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Structure-Activity Relationships and Biological Evaluation of 7-Substituted Harmine Analogs for Human ?-Cell Proliferation.


ABSTRACT: Recently, we have shown that harmine induces ?-cell proliferation both in vitro and in vivo, mediated via the DYRK1A-NFAT pathway. We explore structure-activity relationships of the 7-position of harmine for both DYRK1A kinase inhibition and ?-cell proliferation based on our related previous structure-activity relationship studies of harmine in the context of diabetes and ?-cell specific targeting strategies. 33 harmine analogs of the 7-position substituent were synthesized and evaluated for biological activity. Two novel inhibitors were identified which showed DYRK1A inhibition and human ?-cell proliferation capability. The DYRK1A inhibitor, compound 1-2b, induced ?-cell proliferation half that of harmine at three times higher concentration. From these studies we can draw the inference that 7-position modification is limited for further harmine optimization focused on ?-cell proliferation and cell-specific targeting approach for diabetes therapeutics.

SUBMITTER: Kumar K 

PROVIDER: S-EPMC7221803 | biostudies-literature | 2020 Apr

REPOSITORIES: biostudies-literature

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Structure-Activity Relationships and Biological Evaluation of 7-Substituted Harmine Analogs for Human β-Cell Proliferation.

Kumar Kunal K   Wang Peng P   A Swartz Ethan E   Khamrui Susmita S   Secor Cody C   B Lazarus Michael M   Sanchez Roberto R   F Stewart Andrew A   DeVita Robert J RJ  

Molecules (Basel, Switzerland) 20200423 8


Recently, we have shown that harmine induces β-cell proliferation both in vitro and in vivo, mediated via the DYRK1A-NFAT pathway. We explore structure-activity relationships of the 7-position of harmine for both DYRK1A kinase inhibition and β-cell proliferation based on our related previous structure-activity relationship studies of harmine in the context of diabetes and β-cell specific targeting strategies. 33 harmine analogs of the 7-position substituent were synthesized and evaluated for bio  ...[more]

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