Department of Chemistry and Biochemistry, University of California, Santa Cruz, 1156 High St, Santa Cruz, California 95064, United States.
10X Genomics, 6230 Stoneridge Mall Rd, Pleasanton, California 94588, United States.
Biochemistry. 2022 Aug 2;61(15):1554-1560. doi: 10.1021/acs.biochem.1c00448. Epub 2022 Jul 19.
Telomeres are essential chromosome end capping structures that safeguard the genome from dangerous DNA processing events. DNA strand invasion occurs during vital transactions at telomeres, including telomere length maintenance by the alternative lengthening of telomeres (ALT) pathway. During telomeric strand invasion, a single-stranded guanine-rich (G-rich) DNA invades at a complementary duplex telomere repeat sequence, forming a displacement loop (D-loop) in which the displaced DNA consists of the same G-rich sequence as the invading single-stranded DNA. Single-stranded G-rich telomeric DNA readily folds into stable, compact, structures called G-quadruplexes (GQs) in vitro and is anticipated to form within the context of a D-loop; however, evidence supporting this hypothesis is lacking. Here, we report a magnetic tweezers assay that permits the controlled formation of telomeric D-loops (TDLs) within uninterrupted duplex human telomere DNA molecules of physiologically relevant lengths. Our results are consistent with a model wherein the displaced single-stranded DNA of a TDL fold into a GQ. This study provides new insight into telomere structure and establishes a framework for the development of novel therapeutics designed to target GQs at telomeres in cancer cells.
端粒是染色体末端的重要帽状结构,可防止基因组发生危险的 DNA 处理事件。在端粒的重要过程中会发生 DNA 链入侵,包括通过端粒的非经典延长(ALT)途径维持端粒长度。在端粒链入侵过程中,单链富含鸟嘌呤(G 富)的 DNA 侵入互补双链端粒重复序列,形成一个置换环(D 环),其中被置换的 DNA 由与入侵的单链 DNA 相同的 G 富序列组成。体外单链 G 富端粒 DNA 容易折叠成稳定、紧凑的结构,称为 G-四链体(GQ),预计在 D 环中形成;然而,支持这一假设的证据尚缺乏。在这里,我们报告了一种磁镊测定法,该方法允许在生理相关长度的未中断双链人端粒 DNA 分子内受控地形成端粒 D 环(TDL)。我们的结果与这样一种模型一致,即 TDL 中的置换单链 DNA 折叠成 GQ。这项研究为端粒结构提供了新的见解,并为开发旨在靶向癌细胞中端粒 GQ 的新型治疗方法奠定了框架。