Molecular Medicine Laboratory, Rappaport Faculty of Medicine, Rambam Health Care Campus, Technion, Haifa, Israel.
FEBS J. 2018 Jul;285(14):2552-2566. doi: 10.1111/febs.14464. Epub 2018 Apr 20.
R-loops (RLs) are three-stranded nucleic acid structures that contain a DNA:RNA hybrid and a displaced DNA strand. Genomic regions with GC skew and a G-rich transcript are particularly prone to form RLs. RLs play important physiological roles in cells; however, when present at abnormally high levels, they may threaten genome stability. The perfect GC skew of telomeric repeats and the discovery of telomeric repeat-containing RNA (TERRA), a long noncoding transcript that consists of the G-rich telomeric sequence, make telomeric sequences the perfect candidates for generating RLs. Indeed, in the past 5 years, telomere R-loops (TRLs) have been demonstrated in Saccharomyces cerevisiae, Trypanosoma brucei, and human cells. The presence of TRLs in normal human cells that transcribe low levels of TERRA, suggests a physiological role for these nucleic structures in telomere maintenance. Abnormally enhanced TERRA transcription, as found in several human pathological conditions, leads to high TRL levels and various cellular outcomes, depending on the recombinogenic capabilities of the cells. Study of TRLs in various organisms highlights the necessity for tight regulation of these structures, which can switch from beneficial to detrimental under different conditions. Here, we review the current state of knowledge on TRLs, describe several means by which TRLs are regulated, and discuss how findings from yeast are relevant to human pathological scenarios in which TRLs are deregulated.
R 环(RLs)是含有 DNA:RNA 杂合体和一条链位移的三链核酸结构。GC 倾斜和富含 G 的转录本的基因组区域特别容易形成 RLs。RLs 在细胞中发挥重要的生理作用;然而,当它们以异常高的水平存在时,可能会威胁到基因组的稳定性。端粒重复序列的完美 GC 倾斜和端粒重复 RNA(TERRA)的发现,TERRA 是由富含 G 的端粒序列组成的长非编码转录本,使端粒序列成为生成 RLs 的理想候选物。事实上,在过去的 5 年中,在酿酒酵母、布氏锥虫和人类细胞中已经证明了端粒 RLs(TRLs)的存在。在转录低水平 TERRA 的正常人类细胞中存在 TRLs,这表明这些核酸结构在端粒维持中具有生理作用。在几种人类病理条件下发现的异常增强的 TERRA 转录导致 TRL 水平升高和各种细胞后果,这取决于细胞的重组能力。对不同生物体中的 TRLs 的研究强调了对这些结构进行严格调控的必要性,这些结构在不同条件下可以从有益转变为有害。在这里,我们回顾了 TRLs 的当前研究现状,描述了几种调节 TRLs 的方法,并讨论了酵母的研究结果如何与 TRLs 失调的人类病理情况相关。