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      Modulation of GSK-3 as a Therapeutic Strategy on Tau Pathologies

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          Abstract

          Glycogen synthase kinase-3 (GSK-3) is ubiquitously expressed and unusually active in resting, non-stimulated cells. In mammals, at least three proteins (α, β1, and β2), generated from two different genes, gsk-3α and gsk-3β, are widely expressed at both the RNA and protein levels although some tissues show preferential expression of some of the three proteins. Control of GSK-3 activity occurs by complex mechanisms that depend on specific signaling pathways, often controlling the inhibition of the kinase activity. GSK-3 appears to integrate different signaling pathways from a wide selection of cellular stimuli. The unique position of GSK-3 in modulating the function of a diverse series of proteins and its association with a wide variety of human disorders has attracted significant attention as a therapeutic target and as a means to understand the molecular basis of brain disorders. Different neurodegenerative diseases including frontotemporal dementia, progressive supranuclear palsy, and Alzheimer’s disease, present prominent tau pathology such as tau hyperphosphorylation and aggregation and are collectively referred to as tauopathies. GSK-3 has also been associated to different neuropsychiatric disorders, like schizophrenia and bipolar disorder. GSK-3β is the major kinase to phosphorylate tau both in vitro and in vivo and has been proposed as a target for therapeutic intervention. The first therapeutic strategy to modulate GSK-3 activity was the direct inhibition of its kinase activity. This review will focus on the signaling pathways involved in the control of GSK-3 activity and its pathological deregulation. We will highlight different alternatives of GSK-3 modulation including the direct pharmacological inhibition as compared to the modulation by upstream regulators.

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          Most cited references120

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          Inhibition of glycogen synthase kinase-3 by insulin mediated by protein kinase B.

          Glycogen synthase kinase-3 (GSK3) is implicated in the regulation of several physiological processes, including the control of glycogen and protein synthesis by insulin, modulation of the transcription factors AP-1 and CREB, the specification of cell fate in Drosophila and dorsoventral patterning in Xenopus embryos. GSK3 is inhibited by serine phosphorylation in response to insulin or growth factors and in vitro by either MAP kinase-activated protein (MAPKAP) kinase-1 (also known as p90rsk) or p70 ribosomal S6 kinase (p70S6k). Here we show, however, that agents which prevent the activation of both MAPKAP kinase-1 and p70S6k by insulin in vivo do not block the phosphorylation and inhibition of GSK3. Another insulin-stimulated protein kinase inactivates GSK3 under these conditions, and we demonstrate that it is the product of the proto-oncogene protein kinase B (PKB, also known as Akt/RAC). Like the inhibition of GSK3 (refs 10, 14), the activation of PKB is prevented by inhibitors of phosphatidylinositol (PI) 3-kinase.
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            Tau-mediated neurodegeneration in Alzheimer's disease and related disorders.

            Advances in our understanding of the mechanisms of tau-mediated neurodegeneration in Alzheimer's disease (AD) and related tauopathies, which are characterized by prominent CNS accumulations of fibrillar tau inclusions, are rapidly moving this previously underexplored disease pathway to centre stage for disease-modifying drug discovery efforts. However, controversies abound concerning whether or not the deleterious effects of tau pathologies result from toxic gains-of-function by pathological tau or from critical losses of normal tau function in the disease state. This Review summarizes the most recent advances in our knowledge of the mechanisms of tau-mediated neurodegeneration to forge an integrated concept of those tau-linked disease processes that drive the onset and progression of AD and related tauopathies.
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              The renaissance of GSK3.

              Glycogen synthase kinase 3 (GSK3) was initially described as a key enzyme involved in glycogen metabolism, but is now known to regulate a diverse array of cell functions. The study of the substrate specificity and regulation of GSK3 activity has been important in the quest for therapeutic intervention.
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                Author and article information

                Journal
                Front Mol Neurosci
                Front. Mol. Neurosci.
                Frontiers in Molecular Neuroscience
                Frontiers Research Foundation
                1662-5099
                05 October 2011
                2011
                : 4
                : 24
                Affiliations
                [1] 1simpleResearch Department, Noscira S.A., Tres Cantos Madrid, Spain
                [2] 2simpleDepartamento de Neurobiología Celular, Molecular y del Desarrollo, Instituto Cajal, Consejo Superior de Investigaciones Cientificas Madrid, Spain
                [3] 3simpleCentro de Biología Molecular “Severo Ochoa,” CSIC-UAM-CIBERNED, Cantoblanco Madrid, Spain
                Author notes

                Edited by: Richard Scott Jope, University of Alabama at Birmingham, USA

                Reviewed by: Jesus Avila, Centro de Biología Molecular Severo Ochoa CSIC-UAM, Spain; Mathieu Lesort, University of Alabama at Birmingham, USA

                *Correspondence: Francisco G. Wandosell, Centro de Biología Molecular “Severo Ochoa,” CSIC-UAM-CIBERNED, Nicolás Cabrera 1, 28049 Madrid, Spain. e-mail: fwandosell@ 123456cbm.csic.es
                Article
                10.3389/fnmol.2011.00024
                3186940
                22007157
                9ddd8c16-8d67-4eda-83a7-e7b113ec2542
                Copyright © 2011 Medina, Garrido and Wandosell.

                This is an open-access article subject to a non-exclusive license between the authors and Frontiers Media SA, which permits use, distribution and reproduction in other forums, provided the original authors and source are credited and other Frontiers conditions are complied with.

                History
                : 26 July 2011
                : 30 August 2011
                Page count
                Figures: 0, Tables: 1, Equations: 0, References: 141, Pages: 10, Words: 10538
                Categories
                Neuroscience
                Review Article

                Neurosciences
                alzheimer,tau pathologies,kinases modulation,gsk-3
                Neurosciences
                alzheimer, tau pathologies, kinases modulation, gsk-3

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