together, these findings suggest a plausible mechanism how fork regression and collapse are attenuated by HMGA2 during replication stress, i.e. through transient stabilization of positively supercoiled plectonemes in the parental duplex.
HMGA2 属于高迁移率族(HMG)蛋白家族。它通过三个 AT 钩结构域与富含腺嘌呤-胸腺嘧啶(AT)的 DNA 的小沟结合。最近,发现 HMGA2 作为复制叉伴侣的新功能,它可以保护干细胞和癌细胞免受化疗药物诱导的复制叉崩溃,这表明在复制叉处存在以前未表征的结合。在这项研究中,我们研究了 HMGA2 与四种与复制叉相关的 DNA 结构的结合,即双链 DNA、单链 DNA、分叉 DNA 和超螺旋 DNA 扭结。我们检测到 HMGA2 在最低浓度下与超螺旋 DNA 的结合,这种结合模式可以暂时稳定超螺旋扭结,防止 I 型拓扑异构酶松弛。总之,这些发现提出了一个合理的机制,即 HMGA2 如何在复制应激期间减弱叉回归和崩溃,即在亲本双链中通过超螺旋 DNA 扭结的瞬时稳定来实现。