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Delberghe, E.

Publications and source records attributed to Delberghe, E..

2 recordsLinked to original sources

Differential contribution of P73+ Cajal-Retzius cells and Reelin to cortical morphogenesis

Cajal-Retzius cells (CRs) are a peculiar neuronal type within the developing mammalian cerebral cortex. One of their best documented feature is the robust secretion of Reln, a glycoprotein essential for the establishment of cortical layers through the control of radial migration of glutamatergic neurons. We previously identified Gmnc as a critical fate determinant for P73+ CRs subtypes from the hem, septum and thalamic eminence. In Gmnc-/- mutants, P73+ CRs are initially produced, cover the telencephalic vesicle but undergo massive apoptosis resulting in their complete depletion at mid-corticogenesis. Here we investigated the consequence of such a CRs depletion on dorsal cortex lamination and hippocampal morphogenesis. We found preplate splitting occurs normally in Gmnc-/- mutants but is followed by defective radial migration arrest in the dorsal cortex, altered cellular organization in the lateral cortex, aberrant hippocampal progenitor proliferation resulting in abnormal CA1 folding and lack of vasculature development in the hippocampal fissure. We then performed conditional Reln deletion in P73+ CRs to evaluate its relative contribution and found that only radial migration defects were recapitulated. We concluded that at mid-corticogenesis, CRs-derived Reln is required for radial migration arrest and additionally identified Reln-independent functions for CRs in the control of hippocampal progenitor proliferation and vessel remodelling.

neuroscience↗

Bidirectional interaction between Protocadherin 8 and transcription factor Dbx1 regulates cerebral cortex development

Brain development requires correct tissue patterning and production of appropriate cell types. Transcription factors (TFs) play essential roles in these processes, regulating the expression of target genes responsible for neuronal subtypes specific features. Cell adhesion molecules are key components of developmental processes that control cell sorting, migration, neurite outgrowth/guidance and synaptogenesis. To date, the link between TFs and cell adhesion molecules is considered to be unidirectional. Here, we demonstrate that ectopic expression of Dbx1 leads to spatio-temporally restricted increased expression of Pcdh8 and cell aggregation, together with changes in neuronal identity. Surprisingly, Pcdh8 overexpression also induces Dbx1 expression as well as a complete reorganisation of apico-basal polarity and dorso-ventral patterning via Notch signalling. Altogether, our work therefore points to cell adhesion molecules as unexpected, yet important, players in the regulation of cell identity and, in particular, Pcdh8 through its bidirectional interaction with the Dbx1 transcription factor.

neuroscience↗