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Induction of Protein Deletion Through In Utero Electroporation to Define Deficits in Neuronal Migration in Transgenic Models
Published on: January 12, 2015
VPS35 deficiency in the embryonic cortex leads to prenatal cell loss and abnormal development of axonal connectivity
Micaela Roque1, Diego Alves Rodrigues de Souza2, Martha M Rangel-Sosa1
1Aix Marseille Univ, CNRS, IBDM, Marseille, France.
Abstract:
VPS35 is a core component of the retromer complex involved in familial forms of neurodegenerative diseases such as Parkinson's and Alzheimer's disease. In mice, VPS35 is expressed during early brain development. However, previous studies have reported that VPS35 activity is largely dispensable for normal neuronal development and initial elaboration of axonal projections. Here, we evaluated the role of VPS35 in the mouse embryonic brain using two Cre-driver lines that remove Vps35 from the cortex at different prenatal stages. We found that Vps35 mutant mice displayed microcephaly and decreased cortical thickness from the embryonic stages to adulthood. VPS35 also regulates cortical development by affecting a subpopulation of neural progenitor cells and the survival of postmitotic neurons. In addition, we showed that a lack of VPS35 leads to hypoplasia and misrouting of several axonal projections, including the anterior commissure and fornix. Furthermore, VPS35 deficiency impairs the non-autonomous development of thalamocortical axons (TCAs), which show severe disruption of innervation and terminal arborization in the cortex. Together, these data demonstrate that VPS35 plays a greater role in embryonic development of the mammalian brain than it was previously thought.
Insights
VPS35 is crucial for embryonic brain development, impacting cortical thickness and axonal projections. Its absence causes microcephaly and disrupts neural progenitor cells and neuron survival.
Area of Science:
- Neuroscience
- Developmental Biology
- Genetics
Background:
- VPS35 is a retromer complex component linked to neurodegenerative diseases.
- Its role in embryonic brain development was previously considered minimal.
Purpose of the Study:
- To investigate the function of VPS35 during mouse embryonic brain development.
- To elucidate VPS35's specific roles in cortical development and axonal guidance.
Main Methods:
- Utilized two Cre-driver mouse lines to delete Vps35 at distinct prenatal stages.
- Analyzed Vps35 mutant mice for developmental abnormalities, cortical thickness, and axonal projection defects.
Main Results:
- Vps35 mutant mice exhibited microcephaly and reduced cortical thickness.
- VPS35 deficiency affected neural progenitor cells and postmitotic neuron survival.
- Axonal projections like the anterior commissure and fornix were hypoplastic and misrouted.
- Thalamocortical axon (TCA) development and cortical innervation were severely impaired.
Conclusions:
- VPS35 plays a significant, previously underestimated role in mammalian embryonic brain development.
- VPS35 is essential for proper cortical formation, neuronal survival, and axonal guidance.
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