PDGFD: A Dual-Function Regulator That Maintains Myoblast Pool and Fuels Myogenic Differentiation

  • Curr Issues Mol Biol. 2026 Mar 18;48(3):322. doi: 10.3390/cimb48030322.
Hongzhen Cao  1 Jing Wang  2 Yunzhou Wang  3 Jingsen Huang  1 Wei Chen  1 Hui Tang  1 Junfeng Chen  2 Baosong Xing  2 Yongqing Zeng  1
Affiliations
  • 1. Shandong Provincial Key Laboratory for Livestock Germplasm Innovation & Utilization, College of Animal Science and Technology, Shandong Agricultural University, Tai'an 271018, China.
  • 2. Henan Key Laboratory of Farm Animal Breeding and Nutritional Regulation, Henan Pig Breeding Engineering Research Centre, Institute of Animal Husbandry, Henan Academy of Agricultural Sciences, Zhengzhou 450002, China.
  • 3. Department of Veterinary Medicine, Shandong Vocational Animal Science and Veterinary College, Weifang 261061, China.
Abstract

The role of platelet-derived growth Factor D (PDGFD) in mesenchymal cells is well-established, but its specific function in skeletal muscle generation remains unknown. This study reveals for the first time PDGFD's dual regulatory role in myogenesis: it acts both as a "guardian" maintaining the myoblast pool and as an "initiator" driving myogenic differentiation. Through single-cell RNA Sequencing analysis of skeletal muscle from Jiangquan Black pigs, we identified PDGFD as a common candidate gene for both muscle and fat development. In the C2C12 cell model, PDGFD knockdown significantly inhibited cell proliferation and promoted Apoptosis, while overexpression enhanced viability and inhibited Apoptosis, indicating its critical role in maintaining myoprogenic precursor cell homeostasis. Further studies revealed that PDGFD interference downregulated key myogenic differentiation markers MyoD and MyoG, inhibiting differentiation. Its expression peaked during mid-differentiation (D5), suggesting temporal regulation of differentiation. Interestingly, although PDGFD primarily acts through the PI3K/Akt pathway downstream of PDGFR-β, PDGFD knockdown did not show significant synergistic effects with PI3K/Akt pathway activation in inhibiting differentiation. This suggests PDGFD may specifically regulate myogenic differentiation via an independent or parallel signaling axis. This study not only expands the known functions of PDGFD in muscle biology but also provides new insights into the mechanisms by which growth factors coordinate cell fate decisions.

Keywords
C2C12; PDGFD; PI3K-Akt signaling pathway; functional validation; longissimus dorsi muscle.
Products