Literature DB >> 17276981

p53-Dependent Aph-1 and Pen-2 anti-apoptotic phenotype requires the integrity of the gamma-secretase complex but is independent of its activity.

Julie Dunys1, Toshitaka Kawarai, Jean Sevalle, Virginia Dolcini, Peter St George-Hyslop, Cristine Alves Da Costa, Frédéric Checler.   

Abstract

The presenilin-dependent gamma-secretase activity, which is responsible for the generation of amyloid beta-peptide, is a high molecular weight complex composed of at least four components, namely, presenilin-1 (or presenilin-2), nicastrin, Aph-1, and Pen-2. Previous data indicated that presenilins, which are thought to harbor the catalytic core of the complex, also control p53-dependent cell death. Whether the other components of the gamma-secretase complex could also modulate the cell death process in mammalian neurons remained to be established. Here, we examined the putative contribution of Aph-1 and Pen-2 in the control of apoptosis in TSM1 cells from a neuronal origin. We show by terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling and DNA fragmentation analyses that the overexpression of Aph-1a, Aph-1b, or Pen-2 drastically lowered staurosporine-induced cellular toxicity. In support of an apoptosis rather than necrosis process, Aph-1 and Pen-2 also lower staurosporine- and etoposide-induced caspase-3 expression and diminished caspase-3 activity and poly(ADP-ribose) polymerase inactivation. The Aph-1 and Pen-2 anti-apoptotic phenotype was associated with a drastic reduction of p53 expression and activity and lowered p53 mRNA transcription. Furthermore, the Aph-1- and Pen-2-associated reduction of staurosporine-induced caspase-3 activation was fully abolished by p53 deficiency. Conversely, Aph-1a, Aph-1b, and Pen-2 gene inactivation increases both caspase-3 activity and p53 mRNA levels. Finally, we show that Aph-1 and Pen-2 did not trigger an anti-apoptotic response in cells devoid of presenilins or nicastrin, whereas the protective response was still observed in fibroblasts devoid of beta-amyloid precursor protein and amyloid precursor protein like-protein 2. Furthermore, Aph-1- and Pen-2-associated protection against staurosporine-induced caspase-3 activation was not affected by the gamma-secretase inhibitors N-[N-(3,5-difluorophenacetyl)-l-alanyl]-S-phenylglycine t-butyl ester and difluoromethylketone. Altogether, our study indicates that Aph-1 and Pen-2 trigger an anti-apoptotic response by lowering p53-dependent control of caspase-3. Our work also demonstrates that this phenotype is strictly dependent on the molecular integrity of the gamma-secretase complex but remains independent of the gamma-secretase catalytic activity.

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Year:  2007        PMID: 17276981     DOI: 10.1074/jbc.M611572200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  8 in total

1.  Emerging roles of p53 in glial cell function in health and disease.

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4.  p53-dependent control of transactivation of the Pen2 promoter by presenilins.

Authors:  Julie Dunys; Jean Sevalle; Emilie Giaime; Raphaëlle Pardossi-Piquard; Michael P Vitek; Paul Renbaum; Ephrat Levy-Lahad; Yun-wu Zhang; Huaxi Xu; Frédéric Checler; Cristine Alves da Costa
Journal:  J Cell Sci       Date:  2009-11-01       Impact factor: 5.285

5.  Genetic dissection of gamma-secretase-dependent and -independent functions of presenilin in regulating neuronal cell cycle and cell death.

Authors:  Verena Kallhoff-Munoz; Lingyun Hu; Xiaoli Chen; Robia G Pautler; Hui Zheng
Journal:  J Neurosci       Date:  2008-10-29       Impact factor: 6.167

Review 6.  The γ-secretase complex: from structure to function.

Authors:  Xian Zhang; Yanfang Li; Huaxi Xu; Yun-Wu Zhang
Journal:  Front Cell Neurosci       Date:  2014-12-11       Impact factor: 5.505

Review 7.  P53 Dysfunction in Neurodegenerative Diseases - The Cause or Effect of Pathological Changes?

Authors:  Aleksandra Szybińska; Wiesława Leśniak
Journal:  Aging Dis       Date:  2017-07-21       Impact factor: 6.745

8.  α-Tocopherol Modulates Non-Amyloidogenic Pathway and Autophagy in an In Vitro Model of Alzheimer's Disease: A Transcriptional Study.

Authors:  Agnese Gugliandolo; Luigi Chiricosta; Serena Silvestro; Placido Bramanti; Emanuela Mazzon
Journal:  Brain Sci       Date:  2019-08-10
  8 in total

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