The Wistar Institute, Philadelphia, PA, 19104, USA.
Department of Pathology, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA, 19104, USA.
Sci Rep. 2021 Feb 10;11(1):3509. doi: 10.1038/s41598-021-82406-x.
Telomere dysfunction causes chromosomal instability which is associated with many cancers and age-related diseases. The non-coding telomeric repeat-containing RNA (TERRA) forms a structural and regulatory component of the telomere that is implicated in telomere maintenance and chromosomal end protection. The basic N-terminal Gly/Arg-rich (GAR) domain of telomeric repeat-binding factor 2 (TRF2) can bind TERRA but the structural basis and significance of this interaction remains poorly understood. Here, we show that TRF2 GAR recognizes G-quadruplex features of TERRA. We show that small molecules that disrupt the TERRA-TRF2 GAR complex, such as N-methyl mesoporphyrin IX (NMM) or genetic deletion of TRF2 GAR domain, result in the loss of TERRA, and the induction of γH2AX-associated telomeric DNA damage associated with decreased telomere length, and increased telomere aberrations, including telomere fragility. Taken together, our data indicates that the G-quadruplex structure of TERRA is an important recognition element for TRF2 GAR domain and this interaction between TRF2 GAR and TERRA is essential to maintain telomere stability.
端粒功能障碍导致染色体不稳定,这与许多癌症和与年龄相关的疾病有关。非编码端粒重复 RNA(TERRA)形成端粒的结构和调节成分,涉及端粒维持和染色体末端保护。端粒结合因子 2(TRF2)的基本 N 端甘氨酸/精氨酸丰富(GAR)结构域可以结合 TERRA,但这种相互作用的结构基础和意义仍知之甚少。在这里,我们表明 TRF2 GAR 识别 TERRA 的 G-四链体特征。我们表明,破坏 TERRA-TRF2 GAR 复合物的小分子,如 N-甲基甲川卟啉 IX(NMM)或 TRF2 GAR 结构域的遗传缺失,会导致 TERRA 的丢失,并诱导与端粒长度减少、端粒畸变增加相关的 γH2AX 相关端粒 DNA 损伤,包括端粒脆弱。总之,我们的数据表明,TERRA 的 G-四链体结构是 TRF2 GAR 结构域的重要识别元件,TRF2 GAR 和 TERRA 之间的这种相互作用对于维持端粒稳定性至关重要。