Glycolytic flux controls retinal progenitor cell differentiation via regulating Wnt signaling.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 40526494.
- Also identified by DOI 10.7554/eLife.100604 and PMC identifier 12173459.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Metabolic pathways are remodeled in response to energy and other homeostatic demands and are dynamically regulated during embryonic development, suggesting a role in guiding cellular differentiation. Here, we show that glycolytic flux is required and sufficient to bias multipotent retinal progenitor cells (RPCs) to acquire a rod photoreceptor fate in the murine retina. In RPC-specific <i>Phosphatase and tensin homolog</i> conditional knockout (<i>Pten-</i>cKO) and RPC-specific conditional gain-of-function of dominant active PFKFB3 (cytoPFKFB3) mice, glycolytic gene expression and activity are elevated, correlating with precocious rod photoreceptor differentiation and outer segment (OS) maturation. Conversely, glycolytic inhibition in retinal explants suppresses RPC proliferation and photoreceptor differentiation, achieved either with 2-deoxy-D-glucose, a competitive inhibitor of glucose metabolism, by lowering media pH, which disables PKM2, a rate-limiting enzyme, or by inhibiting lactate/H<sup>+</sup> symporters, which lowers intracellular pH. Mechanistically, we show that Wnt signaling, the top-upregulated pathway in <i>Pten-</i>cKO retinas, is a glycolysis-dependent pathway. Pharmacological and genetic perturbation of Wnt signaling by knocking-out <i>Ctnnb1</i>, encoding β-catenin, phenocopies glycolytic inhibition, suppressing RPC proliferation, photoreceptor differentiation, and OS maturation. Thus, developmental rewiring of glycolytic flux modulates Wnt signaling to drive rod photoreceptor differentiation and maturation, an instructive role that may be exploited therapeutically for cell replacement strategies.
Medical subject headings
- Glycolysis
- Wnt Signaling Pathway
- Cell Differentiation
- Retina
- Stem Cells
- Retinal Rod Photoreceptor Cells