Department of Medicinal Chemistry and Molecular Pharmacology, College of Pharmacy, Purdue University, 575 W Stadium Ave, West Lafayette, IN 47907, USA.
MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, School of Chemistry, Sun Yat-Sen University, Guangzhou 510275, China.
Nucleic Acids Res. 2019 Dec 16;47(22):11931-11942. doi: 10.1093/nar/gkz1015.
BMVC is the first fluorescent probe designed to detect G-quadruplexes (G4s) in vivo. The MYC oncogene promoter forms a G4 (MycG4) which acts as a transcription silencer. Here, we report the high-affinity and specific binding of BMVC to MycG4 with unusual slow-exchange rates on the NMR timescale. We also show that BMVC represses MYC in cancer cells. We determined the solution structures of the 1:1 and 2:1 BMVC-MycG4 complexes. BMVC first binds the 5'-end of MycG4 to form a 1:1 complex with a well-defined structure. At higher ratio, BMVC also binds the 3'-end to form a second complex. In both complexes, the crescent-shaped BMVC recruits a flanking DNA residue to form a BMVC-base plane stacking over the external G-tetrad. Remarkably, BMVC adjusts its conformation to a contracted form to match the G-tetrad for an optimal stacking interaction. This is the first structural example showing the importance of ligand conformational adjustment in G4 recognition. BMVC binds the more accessible 5'-end with higher affinity, whereas sequence specificity is present at the weaker-binding 3'-site. Our structures provide insights into specific recognition of MycG4 by BMVC and useful information for design of G4-targeted anticancer drugs and fluorescent probes.
BMVC 是首个设计用于在体内检测 G-四链体 (G4s) 的荧光探针。MYC 癌基因启动子形成 G4(MycG4),作为转录沉默子。在这里,我们报告了 BMVC 与 MycG4 的高亲和力和特异性结合,其在 NMR 时间尺度上具有异常缓慢的交换率。我们还表明,BMVC 可抑制癌细胞中的 MYC。我们确定了 1:1 和 2:1 BMVC-MycG4 复合物的溶液结构。BMVC 首先结合 MycG4 的 5'-端,形成具有明确结构的 1:1 复合物。在更高的比例下,BMVC 还结合 3'-端形成第二个复合物。在两个复合物中,新月形的 BMVC 招募侧翼 DNA 残基形成 BMVC-碱基平面堆积在外部 G-四联体上。值得注意的是,BMVC 调整其构象以匹配 G-四联体以形成最佳堆积相互作用的收缩形式。这是第一个展示配体构象调整在 G4 识别中的重要性的结构实例。BMVC 以更高的亲和力结合更易接近的 5'-端,而序列特异性存在于结合较弱的 3'-位点。我们的结构为 BMVC 特异性识别 MycG4 提供了深入的了解,并为设计针对 G4 的抗癌药物和荧光探针提供了有用的信息。