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天然化合物二烯丙基茶碱选择性靶向与癌症相关的 G-四链体结构。

Selective Targeting of Cancer-Related G-Quadruplex Structures by the Natural Compound Dicentrine.

机构信息

Department of Chemical Sciences, University of Naples Federico II, Complesso Universitario di Monte S. Angelo, Via Cintia, 21, 80126 Napoli, Italy.

Department of Chemistry and Technology of Drugs, Sapienza University of Rome, Piazzale Aldo Moro 5, 00185 Rome, Italy.

出版信息

Int J Mol Sci. 2023 Feb 17;24(4):4070. doi: 10.3390/ijms24044070.

Abstract

Aiming to identify highly effective and selective G-quadruplex ligands as anticancer candidates, five natural compounds were investigated here, i.e., the alkaloids Canadine, D-Glaucine and Dicentrine, as well as the flavonoids Deguelin and Millettone, selected as analogs of compounds previously identified as promising G-quadruplex-targeting ligands. A preliminary screening with the G-quadruplex on the Controlled Pore Glass assay proved that, among the investigated compounds, Dicentrine is the most effective ligand of telomeric and oncogenic G-quadruplexes, also showing good G-quadruplex vs. duplex selectivity. In-depth studies in solution demonstrated the ability of Dicentrine to thermally stabilize telomeric and oncogenic G-quadruplexes without affecting the control duplex. Interestingly, it showed higher affinity for the investigated G-quadruplex structures over the control duplex (K~10 vs. 10 M), with some preference for the telomeric over the oncogenic G-quadruplex model. Molecular dynamics simulations indicated that Dicentrine preferentially binds the G-quadruplex groove or the outer G-tetrad for the telomeric and oncogenic G-quadruplexes, respectively. Finally, biological assays proved that Dicentrine is highly effective in promoting potent and selective anticancer activity by inducing cell cycle arrest through apoptosis, preferentially targeting G-quadruplex structures localized at telomeres. Taken together, these data validate Dicentrine as a putative anticancer candidate drug selectively targeting cancer-related G-quadruplex structures.

摘要

为了鉴定高效且选择性的 G-四链体配体作为抗癌候选物,我们研究了 5 种天然化合物,即生物碱加拿大麻定碱、D-色氨酸和二千金藤定碱,以及黄酮类化合物大黄素和瑞香素,它们被选为先前鉴定的有希望的 G-四链体靶向配体的类似物。在受控孔玻璃测定中对 G-四链体的初步筛选证明,在所研究的化合物中,二千金藤定碱是端粒和致癌 G-四链体的最有效配体,也表现出良好的 G-四链体与双链体选择性。在溶液中的深入研究表明,二千金藤定碱能够热稳定端粒和致癌 G-四链体,而不影响对照双链体。有趣的是,它对所研究的 G-四链体结构的亲和力高于对照双链体(K~10 对 10 M),对端粒 G-四链体的亲和力略高于致癌 G-四链体模型。分子动力学模拟表明,二千金藤定碱分别优先结合端粒和致癌 G-四链体的 G-四链体凹槽或外 G-四联体。最后,生物测定证明,二千金藤定碱通过诱导细胞周期停滞通过凋亡,高度有效地促进有效的和选择性的抗癌活性,优先靶向定位于端粒的 G-四链体结构。总之,这些数据验证了二千金藤定碱作为一种潜在的抗癌候选药物,选择性地针对与癌症相关的 G-四链体结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e673/9959918/09b9d9b9cd65/ijms-24-04070-g001.jpg

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