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Transcriptomic analysis of primary mouse adipocytes after Rbm43 knockdown

GSE253416 Mus musculus Expression profiling by high throughput sequencing 6 samples Submitted 2024/12/22 Platform GPL24247
Summary
Obesity is associated with systemic inflammation that impairs mitochondrial function. This disruption curtails oxidative metabolism, limiting adipocyte lipid metabolism and thermogenesis, a metabolically beneficial program that dissipates chemical energy as heat. Here, we show that PGC1α, a key governor of mitochondrial biogenesis, is negatively regulated at the level of its mRNA translation by the RNA-binding protein RBM43. RBM43 is induced by inflammatory cytokines and suppresses mitochondrial biogenesis in a PGC1α-dependent manner. In mice, adipocyte-selective Rbm43 disruption elevates PGC1α translation and oxidative metabolism. In obesity, Rbm43 loss improves glucose tolerance, reduces adipose inflammation, and suppresses activation of the innate immune sensor cGAS-STING in adipocytes. We further identify a role for PGC1α in safeguarding against cytoplasmic accumulation of mitochondrial DNA, a cGAS ligand. The action of RBM43 defines a translational regulatory axis by which inflammatory signals dictate cellular energy metabolism and contribute to metabolic disease pathogenesis.
Published in
RBM43 controls PGC1α translation and a PGC1α-STING signaling axis
Dumesic PA, Wilensky SE, Bose S et al. · Cell metabolism 2025 · PMID 39965564 · doi:10.1016/j.cmet.2025.01.013
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Also filed as BioProject PRJNA1065488 and SRA study SRP484095. Searching any of these in the dataset finder brings you back here.

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