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Sphingolipid metabolism is spatially regulated in the developing embryo by SOXE genes

Authors: 
Piacentino ML, Fasse AJ, Camacho-Avila A, Grabylnikov I, Bronner ME
Citation: 
bioRxiv. 2023;[preprint] doi:10.1101/2023.08.10.552770
Abstract: 
During epithelial-to-mesenchymal transition (EMT), significant rearrangements occur in plasma membrane protein and lipid content that are important for membrane function and acquisition of cell motility. To gain insight into how neural crest cells regulate their lipid content at the transcriptional level during EMT, here we identify critical enhancer sequences that regulate the expression of SMPD3, a gene responsible for sphingomyelin hydrolysis to produce ceramide, which is necessary for neural crest EMT. We uncovered three enhancer regions within the first intron of the SMPD3 locus that drive reporter expression in distinct spatial and temporal domains, together collectively recapitulating the expression domains of endogenous SMPD3 within the ectodermal lineages. We further dissected one enhancer that is specifically active in the migrating neural crest. By mutating putative transcriptional input sites or knocking down upstream regulators, we find that the SoxE-family transcription factors Sox9 and Sox10 regulate the expression of SMPD3 in migrating neural crest cells. Together these results shed light on how core components of developmental gene regulatory networks interact with metabolic effector genes to control changes in membrane lipid content.
Epub: 
Not Epub
Organism or Cell Type: 
Gallus gallus (chick)
Delivery Method: 
electroporation