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Publication : Defective Reelin/Dab1 signaling pathways associated with disturbed hippocampus development of homozygous yotari mice.

First Author  Arimitsu N Year  2021
Journal  Mol Cell Neurosci Volume  112
Pages  103614 PubMed ID  33845123
Mgi Jnum  J:306564 Mgi Id  MGI:6716573
Doi  10.1016/j.mcn.2021.103614 Citation  Arimitsu N, et al. (2021) Defective Reelin/Dab1 signaling pathways associated with disturbed hippocampus development of homozygous yotari mice. Mol Cell Neurosci 112:103614
abstractText  Homozygous Dab1 yotari mutant mice, Dab1(yot) (yot/yot) mice, have an autosomal recessive mutation of Dab1 and show reeler-like phenotype including histological abnormality of the cerebellum, hippocampus, and cerebral cortex. We here show abnormal hippocampal development of yot/yot mice where granule cells and pyramidal cells fail to form orderly rows but are dispersed diffusely in vague multiplicative layers. Possibly due to the positioning failure of granule cells and pyramidal cells and insufficient synaptogenesis, axons of the granule cells did not extend purposefully to connect with neighboring regions in yot/yot mice. We found that both hippocampal granule cells and pyramidal cells of yot/yot mice expressed proteins reactive with the anti-Dab1 antibody. We found that Y198- phosphorylated Dab1 of yot/yot mice was greatly decreased. Accordingly the downstream molecule, Akt was hardly phosphorylated. Especially, synapse formation was defective and the distribution of neurons was scattered in hippocampus of yot/yot mice. Some of neural cell adhesion molecules and hippocampus associated transcription factors of the neurons were expressed aberrantly, suggesting that the Reelin-Dab1 signaling pathway seemed to be importantly involved in not only neural migration as having been shown previously but also neural maturation and/or synaptogenesis of the mice. It is interesting to clarify whether the defective neural maturation is a direct consequence of the dysfunctional Dab1, or alternatively secondarily due to the Reelin-Dab1 intracellular signaling pathways.
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