| Literature DB >> 19700763 |
Cristina Draghetti1, Catherine Salvat, Francisca Zanoguera, Marie-Laure Curchod, Chloé Vignaud, Helene Peixoto, Alessandro Di Cara, David Fischer, Mohanraj Dhanabal, Goutopoulos Andreas, Hadi Abderrahim, Christian Rommel, Montserrat Camps.
Abstract
This study aimed at identifying transcriptional changes associated to neuronal differentiation induced by six distinct stimuli using whole-genome microarray hybridization analysis. Bioinformatics analyses revealed the clustering of these six stimuli into two categories, suggesting separate gene/pathway dependence. Treatment with specific inhibitors demonstrated the requirement of both Janus kinase and microtubule-associated protein kinase activation to trigger differentiation with nerve growth factor (NGF) and dibutyryl cAMP. Conversely, activation of protein kinase A, phosphatidylinositol-3-kinase alpha, and mammalian target of rapamycin, although required for dibutyryl cAMP-induced differentiation, exerted a negative feedback on NGF-induced differentiation. We identified Polo-like kinase 2 (Plk2) and poliovirus receptor (PVR) as indispensable for NGF-driven neuronal differentiation and alphaB-crystallin (Cryab) as an inhibitor of this process. Silencing of Plk2 or PVR blocked NGF-triggered differentiation and Cryab down-regulation, while silencing of Cryab enhanced NGF-induced differentiation. Our results position both Plk2 and PVR upstream of the negative regulator Cryab in the pathway(s) leading to neuronal differentiation triggered by NGF.Entities:
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Year: 2009 PMID: 19700763 PMCID: PMC2797276 DOI: 10.1074/jbc.M109.009324
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157