| Literature DB >> 27594550 |
Xia Tian1, Juan Feng2, Shi-Ming Fan3, Xiao-Li Zhen1, Jian-Rong Han4, Shou-Xin Liu5.
Abstract
A series of arylidene N-alkoxydiketopiperazines was designed and stereoselectively synthesized via oxime-ether formation and intramolecular acylation. Possible cyclization and acid-catalyzed rearrangement-fragmentation mechanisms were discussed. The crystal structure of the novel diketopiperazine further confirmed the rearrangement mechanism. Most compounds exhibited antitumor activity. Several compounds were more potent against caspase-3. Specifically, compounds 6e, 6g, and 6f inhibited caspase-3 at IC50 values lying within the low micromolar range and demonstrated good selectivity. The binding modes of alkoxydiketopiperazines in the active center of caspase-3 were also discussed based on the molecular docking results.Entities:
Keywords: Antitumor activities; Arylidene N-alkoxydiketopiperazines; Caspase-3; Inhibitory activity; Molecular docking; Synthesis
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Year: 2016 PMID: 27594550 DOI: 10.1016/j.bmc.2016.08.038
Source DB: PubMed Journal: Bioorg Med Chem ISSN: 0968-0896 Impact factor: 3.641