Lysine acetylation is a post-translational modification of both histone and nonhistone proteins that is catalyzed by lysine acetyltransferases and plays a key role in numerous biological contexts. The dysregulation of this enzyme activity is implicated in many human pathologies such as cancer, neurological and inflammatory disorders. Many lysine acetyltransferase inhibitors (KATi) have been developed so far, but there is still the need for new, more potent, metabolically stable and selective KATi as chemical tools for studying KAT biology and/or as potential therapeutic agents. This review will examine the features of KAT enzymes and related diseases, with particular emphasis on KATi (bisubstrate analogs, natural compounds and synthetic derivatives), analyzing their mechanism of action, structure-activity relationships, pharmacokinetic/pharmacodynamic properties and potential future applications.

Lysine acetyltransferase inhibitors: structure-activity relationships and potential therapeutic implications / Fiorentino, Francesco; Mai, Antonello; Rotili, Dante. - In: FUTURE MEDICINAL CHEMISTRY. - ISSN 1756-8919. - STAMPA. - 10:9(2018), pp. 1067-1091. [10.4155/fmc-2017-0244]

Lysine acetyltransferase inhibitors: structure-activity relationships and potential therapeutic implications

Fiorentino, Francesco;Mai, Antonello;Rotili, Dante
2018

Abstract

Lysine acetylation is a post-translational modification of both histone and nonhistone proteins that is catalyzed by lysine acetyltransferases and plays a key role in numerous biological contexts. The dysregulation of this enzyme activity is implicated in many human pathologies such as cancer, neurological and inflammatory disorders. Many lysine acetyltransferase inhibitors (KATi) have been developed so far, but there is still the need for new, more potent, metabolically stable and selective KATi as chemical tools for studying KAT biology and/or as potential therapeutic agents. This review will examine the features of KAT enzymes and related diseases, with particular emphasis on KATi (bisubstrate analogs, natural compounds and synthetic derivatives), analyzing their mechanism of action, structure-activity relationships, pharmacokinetic/pharmacodynamic properties and potential future applications.
2018
cancer; chemical probes; co-crystal structure; epigenetics; inhibitor kinetics; KAT inhibitors; lysine acetyltransferases; structure-based drug discovery; molecular medicine; pharmacology; drug discovery3003 pharmaceutical science
01 Pubblicazione su rivista::01a Articolo in rivista
Lysine acetyltransferase inhibitors: structure-activity relationships and potential therapeutic implications / Fiorentino, Francesco; Mai, Antonello; Rotili, Dante. - In: FUTURE MEDICINAL CHEMISTRY. - ISSN 1756-8919. - STAMPA. - 10:9(2018), pp. 1067-1091. [10.4155/fmc-2017-0244]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1147231
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