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Protocol for the Differentiation of Human Induced Pluripotent Stem Cells into Mixed Cultures of Neurons and Glia for Neurotoxicity Testing
Published on: June 9, 2017
Impact of Reck expression and promoter activity in neuronal in vitro differentiation
Marina Trombetta-Lima1, Thais Assis-Ribas1, Ricardo C Cintra2
1Núcleo de Terapia Celular e Molecular (NUCEL), Faculdade de Medicina, Universidade de São Paulo (USP), Rua Pangaré, 100 (Cidade Universitária), São Paulo, SP, 05360-130, Brazil.
Abstract:
Reck (REversion-inducing Cysteine-rich protein with Kazal motifs) tumor suppressor gene encodes a multifunctional glycoprotein which inhibits the activity of several matrix metalloproteinases (MMPs), and has the ability to modulate the Notch and canonical Wnt pathways. Reck-deficient neuro-progenitor cells undergo precocious differentiation; however, modulation of Reck expression during progression of the neuronal differentiation process is yet to be characterized. In the present study, we demonstrate that Reck expression levels are increased during in vitro neuronal differentiation of PC12 pheochromocytoma cells and P19 murine teratocarcinoma cells and characterize mouse Reck promoter activity during this process. Increased Reck promoter activity was found upon induction of differentiation in PC12 cells, in accordance with its increased mRNA expression levels in mouse in vitro models. Interestingly, Reck overexpression, prior to the beginning of the differentiation protocol, led to diminished efficiency of the neuronal differentiation process. Taken together, our findings suggest that increased Reck expression at early stages of differentiation diminishes the number of neuron-like cells, which are positive for the beta-3 tubulin marker. Our data highlight the importance of Reck expression evaluation to optimize in vitro neuronal differentiation protocols.
Insights
Reck (REversion-inducing Cysteine-rich protein with Kazal motifs) expression increases during neuronal differentiation. However, overexpressing Reck early in differentiation reduces neuron-like cell formation, highlighting its crucial role in optimizing differentiation protocols.
Area of Science:
- Neuroscience
- Molecular Biology
- Cell Biology
Background:
- Reck (REversion-inducing Cysteine-rich protein with Kazal motifs) is a tumor suppressor gene.
- Reck inhibits matrix metalloproteinases (MMPs) and modulates Notch and Wnt pathways.
- Reck deficiency leads to precocious differentiation of neuro-progenitor cells.
Purpose of the Study:
- To characterize Reck expression and promoter activity during in vitro neuronal differentiation.
- To investigate the effect of Reck modulation on neuronal differentiation efficiency.
Main Methods:
- Neuronal differentiation of PC12 and P19 cells.
- Measurement of Reck mRNA expression levels.
- Analysis of Reck promoter activity.
- Overexpression of Reck prior to differentiation induction.
Main Results:
- Reck expression and promoter activity increase during in vitro neuronal differentiation.
- Early overexpression of Reck diminishes the efficiency of neuronal differentiation.
- Reduced numbers of beta-3 tubulin-positive neuron-like cells were observed with Reck overexpression.
Conclusions:
- Reck expression is dynamically regulated during neuronal differentiation.
- Elevated Reck levels at early differentiation stages negatively impact neuron formation.
- Evaluating Reck expression is essential for optimizing in vitro neuronal differentiation protocols.
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