Bai Li-Ping, Liu Jie, Han Li, Ho Hing-Man, Wang Renxiao, Jiang Zhi-Hong
State Key Laboratory of Quality Research in Chinese Medicine, and Macau Institute for Applied Research in Medicine and Health, Macau University of Science and Technology, Avenida Wai Long, Taipa, Macau.
Anal Bioanal Chem. 2014 Sep;406(22):5455-63. doi: 10.1007/s00216-014-7943-0. Epub 2014 Jun 18.
A comparative study on human telomeric DNA G-quadruplex binding of meso-5,10,15,20-tetrakis(N-methyl-4-pyridyl)porphyrin (TMPyP4) between its two salt forms, i.e., tetratosylate and tetrachloride, was conducted by using ESI-TOF-MS, UV-melting measurement, and molecular modeling methods. Besides cation TMPyP4, the tosyl anion was found to bind to human telomeric DNA G-quadruplex with multiple binding stoichiometries from 1:1 to 3:1 observed in ESI-TOF-MS spectra, indicating that the stabilization activity of TMPyP4 tetratosylate on G-quadruplex is derived from a synergetic effect of both TMPyP4 cation and tosyl anion. A molecular modeling study suggests that a tosyl anion fills up the vacant space between TMPyP4 cation and DNA G-quadruplex and thus stabilizes the complex by 3.8 kcal/mol. Therefore, it is estimated that TMPyP4 tetratosylate's activity might not reflect the real effect of TMPyP4 cation in some bioassays related to G-quadruplex stabilization. This was verified by the results of less binding affinity of TMPyP4 tetrachloride with DNA G-quadruplex obtained from ESI-TOF-MS measurement, and of 2.27 °C less thermal stabilization of TMPyP4 tetrachloride for DNA G-quadruplex, compared to its tetratosylate under the same conditions. Our study demonstrated the influence of counter ions of TMPyP4 on G-quadruplex binding, which sheds light on the proper usage of TMPyP4 salt in the chemical and biological research associated with G-quadruplex binding. Subsequently, the binding of TMPyP4 tetrachloride to human telomeric RNA G-quadruplexes was studied with ESI-TOF-MS technique. The binding constants of TMPyP4 with human telomeric G-quadruplexes indicated that TMPyP4 binds to human telomeric RNA G-quadruplex one order of magnitude stronger than DNA counterpart. This is a comprehensive mass spectrometric report on binding study of TMPyP4 with human telomeric DNA/RNA G-quadruplexes.
采用电喷雾电离飞行时间质谱(ESI-TOF-MS)、紫外熔解测量和分子模拟方法,对中位-5,10,15,20-四(N-甲基-4-吡啶基)卟啉(TMPyP4)的两种盐形式(即四对甲苯磺酸盐和四氯化物)与人端粒DNA G-四链体的结合进行了比较研究。除了阳离子TMPyP4外,还发现对甲苯磺酸根阴离子与人端粒DNA G-四链体结合,在ESI-TOF-MS光谱中观察到其结合化学计量比从1:1到3:1不等,这表明TMPyP4四对甲苯磺酸盐对G-四链体的稳定活性源自TMPyP4阳离子和对甲苯磺酸根阴离子的协同作用。分子模拟研究表明,一个对甲苯磺酸根阴离子填充了TMPyP4阳离子和DNA G-四链体之间的空位,从而使复合物稳定3.8千卡/摩尔。因此,据估计,在一些与G-四链体稳定相关的生物测定中,TMPyP4四对甲苯磺酸盐的活性可能无法反映TMPyP4阳离子的真实效果。ESI-TOF-MS测量结果显示TMPyP4四氯化物与DNA G-四链体的结合亲和力较低,以及在相同条件下与TMPyP4四对甲苯磺酸盐相比,TMPyP4四氯化物对DNA G-四链体的热稳定性低2.27°C,这些结果验证了上述观点。我们的研究证明了TMPyP4抗衡离子对G-四链体结合的影响,这为在与G-四链体结合相关的化学和生物学研究中正确使用TMPyP4盐提供了启示。随后,采用ESI-TOF-MS技术研究了TMPyP4四氯化物与人端粒RNA G-四链体的结合。TMPyP4与人端粒G-四链体的结合常数表明,TMPyP4与人端粒RNA G-四链体的结合比与DNA对应物的结合强一个数量级。这是一篇关于TMPyP4与人端粒DNA/RNA G-四链体结合研究的综合质谱报告。