首页> 外文期刊>American Journal of Physiology >Decreased clearance of serum retinol-binding protein and elevated levels of transthyretin in insulin-resistant ob/ob mice
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Decreased clearance of serum retinol-binding protein and elevated levels of transthyretin in insulin-resistant ob/ob mice

机译:胰岛素抵抗性ob / ob小鼠血清视黄醇结合蛋白清除率降低,运甲状腺素蛋白水平升高

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Serum retinol-binding protein (RBP4) is secreted by liver and adipocytes and is implicated in systemic insulin resistance in rodents and humans. RBP4 normally binds to the larger transthyretin (TTR) homotetramer, forming a protein complex that reduces renal clearance of RBP4. To determine whether alterations in RBP4-TTR binding contribute to elevated plasma RBP4 levels in insulin-resistant states, we investigated RBP4-TTR interactions in leptin-deficient ob/ob mice and high-fat-fed obese mice (HFD). Gel filtration chromatography of plasma showed that 88-94% of RBP4 is contained within the RBP4-TTR complex in ob/ob and lean mice. Coimmunoprecipitation with an RBP4 antibody brought down stoichiometrically equal amounts of TTR and RBP4, indicating that TTR was not more saturated with RBP4 in ob/ob mice than in controls. However, plasma TTR levels were elevated approximately fourfold in ob/ob mice vs. controls. RBP4 injected intravenously in lean mice cleared rapidly, whereas the t_(1/2) for disappearance was approximately twofold longer in ob/ob plasma. Urinary fractional excretion of RBP4 was reduced in ob/ob mice, consistent with increased retention. In HFD mice, plasma TTR levels and clearance of injected RBP4 were similar to chow-fed controls. Hepatic TTR mRNA levels were elevated approximately twofold in ob/ob but not in HFD mice. Since elevated circulating RBP4 causes insulin resistance and glucose intolerance in mice, these findings suggest that increased TTR or alterations in RBP4-TTR binding may contribute to insulin resistance by stabilizing RBP4 at higher steady-state concentrations in circulation. Lowering TTR levels or interfering with RBP4-TTR binding may enhance insulin sensitivity in obesity and type 2 diabetes.
机译:血清视黄醇结合蛋白(RBP4)由肝脏和脂肪细胞分泌,与啮齿动物和人类的全身胰岛素抵抗有关。 RBP4通常与较大的运甲状腺素蛋白(TTR)同四聚体结合,形成减少RBP4肾脏清除率的蛋白质复合物。为了确定在胰岛素抵抗状态下RBP4-TTR结合的改变是否导致血浆RBP4水平升高,我们研究了瘦素缺陷型ob / ob小鼠和高脂肥胖小鼠(HFD)中的RBP4-TTR相互作用。血浆的凝胶过滤色谱法显示,ob / ob和瘦小鼠的RBP4-TTR复合物中包含88-94%的RBP4。与RBP4抗体的共免疫沉淀使化学计量上等量的TTR和RBP4下降,这表明ob / ob小鼠中RBP4的TTR饱和度没有比对照组高。但是,与对照组相比,ob / ob小鼠的血浆TTR水平升高了约四倍。瘦小鼠静脉注射的RBP4迅速清除,而在ob / ob血浆中消失的t_(1/2)大约长两倍。在ob / ob小鼠中RBP4的尿分数排泄减少,这与保留增加有关。在HFD小鼠中,血浆TTR水平和注射的RBP4清除率与cho喂养的对照组相似。肝TTR mRNA水平在ob / ob中升高约两倍,但在HFD小鼠中未升高。由于循环中的RBP4升高会引起小鼠胰岛素抵抗和葡萄糖耐受不良,因此这些发现表明,TTR的增加或RBP4-TTR结合的改变可通过在循环中较高的稳态浓度下稳定RBP4来促进胰岛素抵抗。降低TTR水平或干扰RBP4-TTR结合可增强肥胖症和2型糖尿病的胰岛素敏感性。

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