Cep55 regulation of PI3K/Akt signaling is required for neocortical development and ciliogenesis
Rashidieh, B.; Shohayeb, B.; Bain, A. L.; Fortuna, P. R. J.; Sinha, D.; Burgess, A.; Mills, R.; Adams, R. C.; Lopez, J. A.; Blumbergs, P.; Finnie, J.; Kalimutho, M.; Piper, M.; Hudson, J. E.; Ng, D.; Khanna, K. k.
Show abstract
Homozygous nonsense mutations in CEP55 are associated with several congenital malformations that lead to perinatal lethality suggesting that it plays a critical role in regulation of embryonic development. CEP55 has previously been studied as a critical regulator of cytokinesis predominantly in transformed cells and its deregulation is linked to carcinogenesis. However, its molecular functions during embryonic development in mammals have not been clearly defined. We have generated a Cep55 knockout (Cep55-/-) mouse model which demonstrated perinatal lethality associated with a wide range of neural defects. Focusing our analysis on the neocortex, we show that Cep55-/- embryos exhibited depleted neural stem/progenitor cells in the ventricular zone as a result of significantly increased cellular apoptosis. Mechanistically, we demonstrated that Cep55-loss downregulates the pGsk3{beta}/{beta}-Catenin/Myc axis in an Akt-dependent manner. The phenotype was recapitulated using human cerebral organoids and we could rescue the phenotype by inhibiting active Gsk3{beta}. Additionally, we show that Cep55-loss leads to a significant reduction of ciliated cells, highlighting its novel role in regulating ciliogenesis. Collectively, our findings demonstrate a critical role of Cep55 during brain development and provide mechanistic insights that may have important implications for genetic syndromes associated with Cep55-loss.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Disruption of augmin-mediated microtubule nucleation in neural stem cells causes p53-dependent apoptosis and aborts brain development. 96%
- SAICAr-dependent and independent effects of ADSL deficiency on neurodevelopment 95%
- Drosophila Hamlet mediates epithelial tissue assembly of the reproductive system 95%
Similar papers in this journal
- A molecularly-defined non-redundant subpopulation of OPCs controls the generation of myelinating oligodendrocytes during postnatal development. 94%
- FOXP1 orchestrates neurogenesis in human cortical basal radial glial cells 93%
- EphrinB1 modulates glutamatergic inputs into POMC neurons and controls glucose homeostasis 93%
Similar papers in this journal
- Endosomal trafficking defects alter neural progenitor proliferation and cause microcephaly 95%
- The patient-specific mouse model with Foxg1 frameshift mutation provides insights into the pathophysiology of FOXG1 syndrome 95%
- Cortical Overgrowth in a Preclinical Forebrain Organoid Model of CNTNAP2-Associated Autism Spectrum Disorder 95%
Similar papers in this journal
Similar papers in this journal
- The nanophthalmos protein TMEM98 inhibits MYRF self-cleavage and is required for eye size specification 94%
- MBL-1/Muscleblind regulates neuronal differentiation and controls the splicing of a terminal selector in Caenorhabditis elegans 94%
- The CATP-8/P5A-type ATPase functions in multiple pathways during neuronal patterning 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.