Article

  • The EMBO Journal (2007) 26, 2743 - 2754
  • doi:10.1038/sj.emboj.7601725

Published online: 17 May 2007

Neuronal apoptosis and reversible motor deficit in dominant-negative GSK-3 conditional transgenic mice

Raquel Gómez-Sintes1, Félix Hernández1, Analía Bortolozzi2, Francesc Artigas2, Jesús Avila1, Paola Zaratin3, Jean Pierre Gotteland4 and José J Lucas1

  1. Centro de Biología Molecular 'Severo Ochoa', CSIC/UAM, Madrid, Spain
  2. Departamento de Neuroquímica y Neurofarmacología, Instituto de Investigaciones Biomédicas de Barcelona (CSIC), IDIBAPS, Barcelona, Spain
  3. Istituto di Ricerche Biomediche 'A. Marxer', LCG-RBM/Serono Discovery, Colleretto Giacosa, Italy
  4. Merck Serono International, Geneva, Switzerland

Correspondence to:

José J Lucas, Centro de Biología Molecular 'Severo Ochoa', CSIC/UAM, Campus UAM de Cantoblanco, Madrid 28049, Spain. Tel.: +34 91 497 3595/8073; Fax: +34 91 497 8087; E-mail: jjlucas@cbm.uam.es

Received 21 November 2006; Accepted 24 April 2007


Increased glycogen synthase kinase-3 (GSK-3) activity is believed to contribute to the etiology of chronic disorders like Alzheimer's disease and diabetes, thus supporting therapeutic potential of GSK-3 inhibitors. However, sustained GSK-3 inhibition might induce tumorigenesis through beta-catenin-APC dysregulation. Besides, sustained in vivo inhibition by genetic means (constitutive knock-out mice) revealed unexpected embryonic lethality due to massive hepatocyte apoptosis. Here, we have generated transgenic mice with conditional (tetracycline system) expression of dominant-negative-GSK-3 as an alternative genetic approach to predict the outcome of chronic GSK-3 inhibition, either per se, or in combination with mouse models of disease. By choosing a postnatal neuron-specific promoter, here we specifically address the neurological consequences. Tet/DN-GSK-3 mice showed increased neuronal apoptosis and impaired motor coordination. Interestingly, DN-GSK-3 expression shut-down restored normal GSK-3 activity and re-established normal incidence of apoptosis and motor coordination. These results reveal the importance of intact GSK-3 activity for adult neuron viability and physiology and warn of potential neurological toxicity of GSK-3 pharmacological inhibition beyond physiological levels. Interestingly, the reversibility data also suggest that unwanted side effects are likely to revert if excessive GSK-3 inhibition is halted.

  • Keywords:

    • apoptosis,
    • conditional,
    • dominant negative,
    • GSK-3,
    • transgenic