The novel potent GSK3 inhibitor AF3581 reverts fragile X syndrome phenotype

Author:

Porceddu Pier Francesca1ORCID,Ciampoli Mariasole1,Romeo Elisa1,Garrone Beatrice2,Durando Lucia2,Milanese Claudio2,Di Giorgio Francesco Paolo2,Reggiani Angelo1

Affiliation:

1. D3 Validation Research Line, Istituto Italiano di Tecnologia, Via Morego 30, (16163), Genova, Italy

2. Angelini Pharma S.p.A., Viale Amelia 70, 00181, Rome, Italy

Abstract

Abstract Glycogen synthase kinase 3 (GSK3) is a kinase mediating phosphorylation on serine and threonine amino acid residues of several target molecules. The enzyme is involved in the regulation of many cellular processes and aberrant activity of GSK3 has been linked to several disease conditions such as Fragile X Syndrome (FXS). Recent evidences demonstrating an increased activity of GSK3 in murine models of FXS, suggest that dysregulation/hyperactivation of the GSK3 path should contribute to FXS development. A likely possibility could be that in FXS there is a functional impairment of the upstream inhibitory input over GSK3 thus making overactive the kinase. Since GSK3 signaling is a central regulatory node for critical neurodevelopmental pathways, understanding the contribution of GSK3 dysregulation to FXS, may provide novel targets for therapeutic interventions for this disease. In this study we used AF3581, a potent GSK3 inhibitor that we recently discovered, in an in vivo FXS mouse model to elucidate the crucial role of GSK3 in specific behavioral patterns (locomotor activity, sensorimotor gating and social behavior) associated with this disease. All the behavioral alterations manifested by Fmr1 knockout mice were reverted after a chronic treatment with our GSK3 inhibitor, confirming the importance of this pathway as a therapeutic target.

Publisher

Oxford University Press (OUP)

Subject

Genetics(clinical),Genetics,Molecular Biology,General Medicine

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