Department of Biological Science, Bose Institute, Kolkata, West Bengal, India.
J Biomol Struct Dyn. 2024;42(22):12228-12243. doi: 10.1080/07391102.2023.2268200. Epub 2023 Oct 25.
We located a 25 nt G-rich sequence in the promoter region of SMO oncogene. We performed an array of biophysical and biochemical assays and confirmed the formation of a parallel G quadruplex (SMO1-GQ) by the identified sequence. SMO1-GQ is highly conserved in primates. For a comprehensive characterization of the SMO quadruplex structure, we have performed spectroscopic and analysis with established GQ binder small molecules TMPyP4 and BRACO-19. We observed comparatively higher stable interaction of BRACO-19 with SMO1-GQ. Structure-based, rational drug design against SMO1-GQ to target SMO oncogene requires a detailed molecular anatomy of the G-quadruplex. We structurally characterised the SMO1-GQ using DMS footprinting assay and molecular modelling, docking, and MD simulation to identify the probable atomic regions that interact with either of the small molecules. We further investigated SMO1-GQ by performing chromatin immunoprecipitation (ChIP) assay. ChIP data revealed that this gene element functions as a scaffold for a number of transcription factors: specificity protein (Sp1), nucleolin (NCL), non-metastatic cell 2 (NM23-H2), cellular nucleic acid binding protein (CNBP), and heterogeneous nuclear ribonucleoprotein K (hnRNPK) which reflects the SMO1-P1 G-quadruplex to be the master regulator of SMO1 transcriptional activity. The strong binding interaction detected between SMO1-GQ and BRACO-19 contemplates the potential of the G quadruplex as a promising anti-cancer druggable target to downregulate SMO1 oncogene driven cancers.Communicated by Ramaswamy H. Sarma.
我们在 SMO 癌基因的启动子区域发现了一个 25nt 的富含 G 的序列。我们进行了一系列生物物理和生化分析,并通过鉴定的序列证实了平行 G-四链体(SMO1-GQ)的形成。SMO1-GQ 在灵长类动物中高度保守。为了全面表征 SMO 四链体结构,我们使用已建立的 GQ 结合小分子 TMPyP4 和 BRACO-19 进行了光谱和分析。我们观察到 BRACO-19 与 SMO1-GQ 的比较稳定的相互作用。基于结构的针对 SMO1-GQ 的合理药物设计以靶向 SMO 癌基因需要对 G-四链体进行详细的分子解剖。我们使用 DMS 足迹测定法和基于结构的分子建模、对接和 MD 模拟对 SMO1-GQ 进行了结构表征,以确定与小分子相互作用的可能原子区域。我们进一步通过进行染色质免疫沉淀(ChIP)实验来研究 SMO1-GQ。ChIP 数据表明,该基因元件作为许多转录因子的支架发挥作用:特异性蛋白(Sp1)、核仁素(NCL)、非转移性细胞 2(NM23-H2)、细胞核酸结合蛋白(CNBP)和异质核核糖核蛋白 K(hnRNPK),这反映了 SMO1-P1G-四链体是 SMO1 转录活性的主要调节剂。在 SMO1-GQ 和 BRACO-19 之间检测到的强结合相互作用表明 G 四链体作为一种有前途的抗癌药物靶点具有潜力,可下调 SMO1 癌基因驱动的癌症。由 Ramaswamy H. Sarma 传达。