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Lactate and histone H3K18 lactylation are associated with metabolic control of gene expression in the retina [explant_RNA-seq 2]

GSE322475 Mus musculus Expression profiling by high throughput sequencing 9 samples Submitted 2026/02/28 Platform GPL30172
Summary
High aerobic glycolysis in retinal photoreceptors, as in cancer cells, is implicated in mitigating energy and metabolic demands. Lactate, a key product of glycolysis, is implicated in epigenetic regulation through histone lactylation in cancer. Here, we demonstrate that increased ATP production during retinal development is achieved primarily through augmented glycolysis. Histone lactylation, especially H3K18La, parallels enhanced glycolysis and its product, lactate, in developing retina and in retinal explants. Multi-omics analyses, combined with confocal imaging, reveal the localization of H3K18La near H3K27Ac in euchromatin at promoters of active retinal, especially photoreceptor, genes. H3K18La and gene expression also correspond to glucose metabolism in retinal explants. Evaluation of accessible chromatin at H3K18La promoters uncovers an enrichment of GC-rich motifs for transcription factors of SP, KMT and KLF families, among others, indicating specificity of H3K18La-mediated gene regulation. Our results highlight glycolysis/lactate/H3K18La as a regulatory axis in fine-tuning gene expression in developing and mature retina.
Published in
Lactate and histone H3K18 lactylation are associated with metabolic control of gene expression in the retina
Gaur M, Brooks MJ, Liang X et al. · PLoS genetics 2026 · PMID 41950290 · doi:10.1371/journal.pgen.1012100
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Also filed as BioProject PRJNA1429411 and SRA study SRP679873. Searching any of these in the dataset finder brings you back here.

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