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Reduction of Trophic Support Enhances Apoptosis in PC12 Cells Expressing Alzheimer's APP Mutation and Sensitizes Cells to Staurosporine-Induced Cell Death</atl>

Authors :
Celio A. Marques
Barbara Steiner
Anne Eckert
Christian Haass
Steffen Leutz
Walter E. Müller
Source :
Journal of Molecular Neuroscience. 18:189-202
Publication Year :
2002
Publisher :
Springer Science and Business Media LLC, 2002.

Abstract

Mutations in the amyloid precursor protein (APP) gene are known as causative factors in the pathogenesis of early-onset familial Alzheimer&#39;s disease (FAD). In this study, the influence of the Swedish double-mutation form of APP (APPsw; KM670/671NL) on apoptosis regulation in PC12 cells was investigated. APPsw-transfected PC12 cells were compared with wild-type APP (APPwt)-expressing and vector-transfected PC12 cells with regard to their susceptibility to cell death induced by the reduction of trophic support or by additional treatment with staurosporine. Expression of APPsw markedly enhanced the level of apoptotic PC12 cells induced by serum reduction. A similar hypersensitivity of APPsw-expressing PC12 cells could be detected after differentiation with nerve growth factor under serum-reduced conditions. Likewise, the expression of APPsw rendered PC12 cells more vulnerable to staurosporine but only under serum-reduced conditions. This APPsw-effect disappeared in high serum-containing medium. Thus, expression of APPsw seems to enhance cellular sensitivity not in general but after the reduction of trophic factors probably by causing oxidative stress. This, in turn, may sensitize cells to secondary apoptotic stimuli. Moreover, the mutation-specific increase in vulnerability to cell death was only seen at the stage of apoptotic nuclei, but not using methods measuring cell death by determining metabolic activity or membrane integrity. Therefore, the expression of APPsw seems to affect specifically apoptotic cell death rather than overall cell death in vitro. Our study further emphasizes the pathogenic role of mutant APP and may provide new insights in the mechanisms underlying the massive neurodegeneration in brain from patients bearing the APPsw mutation.

Details

ISSN :
08958696
Volume :
18
Database :
OpenAIRE
Journal :
Journal of Molecular Neuroscience
Accession number :
edsair.doi.dedup.....4f42efe3f7d7deaf4172d0e0d527c6fd
Full Text :
https://doi.org/10.1385/jmn:18:3:189