AI Article Synopsis

  • - The transcription factor ZBED6 represses the IGF2 gene by binding to a specific site in its intron, and its deletion or knockout results in a significant increase of IGF2 protein levels, enhancing muscle growth.
  • - Analysis shows that both ZBED6 and IGF2 myoblasts have faster growth rates and altered expression of proteins related to mitochondrial function and muscle development.
  • - Overexpression of ZBED6 leads to negative effects like cell death and halted muscle cell differentiation, indicating its critical role in regulating muscle metabolism through the IGF2 pathway.

Article Abstract

The transcription factor ZBED6 acts as a repressor of Igf2 and affects directly or indirectly the transcriptional regulation of thousands of genes. Here, we use gene editing in mouse C2C12 myoblasts and show that ZBED6 regulates Igf2 exclusively through its binding site 5'-GGCTCG-3' in intron 1 of Igf2. Deletion of this motif (Igf2 ) or complete ablation of Zbed6 leads to ~20-fold upregulation of the IGF2 protein. Quantitative proteomics revealed an activation of Ras signaling pathway in both Zbed6 and Igf2 myoblasts, and a significant enrichment of mitochondrial membrane proteins among proteins showing altered expression in Zbed6 myoblasts. Both Zbed6 and Igf2 myoblasts showed a faster growth rate and developed myotube hypertrophy. These cells exhibited an increased O consumption rate, due to IGF2 upregulation. Transcriptome analysis revealed ~30% overlap between differentially expressed genes in Zbed6 and Igf2 myotubes, with an enrichment of upregulated genes involved in muscle development. In contrast, ZBED6-overexpression in myoblasts led to cell apoptosis, cell cycle arrest, reduced mitochondrial activities, and ceased myoblast differentiation. The similarities in growth and differentiation phenotypes observed in Zbed6 and Igf2 myoblasts demonstrates that ZBED6 affects mitochondrial activity and myogenesis largely through its regulation of IGF2 expression. This study adds new insights how the ZBED6-Igf2 axis affects muscle metabolism.

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Source
http://dx.doi.org/10.1096/fj.201901321RDOI Listing

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