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Biology subjects

Ghaibour, K. C.

Publications and source records attributed to Ghaibour, K. C..

2 recordsLinked to original sources

Androgen Receptor mediates beige adipocyte homeostasis and plasticity

Male adipose tissue undergoes profound post-pubertal remodeling characterized by the progressive transition of beige adipocytes toward a white adipocyte phenotype. Although androgen signaling has been implicated in adipose tissue biology, its role in beige adipocyte remodeling and metabolic plasticity remains poorly understood. Here we show that androgen receptor (AR) signaling is dynamically activated in inguinal white adipose tissue during the post-pubertal beige-to-white transition in male mice. Inducible deletion of AR in beige adipocytes impaired this remodeling process, resulting in the persistence of multilocular beige-like adipocytes despite reduced thermogenic competence and marked mitochondrial abnormalities. Transcriptomic and cistromic analyses identified AR as a direct regulator of adipocyte metabolic and differentiation programs, whereas immune-related transcriptional signatures in AR-deficient adipose tissue primarily reflected macrophage infiltration and inflammatory remodeling. Loss of AR promoted mitochondrial dysfunction, mitophagy, and altered glucose handling, while cell-autonomous AR silencing in beige adipocytes recapitulated key defects in mitochondrial organization and adipocyte identity. Longitudinal and metabolic challenge studies further demonstrated that AR signaling is required for age-associated adipose remodeling and adaptive beige adipocyte plasticity during high-fat diet feeding and cold exposure. Together, these findings identify AR as a central regulator of beige adipocyte remodeling, mitochondrial homeostasis, and adaptive metabolic function in male adipose tissue.

physiology↗

Androgen receptor imprints satellite cells stemness and preserves their reservoir for lifelong regeneration and optimal repair

Skeletal muscle stem cells (MuSC) are the guardians of muscle regeneration, sustaining tissue integrity through a delicate balance of quiescence, activation, and lineage commitment. While numerous molecular cues have been implicated in regulating these processes, the influence of androgen receptor (AR) signaling, an essential hormonal pathway for male muscle physiology, has remained largely unexplored. Here, we show that AR expression defines quiescent MuSC and acts as a safeguard of their dormancy. Integrated multi-omic analyses reveal a redistribution of AR binding from quiescence-maintenance loci to regulatory elements driving activation and metabolic reprogramming during repair. Loss of AR in young adult mice disrupts this balance, precipitating premature cell-cycle entry, skewed division modalities, depletion of the stem cell reservoir, and destabilization of the niche. These defects converge with hallmarks of aging-associated androgen decline, while androgen supplementation restores regenerative competence. Together, our findings establish AR signaling as a pivotal determinant of MuSC fate and a cornerstone of skeletal muscle homeostasis.

developmental biology↗