Neurobiology of Aging
Volume 28, Issue 3 , Pages 371-376, March 2007

Presenilin 2 mutations alter cystatin C trafficking in mouse primary neurons

  • Roberta Ghidoni

      Affiliations

    • NeuroBioGen Lab-Memory Clinic, IRCCS “Centro S. Giovanni di Dio-FBF”, AFaR, Brescia, Italy
    • These authors contributed equally to this work.
  • ,
  • Luisa Benussi

      Affiliations

    • NeuroBioGen Lab-Memory Clinic, IRCCS “Centro S. Giovanni di Dio-FBF”, AFaR, Brescia, Italy
    • These authors contributed equally to this work.
  • ,
  • Anna Paterlini

      Affiliations

    • NeuroBioGen Lab-Memory Clinic, IRCCS “Centro S. Giovanni di Dio-FBF”, AFaR, Brescia, Italy
  • ,
  • Cristina Missale

      Affiliations

    • Division of Pharmacology, Department of Biomedical Sciences and Biotechnology, Centre of Excellence on Diagnostic and Therapeutic Innovation, University of Brescia, Brescia, Italy
  • ,
  • Alessia Usardi

      Affiliations

    • NeuroBioGen Lab-Memory Clinic, IRCCS “Centro S. Giovanni di Dio-FBF”, AFaR, Brescia, Italy
  • ,
  • Rossana Rossi

      Affiliations

    • NeuroBioGen Lab-Memory Clinic, IRCCS “Centro S. Giovanni di Dio-FBF”, AFaR, Brescia, Italy
  • ,
  • Laura Barbiero

      Affiliations

    • NeuroBioGen Lab-Memory Clinic, IRCCS “Centro S. Giovanni di Dio-FBF”, AFaR, Brescia, Italy
  • ,
  • PierFranco Spano

      Affiliations

    • Division of Pharmacology, Department of Biomedical Sciences and Biotechnology, Centre of Excellence on Diagnostic and Therapeutic Innovation, University of Brescia, Brescia, Italy
  • ,
  • Giuliano Binetti

      Affiliations

    • NeuroBioGen Lab-Memory Clinic, IRCCS “Centro S. Giovanni di Dio-FBF”, AFaR, Brescia, Italy
    • Corresponding Author InformationCorresponding author at: NeuroBioGen Lab-Memory Clinic, IRCCS “Centro San Giovanni di Dio-Fatebenefratelli”, via Pilastroni 4, 25125 Brescia, Italy. Tel.: +39 030 3501709; fax: +39 030 3533513.

Received 30 May 2005; received in revised form 30 December 2005; accepted 21 January 2006. published online 21 March 2006.

Abstract 

Mutations in the presenilin genes account for the majority of familial Alzheimer disease (FAD) cases. In the present report we demonstrated that the FAD-linked presenilin 2 mutations (PS2 M239I and T122R) alter cystatin C trafficking in mouse primary neurons reducing secretion of its glycosylated form. These mutations showed a different impact on cystatin C: PS2 T122R had a much stronger effect determining a dramatic intracellular accumulation of cystatin C (native and glycosylated), followed by a reduction in the secretion of both forms. Several experimental evidences suggest that cystatin C exerts a protective role in the brain and favors stem cells proliferation. Confocal imaging showed that the effect of PS2 T122R mutation was a massive recruitment of cystatin C into the neuronal processes, in the presence of an intact cytoskeletal structure. The consequent reduction in the cystatin C extracellular levels might result in a failure of neuroregeneration. Understanding the interplay of PS2 and cystatin C in the pathogenesis of AD might highlight new therapeutic prospective.

Keywords: Presenilin 2, Mutation, Familial Alzheimer disease, Cysteine protease, Protein secretion, Glycosylated cystatin C

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PII: S0197-4580(06)00039-X

doi:10.1016/j.neurobiolaging.2006.01.007

Neurobiology of Aging
Volume 28, Issue 3 , Pages 371-376, March 2007