Kinase-targeted covalent inhibitors are usually irreversibly targeting noncatalytic cysteines in the ATP- binding site. These compounds are designed by directly introducing an electrophile on a reversible-inhibitor scaffold. Our invention relates to novel triazine compounds, containing chemical reactive groups (warheads), targeting a solvent exposed cysteine at > 10 A from the core reversible inhibitor. A variety of novel linkers have been designed and used to link the warhead with the reversible scaffold. We disclose a novel chemical space for drug-like covalent modifiers of phosphoinositide 3-kinase alpha (PI3Ka), an enzyme frequently altered in human malignancies. The invention relates to novel covalent inhibitors showing higher in vitro affinity, cellular potency and improved metabolic stability (rat liver microsomes). The compounds of the invention couldbe exploited as therapeutic agents and chemical probes useful for modulating cellular activities such as signal transduction, proliferation, differentiation and cell death.

TRIAZINE DERIVATIVE AS COVALENT INHIBITORS OF PI3K / M. Wymann, C. Borsari.

TRIAZINE DERIVATIVE AS COVALENT INHIBITORS OF PI3K

C. Borsari
2022

Abstract

Kinase-targeted covalent inhibitors are usually irreversibly targeting noncatalytic cysteines in the ATP- binding site. These compounds are designed by directly introducing an electrophile on a reversible-inhibitor scaffold. Our invention relates to novel triazine compounds, containing chemical reactive groups (warheads), targeting a solvent exposed cysteine at > 10 A from the core reversible inhibitor. A variety of novel linkers have been designed and used to link the warhead with the reversible scaffold. We disclose a novel chemical space for drug-like covalent modifiers of phosphoinositide 3-kinase alpha (PI3Ka), an enzyme frequently altered in human malignancies. The invention relates to novel covalent inhibitors showing higher in vitro affinity, cellular potency and improved metabolic stability (rat liver microsomes). The compounds of the invention couldbe exploited as therapeutic agents and chemical probes useful for modulating cellular activities such as signal transduction, proliferation, differentiation and cell death.
Universität Basel
Altro
This patent was developed in the context of the Stiftung für Krebsbekämpfung grant 341; the Swiss National Science Foundation grants 310030_153211, 316030_133860, and 200021_204602 and the Swiss Cancer Research KFS-5442-08-2021 grant. A few compounds have been published in https://pubs.acs.org/doi/10.1021/jacs.1c13568.
Fase nazionale da priorità
EP
WO 2022/214701 A1
EP2022059548
9-apr-2022
EP21167749
13-ott-2022
Settore CHIM/08 - Chimica Farmaceutica
https://worldwide.espacenet.com/publicationDetails/biblio?CC=WO&NR=2022214701&KC=&FT=E&locale=en_EP#
miur
MIUR
Aderisco
info:eu-repo/semantics/patent
TRIAZINE DERIVATIVE AS COVALENT INHIBITORS OF PI3K / M. Wymann, C. Borsari.
2
Patent
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M. Wymann, C. Borsari
285
Prodotti della ricerca::09 - Brevetto, privativa o norma
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1019802
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