Acta Chim Slov. 2021 Sep;68(3):667-682.
The activation of caspases is central to apoptotic process in living systems. Defects in apoptosis have been implicated with carcinogenesis. Need to develop smart agents capable of inducing apoptosis in tumor cells is obvious. With this motive, diversity oriented synthesis of 1-benzylpyrrolidin-3-ol analogues was envisaged. The multi component Ugi reaction synthesized library of electronically diverse analogues was explored for cytotoxic propensity towards a panel of human cancer cell lines at 10 µM. The lead compounds exhibit a selective cytotoxicity towards HL-60 cells as compared to cell lines derived from solid tumors. Besides, their milder cytotoxic effect on non-cancerous cell lines reaffirm their selective action towards cancer cells only. The lead molecules were tested for their ability to target caspase-3, as a vital protease triggering apoptosis. The lead compounds were observed to induce apoptosis in HL-60 cells around 10 µM concentration. The lead compounds exhibited various non-covalent supra type interactions with caspase-3 key residues around the active site. The binding ability of lead compounds with caspase-3 was studied via molecular docking and molecular dynamic (MD) simulations. MD simulations indicated the stability of compound-caspase-3 complex throughout the 50 ns simulation run. The stability and bio-availability of the lead compounds under physiological conditions was assessed by their interaction with Bovine Serum Albumin (BSA) as model protein. BSA interactions of lead compounds were studied by various bio-physical methods and further substantiated with in silico MD simulations.
细胞凋亡过程中 caspase 的激活是生命系统中的核心。细胞凋亡的缺陷与致癌作用有关。显然,需要开发能够诱导肿瘤细胞凋亡的智能药物。基于这一动机,我们设想了 1-苄基吡咯烷-3-醇类似物的多样性导向合成。通过多组分 Ugi 反应合成了电子多样性类似物库,并在 10µM 浓度下对一组人癌细胞系进行了细胞毒性倾向研究。与源自实体瘤的细胞系相比,先导化合物对 HL-60 细胞表现出选择性细胞毒性。此外,它们对非癌细胞系的细胞毒性作用较弱,再次证实了它们对癌细胞的选择性作用。这些先导分子被测试了它们靶向 caspase-3 的能力,因为 caspase-3 是一种触发细胞凋亡的重要蛋白酶。这些先导化合物在大约 10µM 浓度下诱导 HL-60 细胞凋亡。这些先导化合物与 caspase-3 的关键活性部位周围的关键残基表现出各种非共价超分子相互作用。通过分子对接和分子动力学 (MD) 模拟研究了先导化合物与 caspase-3 的结合能力。MD 模拟表明,在整个 50ns 的模拟运行过程中,化合物-caspase-3 复合物是稳定的。通过与牛血清白蛋白 (BSA) 作为模型蛋白的相互作用,评估了先导化合物在生理条件下的稳定性和生物利用度。通过各种生物物理方法研究了先导化合物与 BSA 的相互作用,并通过计算 MD 模拟进一步证实。