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Publication : Severe cerebellar malformations in mutant mice demonstrate a role for PDGF-C/PDGFRα signalling in cerebellar development.

First Author  Gillnäs S Year  2022
Journal  Biol Open Volume  11
Issue  8 PubMed ID  35876806
Mgi Jnum  J:327413 Mgi Id  MGI:7331710
Doi  10.1242/bio.059431 Citation  Gillnas S, et al. (2022) Severe cerebellar malformations in mutant mice demonstrate a role for PDGF-C/PDGFRalpha signalling in cerebellar development. Biol Open 11(8):bio059431
abstractText  Formation of the mouse cerebellum is initiated in the embryo and continues for a few weeks after birth. Double-mutant mice lacking platelet-derived growth factor C (PDGF-C) and that are heterozygous for platelet-derived growth factor receptor alpha (Pdgfc-/-; PdgfraGFP/+) develop cerebellar hypoplasia and malformation with loss of cerebellar lobes in the posterior vermis. This phenotype is similar to those observed in Foxc1 mutant mice and in a human neuroimaging pattern called Dandy Walker malformation. Pdgfc-Pdgfra mutant mice also display ependymal denudation in the fourth ventricle and gene expression changes in cerebellar meninges, which coincide with the first visible signs of cerebellar malformation. Here, we show that PDGF-C/PDGFRalpha signalling is a critical component in the network of molecular and cellular interactions that take place between the developing meninges and neural tissues, and which are required to build a fully functioning cerebellum.
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