Aromatase in adipose tissue exerts an osteoprotective function in male mice via phosphate regulation.

IF 5.9 1区 医学 Q1 ENDOCRINOLOGY & METABOLISM
Aoi Ikedo, Michiko Yamashita, Maiko Hoshino, Yosuke Okuno, Megumi Koike, Minori Uga, Kazuya Tanifuji, Hiroko Segawa, Seiji Fukumoto, Yuuki Imai
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Abstract

Aromatase contributes to maintenance of bone mass because male patients with loss-of-function mutations of CYP19A1 exhibit bone loss. Treatment with aromatase inhibitor also causes bone loss in men and post-menopausal women, suggesting that part of the anabolic effect of testosterone in men is dependent on estradiol (E2) biosynthesized by aromatase in non-gonadal tissues. It remains unclear how locally biosynthesized E2 contributes to maintenance of bone mass. We examined the function of aromatase in local tissues rather than gonads using cell-type specific aromatase knockout (KO) mice. Because osteoblast-specific aromatase KO mice exhibited no bone phenotype, we focused on adipose tissue, known as a reservoir of steroid hormones and analyzed the bone phenotypes of adipose tissue-specific aromatase KO (AroΔaP2) mice. Sixteen-week-old male AroΔaP2 mice exhibited significantly lower bone mineral density in tibia and femur, especially in trabecular bone, than controls. Bone histomorphometry showed that AroΔaP2 mice exhibited an insufficient calcification bone phenotype with increased osteoid volume and width, and decreased osteoclast area and numbers. Moreover, serum phosphate, renal phosphate reabsorption and FGF23 were significantly lower in AroΔaP2, suggesting that the insufficient calcification phenotype in AroΔaP2 was not caused by excessive FGF23 activities. Finally, we analyzed NaPi2a and NaPi2c, phosphate transporters localized in the kidney and found that protein levels in renal brush border membrane vesicles were lower in AroΔaP2. These results indicate that estrogens locally biosynthesized by aromatase in adipocytes can play a significant role in bone mass maintenance via regulation of phosphate reabsorption in the kidney by NaPi2.

雄性小鼠脂肪组织中的芳香酶通过磷酸盐调控发挥骨保护功能。
芳香酶有助于维持骨量,因为男性患者CYP19A1的功能丧失突变表现为骨质流失。芳香化酶抑制剂治疗也会导致男性和绝经后女性的骨质流失,这表明男性睾酮的部分合成代谢作用依赖于非性腺组织中芳香化酶生物合成的雌二醇(E2)。目前尚不清楚局部生物合成E2如何有助于维持骨量。我们使用细胞型特异性芳香酶敲除(KO)小鼠检测了芳香酶在局部组织而非性腺中的功能。由于成骨细胞特异性芳香化酶KO小鼠没有表现出骨骼表型,因此我们将重点放在脂肪组织(称为类固醇激素的储存库)上,并分析了脂肪组织特异性芳香化酶KO (AroΔaP2)小鼠的骨骼表型。16周龄雄性AroΔaP2小鼠的胫骨和股骨,尤其是小梁骨的骨密度明显低于对照组。骨组织形态测量显示AroΔaP2小鼠表现出钙化骨表型不足,类骨体积和宽度增加,破骨细胞面积和数量减少。此外,AroΔaP2的血清磷酸盐、肾磷酸盐重吸收和FGF23显著降低,这表明AroΔaP2的钙化表型不足不是由FGF23活性过高引起的。最后,我们分析了定位于肾脏的磷酸转运蛋白NaPi2a和NaPi2c,发现肾脏刷状边界膜囊泡中的蛋白水平在AroΔaP2中较低。这些结果表明,脂肪细胞中由芳香化酶局部生物合成的雌激素可以通过调节肾内磷酸再吸收在骨量维持中发挥重要作用。
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来源期刊
Journal of Bone and Mineral Research
Journal of Bone and Mineral Research 医学-内分泌学与代谢
CiteScore
11.30
自引率
6.50%
发文量
257
审稿时长
2 months
期刊介绍: The Journal of Bone and Mineral Research (JBMR) publishes highly impactful original manuscripts, reviews, and special articles on basic, translational and clinical investigations relevant to the musculoskeletal system and mineral metabolism. Specifically, the journal is interested in original research on the biology and physiology of skeletal tissues, interdisciplinary research spanning the musculoskeletal and other systems, including but not limited to immunology, hematology, energy metabolism, cancer biology, and neurology, and systems biology topics using large scale “-omics” approaches. The journal welcomes clinical research on the pathophysiology, treatment and prevention of osteoporosis and fractures, as well as sarcopenia, disorders of bone and mineral metabolism, and rare or genetically determined bone diseases.
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