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首页> 外文期刊>American Journal of Physiology >Rlucocorticoid-induced androgen inactivation by aldo-keto reductase 1C2 promotes adipogenesis in human preadipocytes
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Rlucocorticoid-induced androgen inactivation by aldo-keto reductase 1C2 promotes adipogenesis in human preadipocytes

机译:醛糖酮还原酶1C2引起的糖皮质激素诱导的雄激素失活促进人前脂肪细胞的脂肪形成

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Adipogenesis and lipid storage in human adipose tissue are inhibited by androgens such as DHT. Inactivation of DHT to 3??-diol is stimulated by glucocorticoids in human preadipocytes. We sought to characterize glucocorticoid-induced androgen inactivation in human preadipocytes and to establish its role in the antiadipogenic action of DHT. Subcutaneous and omental primary preadipocyte cultures were established from fat samples obtained in subjects undergoing abdominal surgeries. Inactivation of DHT to 3??/??-diol for 24 h was measured in dexamethasoneor vehicle-treated cells. Specific downregulation of aldo-keto reductase 1C (AKR1C) enzymes in human preadipocytes was achieved using RNA interference. In whole adipose tissue sample, cortisol production was positively correlated with androgen inactivation in both subcutaneous and omental adipose tissue (P < 0.05). Maximal dexamethasone (1 ??M) stimulation of DHT inactivation was higher in omental compared with subcutaneous fat from men as well as subcutaneous and omental fat from women (P < 0.05). A significant positive correlation was observed between BMI and maximal dexamethasone-induced DHT inactivation rates in subcutaneous and omental adipose tissue of men and women (r = 0.24, n = 26, P < 0.01). siRNA-induced downregulation of AKR1C2, but not AKR1C1 or AKR1C3, significantly reduced basal and glucocorticoid-induced androgen inactivation rates (P < 0.05). The inhibitory action of DHT on preadipocyte differentiation was potentiated following AKR1C2 but not AKR1C1 or AKR1C3 downregulation. Specifically, lipid accumulation, G3PDH activity, and FABP4 mRNA expression in differentiated preadipocytes exposed to DHT were reduced further upon AKR1C2 siRNA transfection. We conclude that glucocorticoid-induced androgen inactivation is mediated by AKR1C2 and is particularly effective in omental preadipocytes of obese men. The interplay between glucocorticoids and AKR1C2-dependent androgen inactivation may locally modulate adipogenesis and lipid accumulation in a depot-specific manner. ? 2012 the American Physiological Society.
机译:人类脂肪组织中的脂肪生成和脂质储存受到雄激素(例如DHT)的抑制。人前脂肪细胞中的糖皮质激素刺激DHT失活为3′-二醇。我们试图表征人类前脂肪细胞中糖皮质激素诱导的雄激素失活,并确立其在DHT的抗脂肪形成作用中的作用。从在接受腹部手术的受试者中获得的脂肪样品中建立皮下和网膜的原代前脂肪细胞培养物。在地塞米松或溶媒处理过的细胞中测定了DHT在3α/β-二醇中的失活24小时。使用RNA干扰可实现人前脂肪细胞中醛酮还原酶1C(AKR1C)酶的特异性下调。在整个脂肪组织样品中,皮下和网膜脂肪组织中皮质醇的产生与雄激素的失活呈正相关(P <0.05)。与男性的皮下脂肪以及女性的皮下和网膜脂肪相比,最大地塞米松(1 ?? M)刺激的网膜DHT失活更高(P <0.05)。在男性和女性的皮下和网膜脂肪组织中,BMI与地塞米松诱导的最大DHT失活率之间存在显着正相关(r = 0.24,n = 26,P <0.01)。 siRNA诱导的AKR1C2,而不是AKR1C1或AKR1C3的下调,显着降低了基础和糖皮质激素诱导的雄激素失活率(P <0.05)。 DHT对前脂肪细胞分化的抑制作用在AKR1C2后增强,但不下调AKR1C1或AKR1C3。具体而言,在AKR1C2 siRNA转染后,暴露于DHT的分化前脂肪细胞中的脂质蓄积,G3PDH活性和FABP4 mRNA表达进一步降低。我们得出结论,糖皮质激素诱导的雄激素失活是由AKR1C2介导的,在肥胖男性的网膜前脂肪细胞中特别有效。糖皮质激素与AKR1C2依赖性雄激素失活之间的相互作用可能以贮库特异性方式局部调节脂肪生成和脂质蓄积。 ? 2012年美国生理学会。

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