1265828-97-4Relevant academic research and scientific papers
Novel soluble myeloid cell leukemia sequence 1 (Mcl-1) inhibitor (E,E)-2-(benzylaminocarbonyl)-3-styrylacrylonitrile (4g) developed using a fragment-based approach
Zhang, Zhichao,Song, Ting,Li, Xiangqian,Wu, Zhiyong,Feng, Yingang,Xie, Feibo,Liu, Chengwu,Qin, Jianquan,Chen, Hongbo
, p. 141 - 149 (2013/03/13)
Based on a known nanomolar Bcl-2 homology domain 3 (BH3) mimetic 3-thiomorpholin-8-oxo-8H-acenaphtho[1,2-b] pyrrole-9-carbonitrile (S1, MW: 331), we applied a fragment-based approach to obtain BH3 mimetics with improved affinity and improved solubility in a water-ethanol (9:1) cosolvent. After the deconstruction of 1 (S1), we obtained fragment cyanoacetamide (4), which was determined to be a ligand efficiency (LE) hot part. After a rational optimization through fragment evolution beginning with fragment 4, a smaller Mcl-1 inhibitor (E,E)-2-(benzylaminocarbonyl)-3-styrylacrylonitrile (4g, MW: 288) with a 6-fold increase in affinity compared to 1 was obtained, as predicted by our optimization curve and identified by Mcl-1 protein nuclear magnetic resonance (NMR).
3-Thiomorpholin-8-oxo-8 h -acenaphtho[1,2- b ]pyrrole-9-carbonitrile (S1) based molecules as potent, dual inhibitors of B-cell lymphoma 2 (Bcl-2) and myeloid cell leukemia sequence 1 (Mcl-1): Structure-based design and structure-activity relationship studies
Zhang, Zhichao,Wu, Guiye,Xie, Feibo,Song, Ting,Chang, Xilong
, p. 1101 - 1105 (2011/04/25)
We recently described the discovery of a dual inhibitor of Bcl-2 and Mcl-1, 3-thiomorpholin-8-oxo-8H-acenaphtho[1,2-b]pyrrole-9-carbonitrile (3, S1). Here we report a structure-guided design in combination with structure-activity relationship studies to exploit the difference in the p2 binding pocket of Bcl-2 and Mcl-1, from which a novel dual inhibitor 3-(4-aminophenylthio)-8-oxo-8H- acenaphtho[1,2-b]pyrrole-9-carbonitrile (6h) was obtained, which showed significant enhanced IC50 value against Mcl-1 (5 nM), greater Mcl-1/Bak disruption potential, and accordingly a 10-fold increased cytotoxicity over 3.
Probing the difference between BH3 groove of Mcl-1 and Bcl-2 protein: Implications for dual inhibitors design
Zhang, Zhichao,Yang, Hongna,Wu, Guiye,Li, Zhiqiang,Song, Ting,Li, Xiang Qian
, p. 3909 - 3916 (2011/11/12)
Based on our previous discovery of a dual inhibitor of Mcl-1 and Bcl-2, 3-thiomorpholin-8-oxo-8H-acenaphtho[1,2-b]pyrrole-9-carbonitrile (1, S1), and guided by structure insight of 1 complex with Mcl-1 and Bcl-2, we exploited the spatial orientation of BH3 groove of the two proteins by a series of analogues of 1. These analogues contain substitutes with various steric hindrance designed to explore the width and length of the p2 pocket. The structure-activity relationships (SARs) studies together with docking studies and cell-based assays proved that the p2 pocket of Mcl-1 is relatively wider and shorter than that of Bcl-2. A novel dual inhibitor 6 was obtained based on these new findings that it exhibited nanomalar affinities toward Mcl-1 and Bcl-2, as well as nanomalar cytotoxicity activity against multiple cancer cell lines.
