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Drosophila happyhour modulates JNK-dependent apoptosis.

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journal contribution
posted on 2013-11-14, 12:33 authored by D. Lam, S. Shah, I.P. de Castro, S.H.Y. Loh, L. Miguel Martins
Mitogen-activated protein kinase kinase kinase kinase-3 (MAP4K3) is a Ste20 kinase family member that modulates multiple signal transduction pathways. We recently identified MAP4K3 as proapoptotic kinase using an RNA interference screening approach. In mammalian cells, MAP4K3 enhances the mitochondrial apoptosis pathway through the post-transcriptional modulation of selected proapoptotic Bcl-2 homology domain 3-only proteins. Recent data suggest that MAP4K3 mutations contribute to pancreatic cancer, which highlights the importance of studying the in vivo function of this kinase. To determine whether the cell death function is conserved in vivo and which downstream signalling pathways are involved, we generated transgenic flies expressing happyhour (hppy), the Drosophila MAP4K3 orthologue. Here, we show that the overexpression of hppy promotes caspase-dependent apoptosis and that the hypothetical kinase domain is essential for inducing cell death. In addition, we show that hppy expression triggers the activation of both the c-Jun N-terminal kinase (JNK) and target of rapamycin (TOR) signalling pathways; however, only JNK signalling is required for apoptosis. Together, our results show that hppy has a JNK-dependent proapoptotic function in Drosophila, which reinforces the hypothesis that MAP4K3 might act as tumour suppressor by regulating apoptosis in higher eukaryotes.

History

Citation

Cell Death and Disease, 2010, 1, e66

Author affiliation

/Organisation/COLLEGE OF MEDICINE, BIOLOGICAL SCIENCES AND PSYCHOLOGY

Version

  • VoR (Version of Record)

Published in

Cell Death and Disease

Publisher

Nature Publishing Group for Associazione Differenziamento e Morte Cellulare

eissn

2041-4889

Copyright date

2010

Available date

2013-11-14

Publisher version

http://www.nature.com/cddis/journal/v1/n8/full/cddis201044a.html

Notes

PMCID: PMC3032524

Language

en