FOS Regulates Myogenic and Adipogenic Differentiation via Extracellular Matrix Signaling
Wujian Lin, Xiance Li, Wei Hu, Xiaoyi Zhao, Nana Wei, Yuying Li, Qi Bao, Cheng Tian, Weiwei Liu, Zitao Chen, Zilong Mai, Shuhao Zhao, Yuanyuan Zhu, Guohui Zhu, Haibo Huang, Zhonglin TangAbstract
In the livestock industry, intramuscular fat deposition is a key factor influencing meat tenderness and flavor. Although FOS (Fos proto-oncogene, AP-1 transcription factor subunit) has been implicated in the regulation of cell proliferation and differentiation, its differential roles in myogenic and adipogenic regulation remain unclear. In this study, we revealed that FOS markedly enhanced myogenic differentiation while inhibiting adipogenic differentiation in muscle stem cells, indicating that it exerts distinct effects on muscle development and intramuscular fat deposition. Mechanistically, FOS modulated extracellular matrix signaling by regulating FAK and PXN phosphorylation, acting as a molecular regulator between the muscle and fat lineages. Furthermore, exon SNPs in FOS were associated with slaughter weight and backfat thickness, and the mutant genotypes weakened its antiadipogenic effect. Collectively, these findings suggest that FOS is an important regulator of myogenic and adipogenic differentiation and is a potential candidate gene for the genetic improvement of meat quality traits.