Program in Cell, Molecular, Developmental Biology and Biophysics, Johns Hopkins University, Baltimore, MD 21218, USA.
Program in Cellular and Molecular Medicine, Boston Children's Hospital, Harvard Medical School, Boston, MA 02115, USA.
Nucleic Acids Res. 2024 Sep 23;52(17):10490-10503. doi: 10.1093/nar/gkae732.
Telomeric repeat containing RNA (TERRA) is a noncoding RNA that is transcribed from telomeres. Previous study showed that TERRA trans anneals by invading into the telomeric duplex to form an R-loop in mammalian cells. Here, we elucidate the molecular mechanism underlying TERRA recruitment and invasion into telomeres in the context of shelterin proteins, RAD51 and RNase H using single molecule (sm) assays. We demonstrate that TERRA trans annealing into telomeric DNA exhibits dynamic movement that is stabilized by TRF2. TERRA annealing to the telomeric duplex results in the formation of a stable triplex structure which differs from a conventional R-loop. We identified that the presence of a sub-telomeric DNA and a telomeric overhang in the form of a G-quadruplex significantly enhances TERRA annealing to telomeric duplex. We also demonstrate that RAD51-TERRA complex invades telomere duplex more efficiently than TERRA alone. Additionally, TRF2 increases TERRA affinity to telomeric duplex and protects it from RNase H digestion. In contrast, TRF1 represses TERRA annealing to telomeric duplex and fails to provide protection against RNase H digestion. Our findings provide an in-depth molecular mechanism underpinning TERRA recruitment and annealing to the telomere.
端粒重复包含 RNA(TERRA)是一种非编码 RNA,从端粒转录而来。以前的研究表明,TERRA 通过侵入端粒双链体形成 R 环在哺乳动物细胞中进行反式退火。在这里,我们使用单分子(sm)测定法阐明了庇护蛋白、RAD51 和 RNase H 背景下 TERRA 募集和侵入端粒的分子机制。我们证明,TERRA 反式退火到端粒 DNA 表现出由 TRF2 稳定的动态运动。TERRA 退火到端粒双链体导致形成与传统 R 环不同的稳定三链结构。我们确定亚端粒 DNA 的存在和四链体形式的端粒突出显著增强了 TERRA 退火到端粒双链体。我们还证明,RAD51-TERRA 复合物比单独的 TERRA 更有效地侵入端粒双链体。此外,TRF2 增加了 TERRA 与端粒双链体的亲和力,并保护其免受 RNase H 消化。相比之下,TRF1 抑制 TERRA 退火到端粒双链体,并且不能提供对 RNase H 消化的保护。我们的发现提供了 TERRA 募集和退火到端粒的深入分子机制。