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Identification of Intracellular Signaling Events Induced in Viable Cells by Interaction with Neighboring Cells Undergoing Apoptotic Cell Death
Published on: December 27, 2016
Glycogen synthase kinase-3beta regulates differentiation-induced apoptosis of human neural progenitor cells
Alexandra Jaeger1, Jana Baake, Dieter G Weiss
1University of Rostock, Institute of Biological Sciences, Cell Biology and Biosystems Technology, Albert-Einstein-Straße 3, D-18051 Rostock, Germany.
Abstract:
Glycogen synthase kinase-3beta is a multifunctional key regulator enzyme in neural developmental processes and a main component of the canonical Wnt signaling pathway. It is already known that the Wnt-driven differentiation of neural progenitor cells is accompanied by an increase of apoptosis at which the pro-apoptotic function of GSK-3beta is still discussed. The aim of the present study was to investigate whether the phosphorylation level of GSK-3beta at serine 9 is the primary regulatory mechanism of differentiation-induced apoptosis. Differentiating human neural ReNcell VM progenitor cells were treated with the specific GSK-3beta inhibitor SB216763 (10 μM) and analyzed in respect to the intrinsic apoptosis pathway regulation using microscopy and protein expression analysis. Differentiation of ReNcell VM cells was accompanied by cell morphological changes, cytoskeleton rearrangement and apoptosis increase. Treatment of differentiating cells with SB216763 induced a significant dephosphorylation of GSK-3beta at serine 9 accompanied by a significant decrease of apoptosis of about 0.7±0.03% and reduced activation of caspase-3 as well as BAX and PARP cleavage during the first 12h of differentiation compared to untreated, differentiating cells. Dephosphorylation of GSK-3beta at serine 9 appears not solely to be responsible for its pro-apoptotic function, because we observed a decrease of intrinsic apoptosis after treatment of the cells with the specific GSK-3beta inhibitor SB216763. We assume that GSK-3beta drives neural progenitor cell apoptosis by direct interaction with pro-apoptotic BAX or by indirect influence on the canonical Wnt/beta-catenin target gene transcription.
Insights
Glycogen synthase kinase-3beta (GSK-3beta) inhibition reduces apoptosis during neural progenitor cell differentiation. Phosphorylation at serine 9 is not the sole driver of GSK-3beta
Area of Science:
- Neuroscience
- Cell Biology
- Molecular Biology
Background:
- Glycogen synthase kinase-3beta (GSK-3beta) is crucial for neural development and Wnt signaling.
- GSK-3beta's pro-apoptotic role during neural progenitor cell differentiation is debated.
- The regulatory role of GSK-3beta phosphorylation at serine 9 in apoptosis requires clarification.
Purpose of the Study:
- To investigate if GSK-3beta phosphorylation at serine 9 primarily regulates apoptosis during neural progenitor cell differentiation.
- To determine the effect of GSK-3beta inhibition on apoptosis and intrinsic apoptosis pathway markers.
Main Methods:
- Human neural ReNcell VM progenitor cells were differentiated.
- Cells were treated with the GSK-3beta inhibitor SB216763 (10 μM).
- Microscopy and protein expression analysis were used to assess apoptosis and pathway regulation.
Main Results:
- Differentiation induced cell morphological changes, cytoskeleton rearrangement, and increased apoptosis.
- SB216763 treatment significantly decreased apoptosis (0.7±0.03%) and GSK-3beta phosphorylation at serine 9.
- Reduced caspase-3 activation, BAX, and PARP cleavage were observed within 12 hours of treatment.
Conclusions:
- GSK-3beta dephosphorylation at serine 9 is not solely responsible for its pro-apoptotic function.
- Inhibiting GSK-3beta decreases intrinsic apoptosis during neural progenitor cell differentiation.
- GSK-3beta may induce apoptosis via direct BAX interaction or indirect Wnt/beta-catenin signaling modulation.
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