Institute of Cancer and Genomic Sciences, University of Birmingham, Birmingham, UK.
Birmingham Centre for Genome Biology, University of Birmingham, Birmingham, UK.
Nat Rev Mol Cell Biol. 2022 Aug;23(8):521-540. doi: 10.1038/s41580-022-00474-x. Epub 2022 Apr 22.
RNA-DNA hybrids are generated during transcription, DNA replication and DNA repair and are crucial intermediates in these processes. When RNA-DNA hybrids are stably formed in double-stranded DNA, they displace one of the DNA strands and give rise to a three-stranded structure called an R-loop. R-loops are widespread in the genome and are enriched at active genes. R-loops have important roles in regulating gene expression and chromatin structure, but they also pose a threat to genomic stability, especially during DNA replication. To keep the genome stable, cells have evolved a slew of mechanisms to prevent aberrant R-loop accumulation. Although R-loops can cause DNA damage, they are also induced by DNA damage and act as key intermediates in DNA repair such as in transcription-coupled repair and RNA-templated DNA break repair. When the regulation of R-loops goes awry, pathological R-loops accumulate, which contributes to diseases such as neurodegeneration and cancer. In this Review, we discuss the current understanding of the sources of R-loops and RNA-DNA hybrids, mechanisms that suppress and resolve these structures, the impact of these structures on DNA repair and genome stability, and opportunities to therapeutically target pathological R-loops.
RNA-DNA 杂交体在转录、DNA 复制和 DNA 修复过程中产生,是这些过程中的关键中间产物。当 RNA-DNA 杂交体稳定形成双链 DNA 时,它们会取代其中一条 DNA 链,并产生一种称为 R 环的三链结构。R 环在基因组中广泛存在,并在活性基因处富集。R 环在调节基因表达和染色质结构方面具有重要作用,但它们也对基因组稳定性构成威胁,尤其是在 DNA 复制过程中。为了保持基因组的稳定,细胞进化出了一系列机制来防止异常 R 环的积累。尽管 R 环会导致 DNA 损伤,但它们也会被 DNA 损伤诱导,并在 DNA 修复中充当关键中间体,如转录偶联修复和 RNA 模板化 DNA 断裂修复。当 R 环的调控出现问题时,病理性 R 环会积累,这导致神经退行性疾病和癌症等疾病的发生。在这篇综述中,我们讨论了对 R 环和 RNA-DNA 杂交体来源的最新理解,抑制和解决这些结构的机制,这些结构对 DNA 修复和基因组稳定性的影响,以及靶向病理性 R 环的治疗机会。