A novel spiroindoline targets cell cycle and migration via modulation of microtubule cytoskeleton

被引:0
作者
Naveen Kumar
Santanu Hati
Parthapratim Munshi
Subhabrata Sen
Seema Sehrawat
Shailja Singh
机构
[1] Shiv Nadar University,Brain Metastasis and NeuroVascular Disease Modeling Lab, Department of Life Sciences, School of Natural Sciences
[2] Brigham and Women’s Hospital,Department of Medicine
[3] Shiv Nadar University,Department of Chemistry, School of Natural Sciences
[4] Shiv Nadar University,Host Pathogen Interactions and Disease modeling Group, Department of Life Sciences, School of Natural Sciences
[5] JNU,Special Centre for Molecular Medicine
来源
Molecular and Cellular Biochemistry | 2017年 / 429卷
关键词
Spiroindolines; AKAP9; Tubulin; Breast cancer; Cell migration; Cytoskeleton; DOS;
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学科分类号
摘要
Natural product-inspired libraries of molecules with diverse architectures have evolved as one of the most useful tools for discovering lead molecules for drug discovery. In comparison to conventional combinatorial libraries, these molecules have been inferred to perform better in phenotypic screening against complicated targets. Diversity-oriented synthesis (DOS) is a forward directional strategy to access such multifaceted library of molecules. From a successful DOS campaign of a natural product-inspired library, recently a small molecule with spiroindoline motif was identified as a potent anti-breast cancer compound. Herein we report the subcellular studies performed for this molecule on breast cancer cells. Our investigation revealed that it repositions microtubule cytoskeleton and displaces AKAP9 located at the microtubule organization centre. DNA ladder assay and cell cycle experiments further established the molecule as an apoptotic agent. This work further substantiated the amalgamation of DOS-phenotypic screening-sub-cellular studies as a consolidated blueprint for the discovery of potential pharmaceutical drug candidates.
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页码:11 / 21
页数:10
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