Xu Yan, Suzuki Yuta, Ishizuka Takumi, Xiao Chao-Da, Liu Xiao, Hayashi Tetsuya, Komiyama Makoto
Division of Chemistry, Department of Medical Sciences, Faculty of Medicine, University of Miyazaki, 5200 Kihara, Kiyotake, Miyazaki 889-1692, Japan.
Research Center for Advanced Science and Technology, The University of Tokyo, 4-6-1 Komaba, Meguro-ku 153-8904, Tokyo, Japan.
Bioorg Med Chem. 2014 Aug 15;22(16):4419-21. doi: 10.1016/j.bmc.2014.05.053. Epub 2014 Jun 6.
Telomeric repeat-containing RNA is a non-coding RNA molecule newly found in mammalian cells. The telomere RNA has been found to localize to the telomere DNA, but how the newly discovered RNA molecule interacts with telomere DNA is less known. In this study, using the click chemistry we successfully found that a 6-mer human telomere RNA and 16-mer human telomere DNA sequence can form a DNA-RNA hybrid type G-quadruplex structure. Detection of the click-reaction products directly probes DNA-RNA G-quadruplex structures in a complicated solution, whereas traditional methods such as NMR and crystallography may not be suitable. Importantly, we found that formation of DNA-RNA G-quadruplex induced an exonuclease resistance for telomere DNA, indicating that such structures might be important for protecting telomeric DNA from enzyme digestion to avoid telomere DNA shortening. These results provide the direct evidence for formation of DNA-RNA hybrid G-quadruplex structure by human telomere DNA and RNA sequence, suggesting DNA-RNA hybrid G-quadruplex structure associated between telomere DNA and RNA may respond to chromosome end protection and/or present a valuable target for drug design.
端粒重复序列RNA是在哺乳动物细胞中新发现的一种非编码RNA分子。人们发现端粒RNA定位于端粒DNA,但这种新发现的RNA分子如何与端粒DNA相互作用却鲜为人知。在本研究中,我们利用点击化学成功发现,一个6聚体的人类端粒RNA和一个16聚体的人类端粒DNA序列能够形成一种DNA-RNA杂交型G-四链体结构。对点击反应产物的检测可直接探测复杂溶液中的DNA-RNA G-四链体结构,而诸如核磁共振和晶体学等传统方法可能并不适用。重要的是,我们发现DNA-RNA G-四链体的形成诱导了端粒DNA对外切核酸酶的抗性,这表明此类结构对于保护端粒DNA免受酶切以避免端粒DNA缩短可能很重要。这些结果为人类端粒DNA和RNA序列形成DNA-RNA杂交G-四链体结构提供了直接证据,表明端粒DNA与RNA之间关联的DNA-RNA杂交G-四链体结构可能与染色体末端保护有关,和/或为药物设计提供了一个有价值的靶点。