Birrento Monica L, Bryan Tracy M, Samosorn Siritron, Beck Jennifer L
School of Chemistry, University of Wollongong, Wollongong, New South Wales, 2522, Australia.
J Am Soc Mass Spectrom. 2015 Jul;26(7):1165-73. doi: 10.1007/s13361-015-1121-2. Epub 2015 Apr 24.
Electrospray ionization mass spectrometry (ESI-MS) conditions were optimized for simultaneous observation of a bimolecular qDNA and a Watson-Crick base-paired duplex DNA/RNA hybrid. The DNA sequence used was telomeric DNA, and the RNA contained the template for telomerase-mediated telomeric DNA synthesis. Addition of RNA to the quadruplex DNA (qDNA) resulted in formation of the duplex DNA/RNA hybrid. Melting profiles obtained using circular dichroism spectroscopy confirmed that the DNA/RNA hybrid exhibited greater thermal stability than the bimolecular qDNA in solution. Binding of a 13-substituted berberine (1) derivative to the bimolecular qDNA stabilized its structure as evidenced by an increase in its stability in the mass spectrometer, and an increase in its circular dichroism (CD) melting temperature of 10°C. The DNA/RNA hybrid did not bind the ligand extensively and its thermal stability was unchanged in the presence of (1). The qDNA-ligand complex resisted unfolding in the presence of excess RNA, limiting the formation of the DNA/RNA hybrid. Previously, it has been proposed that DNA secondary structures, such as qDNA, may be involved in the telomerase mechanism. DNA/RNA hybrid structures occur at the active site of telomerase. The results presented in the current work show that if telomeric DNA was folded into a qDNA structure, it is possible for a DNA/RNA hybrid to form as is required during template alignment. The discrimination of ligand (1) for binding to the bimolecular qDNA over the DNA/RNA hybrid positions it as a useful compound for probing the role(s), if any, of antiparallel qDNA in the telomerase mechanism.
为同时观察双分子四链DNA(qDNA)和沃森-克里克碱基配对的双链DNA/RNA杂交体,对电喷雾电离质谱(ESI-MS)条件进行了优化。所用的DNA序列是端粒DNA,RNA包含端粒酶介导的端粒DNA合成的模板。向四链DNA(qDNA)中加入RNA导致双链DNA/RNA杂交体的形成。使用圆二色光谱获得的熔解曲线证实,在溶液中,DNA/RNA杂交体比双分子qDNA表现出更高的热稳定性。13-取代小檗碱(1)衍生物与双分子qDNA的结合稳定了其结构,这在质谱仪中其稳定性的增加以及其圆二色(CD)熔解温度升高10°C中得到证明。DNA/RNA杂交体没有广泛结合配体,并且在存在(1)的情况下其热稳定性没有变化。qDNA-配体复合物在存在过量RNA的情况下抵抗解折叠,限制了DNA/RNA杂交体的形成。以前,有人提出DNA二级结构,如qDNA,可能参与端粒酶机制。DNA/RNA杂交结构出现在端粒酶的活性位点。当前工作中呈现的结果表明,如果端粒DNA折叠成qDNA结构,则有可能形成模板比对过程中所需的DNA/RNA杂交体。配体(1)对双分子qDNA的结合优于DNA/RNA杂交体的区分,使其成为探测反平行qDNA在端粒酶机制中的作用(如果有的话)的有用化合物。