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AS160磷酸化水平降低导致糖皮质激素介导的对人和小鼠脂肪细胞葡萄糖摄取的抑制作用。

Reduced phosphorylation of AS160 contributes to glucocorticoid-mediated inhibition of glucose uptake in human and murine adipocytes.

作者信息

Ngo Sherry, Barry Janelle B, Nisbet Janelle C, Prins Johannes B, Whitehead Jonathan P

机构信息

Metabolic Medicine Program, Diamantina Institute for Cancer, Immunology and Metabolic Medicine, University of Queensland, Brisbane, Queensland 4102, Australia.

出版信息

Mol Cell Endocrinol. 2009 Apr 10;302(1):33-40. doi: 10.1016/j.mce.2008.10.020. Epub 2008 Nov 1.

Abstract

Excess glucocorticoids induce insulin resistance and reduce glucose uptake although the underlying mechanisms are unclear. Here we demonstrate that Dex (1 microM for 24h) inhibits basal and insulin (1 nM) stimulated glucose uptake in human and murine adipocytes by 50% with a concomitant reduction in the levels of GLUT1/4 at the plasma membrane but no change in total GLUT1/4 levels. Expression and phosphorylation of proximal insulin signalling molecules (IRS1, PI3K, AKT) was unaffected by Dex as was phosphorylation of mTOR and FOXO1. In contrast, phosphorylation of AKT substrate 160kDa (AS160) at T642, which is essential for 14-3-3 recruitment and GLUT4 translocation, was reduced by 50% in basal and insulin-stimulated cells and this was mirrored by decreased 14-3-3 association. Co-treatment with the glucocorticoid receptor antagonist RU486 (10 microM) abrogated the Dex effect on AS160-T642 phosphorylation and restored glucose uptake by 80%. These data suggest Dex inhibits glucose uptake in adipocytes, at least in part, by reducing AS160 phosphorylation and interaction with 14-3-3.

摘要

过量的糖皮质激素会诱导胰岛素抵抗并减少葡萄糖摄取,尽管其潜在机制尚不清楚。在此我们证明,地塞米松(1微摩尔,处理24小时)可使人和小鼠脂肪细胞的基础葡萄糖摄取以及胰岛素(1纳摩尔)刺激的葡萄糖摄取降低50%,同时质膜上GLUT1/4水平降低,但GLUT1/4总水平无变化。近端胰岛素信号分子(IRS1、PI3K、AKT)的表达和磷酸化不受地塞米松影响,mTOR和FOXO1的磷酸化也不受影响。相比之下,T642位点的AKT底物160kDa(AS160)磷酸化在基础状态和胰岛素刺激的细胞中降低了50%,而该磷酸化对于14-3-3募集和GLUT4转位至关重要,同时14-3-3结合减少也与之相符。糖皮质激素受体拮抗剂RU486(10微摩尔)共同处理可消除地塞米松对AS160-T642磷酸化的影响,并使葡萄糖摄取恢复80%。这些数据表明,地塞米松至少部分通过降低AS160磷酸化及其与14-3-3的相互作用来抑制脂肪细胞的葡萄糖摄取。

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