ArticleThe Journal of endocrinology2026
Membrane-initiated estrogen receptor-α signaling in the hypothalamus regulates trabecular bone in femur in female mice.
Article in The Journal of endocrinology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Membrane-initiated estrogen receptor-α (mERα) signaling has been demonstrated to be crucial for normal bone metabolism, and our previous work has confirmed its essential role in osteoblasts. However, the contribution of brain-derived mERα signaling to bone homeostasis remains unexplored. To investigate the role of brain-derived mERα signaling in bone metabolism, we developed a POMC-C451Af/f mouse model in which mERα signaling is selectively inactivated in POMC-expressing neurons. Gonadal-intact female POMC-C451Af/f mice exhibited disturbed sex steroid levels and significantly increased bone mass in both cortical and trabecular compartments compared to littermate C451Af/f controls after sexual maturation (16 weeks old). In ovariectomized female POMC-C451Af/f mice, estradiol (E2) treatment enhanced the anabolic response in trabecular bone of the femur compared to controls, while the estrogen response in cortical bone was similar between the genotypes. Gonadal-intact male POMC-C451Af/f mice displayed altered levels of testosterone compared to controls at 24 weeks of age. In orchiectomized male mice, responses to E2 treatment were similar across all examined parameters between POMC-C451Af/f and control mice. In conclusion, our findings reveal an important role of membrane-initiated ERα signaling in POMC neurons in regulating hormone balance and bone metabolism, with more pronounced effects in female mice.
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