School of Chemistry , University of Hyderabad , Hyderabad 500046 , India.
J Phys Chem B. 2019 Mar 7;123(9):2022-2031. doi: 10.1021/acs.jpcb.9b00335. Epub 2019 Feb 26.
Small molecules capable of stabilizing the G-quadruplex structure of the nuclease hypersensitivity element III (NHE III) are useful in controlling the overexpression of the c-MYC oncogene. In this study, we have probed the interactions of a 22-mer c-MYC promoter quadruplex-forming sequence (Pu22) with a bioflavonoid 3,4',5,7-tetrahydroxyflavone, commonly known as kaempferol (KF). Ensemble fluorescence resonance energy transfer experiments on labeled Pu22 indicate that KF decreases the affinity of the former toward its complimentary strand, suggesting the stabilization of the quadruplex structure of Pu22. Considering that binding dynamics plays an important role in supramolecular interactions, there is hardly any information on this aspect for quadruplex-flavonoid systems; we have studied the kinetics of KF-Pu22 complexation and decomplexation processes on the single-molecule level by employing fluorescence correlation spectroscopy technique. The binding dynamics is characterized by a fast relaxation time of 10-50 μs. This leads to a high association rate constant ( k) of ∼10 M s, which is close to the pure diffusion controlled limit. However, it is the low dissociation rate constant ( k) of ∼10 s that is mainly responsible for the stability of the KF-Pu22 complex. Molecular docking study shows that KF binds near the 3'-end of Pu22 by forming several H-bonds with the bases. These findings suggest that KF is a potential binder of the c-MYC promoter quadruplex DNA and can be useful in anticancer therapies.
能够稳定核酸酶超敏元件 III(NHE III)的 G-四链体结构的小分子可用于控制 c-MYC 癌基因的过表达。在这项研究中,我们探测了 22 个碱基 c-MYC 启动子四链体形成序列(Pu22)与生物类黄酮 3,4',5,7-四羟基黄酮(通常称为山奈酚,KF)的相互作用。标记的 Pu22 的荧光共振能量转移实验表明,KF 降低了前者与互补链的亲和力,表明 Pu22 的四链体结构得到稳定。考虑到结合动力学在超分子相互作用中起着重要作用,但是对于四链体-类黄酮系统几乎没有关于这方面的信息;我们通过荧光相关光谱技术在单分子水平上研究了 KF-Pu22 络合和解络过程的动力学。结合动力学的特点是快速弛豫时间为 10-50μs。这导致高的结合速率常数(k)约为 10 M s,接近于纯扩散控制极限。然而,主要负责 KF-Pu22 复合物稳定性的是低的解离速率常数(k)约为 10 s。分子对接研究表明,KF 通过与碱基形成几个氢键,在 Pu22 的 3'-末端附近结合。这些发现表明 KF 是 c-MYC 启动子四链体 DNA 的潜在配体,可用于癌症治疗。