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ADAM17 is critical for multipolar exit and radial migration of neuronal intermediate progenitor cells in mice
Qingyu Li1, Zhengyu Zhang, Zengmin Li
1School of Life Sciences, Fudan University, Shanghai, China.
Abstract:
The radial migration of neuronal progenitor cells is critical for the development of cerebral cortex layers. They go through a critical step transforming from multipolar to bipolar before outward migration. A Disintegrin and Metalloprotease 17 (ADAM17) is a transmembrane protease which can process many substrates involved in cell-cell interaction, including Notch, ligands of EGFR, and some cell adhesion molecules. In this study, we used in utero electroporation to knock down or overexpress ADAM17 at embryonic day 14.5 (E14.5) in neuronal progenitor cells to examine the role of ADAM17 in cortical embryonic neurogenesis. Our results showed that the radial migration of ADAM17-knocked down cells were normal till E16.5 and reached the intermediate zone (IZ). Then most transfected cells stopped migration and stayed at the IZ to inner cortical plate (CP) layer at E18.5, and there was higher percentage of multipolar cells at IZ layer in the ADAM17-knocked down group compared to the cells in control group. Marker staining revealed that those ADAM17-knocked down cells differentiated normally from neural stem cells (NSCs) to neuronal intermediate progenitor cells (nIPCs) but did not differentiate into mature neurons. The migration and multipolar exit defects caused by ADAM17 knockdown could be partially rescued by over-expressing an shRNA resistant ADAM17, while overexpressing ADAM17 alone did not affect the radial migration. Taken together, our results showed for the first time that, ADAM17 is critical in regulating the multipolar-stage exit and radial migration of the nIPCs during telencephalon cortex development in mice.
Insights
A Disintegrin and Metalloprotease 17 (ADAM17) is crucial for neuronal progenitor cell migration during brain development. Knocking down ADAM17 disrupts cell movement and differentiation in the developing cerebral cortex.
Area of Science:
- Neuroscience
- Developmental Biology
- Cell Biology
Background:
- Radial migration of neuronal progenitor cells is essential for cerebral cortex formation.
- Neuronal progenitor cells transition from multipolar to bipolar shapes before migration.
- ADAM17, a metalloprotease, processes substrates involved in cell interactions.
Purpose of the Study:
- To investigate the role of ADAM17 in cortical embryonic neurogenesis.
- To examine how ADAM17 affects neuronal progenitor cell migration and differentiation.
Main Methods:
- In utero electroporation was used to manipulate ADAM17 expression in E14.5 mouse embryos.
- ADAM17 knockdown and overexpression were performed in neuronal progenitor cells.
- Cell migration, cell morphology, and differentiation markers were analyzed.
Main Results:
- ADAM17 knockdown led to impaired radial migration, with cells accumulating in the intermediate zone.
- A higher percentage of multipolar cells was observed in the intermediate zone in the ADAM17 knockdown group.
- ADAM17 knockdown cells showed normal differentiation to neuronal intermediate progenitor cells but not mature neurons.
- Overexpression of ADAM17 partially rescued migration and multipolar exit defects.
Conclusions:
- ADAM17 plays a critical role in regulating the exit from the multipolar stage.
- ADAM17 is essential for proper radial migration of neuronal progenitor cells in telencephalon cortex development.
- These findings highlight ADAM17's importance in mouse cortical development.
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