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2.
Eur J Med Chem ; 211: 113109, 2021 Feb 05.
Artículo en Inglés | MEDLINE | ID: mdl-33360802

RESUMEN

Activation of the phosphatidylinositol 3-kinase (PI3K)/mammalian target of rapamycin (mTOR) signaling pathway occurs frequently in a wide range of human cancers and is a main driver of cell growth, proliferation, survival, and chemoresistance of cancer cells. Compounds targeting this pathway are under active development as anticancer therapeutics and some of them have reached advanced clinical trials or been approved by the FDA. Dual PI3K/mTOR inhibitors combine multiple therapeutic efficacies in a single molecule by inhibiting the pathway both upstream and downstream of AKT. Herein, we report our efforts on the exploration of novel small molecule macrocycles (MCXs) as dual PI3K/mTOR inhibitors. Macrocyclization is an attractive approach used in drug discovery, as the semi-rigid character of these structures could provide improved potency, selectivity and favorable pharmacokinetic properties. Importantly, this strategy allows access to new chemical space thus obtaining a better intellectual property position. A series of MCXs based on GSK-2126458, a known clinical PI3K/mTOR inhibitor is described. These molecules showed potent biochemical and cellular dual PI3K/mTOR inhibition, demonstrated strong antitumoral effects in human cancer cell lines, and displayed good drug-like properties. Among them, MCX 83 presented remarkable selectivity against a panel of 468 kinases, high in vitro metabolic stability, and favorable pharmacokinetic parameters without significant CYP450 and h-ERG binding inhibition. This profile qualified this compound as a suitable candidate for future in vivo PK-PD and efficacy studies in mouse cancer models.


Asunto(s)
Fosfatidilinositol 3-Quinasas/uso terapéutico , Inhibidores de Proteínas Quinasas/uso terapéutico , Quinolinas/uso terapéutico , Sulfonamidas/uso terapéutico , Serina-Treonina Quinasas TOR/metabolismo , Humanos , Fosfatidilinositol 3-Quinasas/farmacología , Inhibidores de Proteínas Quinasas/farmacología , Piridazinas , Quinolinas/farmacología , Sulfonamidas/farmacología
3.
Eur J Med Chem ; 201: 112443, 2020 Sep 01.
Artículo en Inglés | MEDLINE | ID: mdl-32599324

RESUMEN

CDK8 is a cyclin-dependent kinase that forms part of the mediator complex, and modulates the transcriptional output from distinct transcription factors involved in oncogenic control. Overexpression of CDK8 has been observed in various cancers, representing a potential target for developing novel CDK8 inhibitors in cancer therapeutics. In the course of our investigations to discover new CDK8 inhibitors, we designed and synthesized tricyclic pyrido[2,3-b][1,5]benzoxazepin-5(6H)-one derivatives, by introduction of chemical complexity in the multi-kinase inhibitor Sorafenib taking into account the flexibility of the P-loop motif of CDK8 protein observed after analysis of structural information of co-crystallized CDK8 inhibitors. In vitro evaluation of the inhibitory activity of the prepared compounds against CDK8 led us to identify compound 2 as the most potent inhibitor of the series (IC50 = 8.25 nM). Co-crystal studies and the remarkable selectivity profile of compound 2 are presented. Compound 2 showed moderate reduction of phosphorylation of CDK8 substrate STAT1 in cells, in line with other reported Type II CDK8 inhibitors. We propose herein an alternative to find a potential therapeutic use for this chemical series.


Asunto(s)
Quinasa 8 Dependiente de Ciclina/antagonistas & inhibidores , Oxazepinas/farmacología , Inhibidores de Proteínas Quinasas/farmacología , Piridinas/farmacología , Sorafenib/análogos & derivados , Sorafenib/farmacología , Línea Celular Tumoral , Diseño de Fármacos , Humanos , Estructura Molecular , Oxazepinas/síntesis química , Inhibidores de Proteínas Quinasas/síntesis química , Piridinas/síntesis química , Relación Estructura-Actividad
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