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January 14, 2026Advanced Science1 citationsOpen Access

HMGB2–RAD21 Axis Promotes Fibro/Adipogenic Progenitor Proliferation and Regulates Fat Infiltration

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XTXian TongZLZiyun LiangTDTianqi Duo

Key Points

  • Investigate the role of HMGB2–RAD21 axis in fibro/adipogenic progenitor proliferation and fat infiltration.
  • Analyzed porcine samples for intermuscular adipocyte differentiation after birth.
  • Conducted single-cell sequencing of pig embryonic muscle to map fibro/adipogenic progenitors.
  • Evaluated the impact of HMGB2 knockout on FAP numbers and adipogenic potential in mice.
  • Identified a distinct HMGB2+ subpopulation of fibro/adipogenic progenitors.
  • Knockout of HMGB2 significantly reduced FAP numbers and impaired their ability to differentiate into adipocytes.
  • Study linked FAP proliferation to HMGB2 targeting RAD21 in vivo.

Abstract

ABSTRACT Intermuscular fat (IMF) infiltration is not only associated with myopathies and insulin resistance, but also serves as a key determinant of meat quality in the livestock industry. However, the molecular and cellular mechanisms influencing the intermuscular adipocyte abundance remain poorly understood. Based on porcine samples, we confirmed that the differentiation of intermuscular preadipocytes begins after birth, which prompted us to focus on the changes in the number of fibro/adipogenic progenitors (FAPs) during the embryonic stage. Using single‐cell sequencing (ScRNA‐seq) analysis of pig embryonic muscle, we constructed the first developmental atlas of embryonic FAPs and identified a distinct HMGB2 + subpopulation (FAPs HMGB2+ ) as a key determinant of FAP pool size. When HMGB2 is knocked out, both heterozygous and homozygous mice exhibit a remarkable reduction in the number of FAPs and impaired adipogenic potential. Correspondingly, the FAPs HMGB2+ were also found during muscle regeneration in mice. Unlike targeting C/EBPβ in vitro, HMGB2 governs FAP proliferation in vivo through targeting RAD21 , a gene involved in DNA replication. Collectively, these findings provide novel insights into analyzing differences in IMF content and highlight potential targets for enhancing pork quality and mitigating pathological fat infiltration in skeletal muscles.

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Cite This Study

Tong et al. (2026) studied this question.

synapsesocial.com/papers/6966f2e313bf7a6f02c00309https://doi.org/10.1002/advs.202514363
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