Department of Microbiology and Molecular Medicine, Faculty of Medicine, University of Geneva, Geneva 4, Switzerland.
Geneva Centre for Inflammation Research (GCIR), Faculty of Medicine, University of Geneva, Geneva 4, Switzerland.
Nat Commun. 2024 Sep 6;15(1):7805. doi: 10.1038/s41467-024-50646-w.
Beyond its essential roles in ensuring faithful chromosome segregation and genomic stability, the human Smc5/6 complex acts as an antiviral factor. It binds to and impedes the transcription of extrachromosomal DNA templates; an ability which is lost upon integration of the DNA into the chromosome. How the complex distinguishes among different DNA templates is unknown. Here we show that, in human cells, Smc5/6 preferentially binds to circular rather than linear extrachromosomal DNA. We further demonstrate that the transcriptional process, per se, and particularly the accumulation of DNA secondary structures known to be substrates for topoisomerases, is responsible for Smc5/6 recruitment. More specifically, we find that in vivo Smc5/6 binds to positively supercoiled DNA. Those findings, in conjunction with our genome-wide Smc5/6 binding analysis showing that Smc5/6 localizes at few but highly transcribed chromosome loci, not only unveil a previously unforeseen role of Smc5/6 in DNA topology management during transcription but highlight the significance of sensing DNA topology as an antiviral defense mechanism.
除了在确保染色体正确分离和基因组稳定方面的重要作用外,人类 Smc5/6 复合物还具有抗病毒作用。它能结合并阻碍染色体外 DNA 模板的转录;而当 DNA 整合到染色体中时,这种能力就会丧失。复合物如何区分不同的 DNA 模板尚不清楚。在这里,我们发现 Smc5/6 在人类细胞中优先结合环状而非线性染色体外 DNA。我们进一步证明转录过程本身,特别是拓扑异构酶的已知底物 DNA 二级结构的积累,负责 Smc5/6 的募集。更具体地说,我们发现 Smc5/6 在体内结合正超螺旋 DNA。这些发现,结合我们的全基因组 Smc5/6 结合分析表明 Smc5/6 定位于少数但转录活跃的染色体位点,不仅揭示了 Smc5/6 在转录过程中对 DNA 拓扑管理的先前未预料到的作用,而且强调了感知 DNA 拓扑结构作为抗病毒防御机制的重要性。