Related Experiment Video
Updated: Dec 6, 2025

Live Imaging of Mitosis in the Developing Mouse Embryonic Cortex
Published on: June 4, 2014
The Spindle-Associated Microcephaly Protein, WDR62, Is Required for Neurogenesis and Development of the Hippocampus
Belal Shohayeb1, Uda Y Ho1, Halah Hassan1
1School of Biomedical Science, Faculty of Medicine, The University of Queensland, St Lucia, QLD, Australia.
Abstract:
Primary microcephaly genes (MCPH) are required for the embryonic expansion of the mammalian cerebral cortex. However, MCPH mutations may spare growth in other regions of the developing forebrain which reinforces context-dependent functions for distinct MCPH genes in neurodevelopment. Mutations in the MCPH2 gene, WD40-repeat protein 62 (WDR62), are causative of primary microcephaly and cortical malformations in humans. WDR62 is a spindle microtubule-associated phosphoprotein that is required for timely and oriented cell divisions. Recent studies in rodent models confirm that WDR62 loss or mutation causes thinning of the neocortex and disrupted proliferation of apical progenitors reinforcing critical requirements in the maintenance of radial glia. However, potential contributions for WDR62 in hippocampal development had not been previously defined. Using CRISPR/Cas9 gene editing, we generated mouse models with patient-derived non-synonymous missense mutations (WDR62V66M and WDR62R439H) and a null mutation (herein referred to as WDR62Stop) for comparison. We find that WDR62 deletion or mutation resulted in a significant reduction in the thickness of the hippocampal ventricular zone and the area of the dentate gyrus (DG). This was associated with the mitotic arrest and depletion of radial glia and intermediate progenitors in the ammonic neuroepithelium. As a consequence, we find that the number of mitotic dentate precursors in the migratory stream and granule neurons in the DG was reduced with WDR62 mutation. These findings reveal that WDR62 is required for neurogenesis and the growth of the hippocampus during embryonic development.
Insights
WD40-repeat protein 62 (WDR62) is crucial for embryonic brain development. Studies show WDR62 mutations impair hippocampal neurogenesis and growth, revealing new roles for this gene in brain development.
Area of Science:
- Neuroscience
- Developmental Biology
- Genetics
Background:
- Primary microcephaly genes (MCPH) are essential for mammalian cerebral cortex development.
- Mutations in WD40-repeat protein 62 (WDR62), an MCPH2 gene, cause microcephaly and cortical malformations.
- WDR62 is a spindle-associated phosphoprotein critical for cell division orientation and timing.
Purpose of the Study:
- To investigate the role of WDR62 in hippocampal development.
- To define the consequences of patient-derived WDR62 mutations on hippocampal neurogenesis.
Main Methods:
- Generated mouse models with patient-derived WDR62 missense mutations (WDR62^V66M, WDR62^R439H) and a null mutation (WDR62^Stop) using CRISPR/Cas9.
- Analyzed the effects of WDR62 mutations on hippocampal ventricular zone thickness, dentate gyrus area, progenitor proliferation, and neurogenesis.
Main Results:
- WDR62 deletion or mutation significantly reduced hippocampal ventricular zone thickness and dentate gyrus area.
- Observed mitotic arrest and depletion of radial glia and intermediate progenitors in the ammonic neuroepithelium.
- Found a reduced number of dentate precursors and granule neurons in WDR62-mutant mice.
Conclusions:
- WDR62 is essential for hippocampal neurogenesis and embryonic growth.
- WDR62 plays a critical role in maintaining radial glia and progenitor populations within the hippocampus.
- Defects in WDR62 lead to reduced neurogenesis and smaller dentate gyrus size, impacting hippocampal development.
Related Concept Videos
Neurulation
Role of Hippocampus in Memory
The Spindle Assembly Checkpoint
Many proteins function together to control the spindle assembly checkpoint. Mutations affecting these proteins may allow cells to proceed into anaphase prematurely, resulting in the...

