Department of Biology, Tufts University, Medford, MA, 02155, USA.
Program in Genetics, Tufts University, Boston, MA, 02111, USA.
Curr Genet. 2018 Aug;64(4):789-794. doi: 10.1007/s00294-018-0806-z. Epub 2018 Jan 11.
R-loops form when transcribed RNA remains bound to its DNA template to form a stable RNA:DNA hybrid. Stable R-loops form when the RNA is purine-rich, and are further stabilized by DNA secondary structures on the non-template strand. Interestingly, many expandable and disease-causing repeat sequences form stable R-loops, and R-loops can contribute to repeat instability. Repeat expansions are responsible for multiple neurodegenerative diseases, including Huntington's disease, myotonic dystrophy, and several types of ataxias. Recently, it was found that R-loops at an expanded CAG/CTG repeat tract cause DNA breaks as well as repeat instability (Su and Freudenreich, Proc Natl Acad Sci USA 114, E8392-E8401, 2017). Two factors were identified as causing R-loop-dependent breaks at CAG/CTG tracts: deamination of cytosines and the MutLγ (Mlh1-Mlh3) endonuclease, defining two new mechanisms for how R-loops can generate DNA breaks (Su and Freudenreich, Proc Natl Acad Sci USA 114, E8392-E8401, 2017). Following R-loop-dependent nicking, base excision repair resulted in repeat instability. These results have implications for human repeat expansion diseases and provide a paradigm for how RNA:DNA hybrids can cause genome instability at structure-forming DNA sequences. This perspective summarizes mechanisms of R-loop-induced fragility at G-rich repeats and new links between DNA breaks and repeat instability.
R 环是在转录 RNA 仍与其 DNA 模板结合形成稳定的 RNA:DNA 杂交体时形成的。当 RNA 富含嘌呤时,稳定的 R 环形成,并且非模板链上的 DNA 二级结构进一步稳定了它们。有趣的是,许多可扩展的和致病的重复序列形成稳定的 R 环,并且 R 环可以导致重复不稳定。重复扩展是多种神经退行性疾病的原因,包括亨廷顿病、肌萎缩性侧索硬化症和几种类型的共济失调。最近,人们发现扩展的 CAG/CTG 重复序列上的 R 环会导致 DNA 断裂和重复不稳定(Su 和 Freudenreich,Proc Natl Acad Sci USA 114,E8392-E8401,2017)。有两个因素被确定为导致 CAG/CTG 序列上 R 环依赖性断裂的原因:胞嘧啶脱氨酶和 MutLγ(Mlh1-Mlh3)内切酶,这定义了 R 环如何产生 DNA 断裂的两种新机制(Su 和 Freudenreich,Proc Natl Acad Sci USA 114,E8392-E8401,2017)。在 R 环依赖性断裂之后,碱基切除修复导致重复不稳定。这些结果对人类重复扩展疾病具有重要意义,并为 RNA:DNA 杂交体如何在形成结构的 DNA 序列处引起基因组不稳定性提供了范例。该观点总结了富含 G 的重复序列中 R 环诱导脆弱性的机制以及 DNA 断裂和重复不稳定性之间的新联系。