Generation of highly potent DYRK1A-dependent inducers of human β-Cell replication via Multi-Dimensional compound optimization.
| Citation | Allegretti, Paul A, et al. “Generation of Highly Potent DYRK1A-Dependent Inducers of Human β-Cell Replication via Multi-Dimensional Compound Optimization”. 2020. Bioorganic & Medicinal Chemistry, vol. 28, no. 1, 2020, p. 115193. |
| Center | Stanford University |
| Author | Paul A Allegretti, Timothy M Horton, Yassan Abdolazimi, Hannah P Moeller, Benjamin Yeh, Matthew Caffet, Guillermina Michel, Mark Smith, Justin P Annes |
| Keywords | diabetes, Dual-specificity tyrosine-regulated kinase 1A (DYRK1A), Medicinal chemistry, β-cell regeneration, β-cell replication |
| Abstract |
Small molecule stimulation of β-cell regeneration has emerged as a promising therapeutic strategy for diabetes. Although chemical inhibition of dual specificity tyrosine-phosphorylation-regulated kinase 1A (DYRK1A) is sufficient to enhance β-cell replication, current lead compounds have inadequate cellular potency for in vivo application. Herein, we report the clinical stage anti-cancer kinase inhibitor OTS167 as a structurally novel, remarkably potent DYRK1A inhibitor and inducer of human β-cell replication. Unfortunately, OTS167's target promiscuity and cytotoxicity curtails utility. To tailor kinase selectivity towards DYRK1A and reduce cytotoxicity we designed a library of fifty-one OTS167 derivatives based upon a modeled structure of the DYRK1A-OTS167 complex. Indeed, derivative characterization yielded several leads with exceptional DYRK1A inhibition and human β-cell replication promoting potencies but substantially reduced cytotoxicity. These compounds are the most potent human β-cell replication-promoting compounds yet described and exemplify the potential to purposefully leverage off-target activities of advanced stage compounds for a desired application. |
| Year of Publication |
2020
|
| Journal |
Bioorganic & medicinal chemistry
|
| Volume |
28
|
| Issue |
1
|
| Number of Pages |
115193
|
| Date Published |
01/2020
|
| ISSN Number |
1464-3391
|
| DOI |
10.1016/j.bmc.2019.115193
|
| Alternate Journal |
Bioorg. Med. Chem.
|
| PMCID |
PMC6941846
|
| PMID |
31757680
|
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