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Full-Length Adiponectin Attenuates Insulin Signaling and Inhibits Insulin-Stimulated Amino Acid Transport in Human Primary Trophoblast Cells

机译:全长脂联素减弱人原代滋养层细胞中的胰岛素信号传导并抑制胰岛素刺激的氨基酸转运。

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Objective-Maternal adiponectin levels are reduced and placental nutrient transporters are upregulated in obesity and gestational diabetes mellitus; however, the effects of adiponectin on placental function are unknown. We hypothesized that adiponectin regulates placental amino acid transport.rnResearch design and methods-Human primary trophoblast cells were cultured and incubated with globular adiponectin (gAd) or full-length adiponectin (fAd) alone or in combination with insulin. System A and L amino acid transport and SNAT1, SNAT2, and SNAT4 isoform expression was measured. The activity of the AMP-activated protein kinase (AMPK), phosphatidylinositol 3 kinase-AKT, and peroxisome prolifera-tor-activated receptor-α (PPARα) signaling pathways was determined.rnResults-In the absence of insulin, gAd stimulated AMPK Thrl72 phosphorylation, SNAT2 protein expression, and system A activity. This effect appeared to be mediated by interleukin-6 release and signal transducer and activator of transcription 3 (STAT3) signaling because gAd failed to stimulate system A in cells in which STAT3 had been silenced using small interfering RNA. fAd alone had no effect on system A activity or SNAT expression. Insulin increased AKT and insulin receptor substrate 1 (IRS-1) phosphorylation, system A activity, and SNAT2 expression. When combined with insulin, gAd did not affect system A activity or SNAT expression. In contrast, fAd abolished insulin-stimulated AKT Thr308 and IRS-1 Tyr612 phosphorylation, system A activity, and SNAT2 expression. Furthermore, fAd increased PPARa expression and PPARa (Ser21) phosphorylation.rnConclusions-In contrast to the insulin-sensitizing actions of adiponectin in liver and muscle reported in the literature, fAd attenuates insulin signaling in primary human trophoblast cells. As a result, fAd inhibits insulin-stimulated amino acid transport, which may have important implications for placental nutrient transport and fetal growth in pregnancy complications associated with altered maternal adiponectin levels.
机译:肥胖和妊娠糖尿病患者的客观-母体脂联素水平降低,胎盘营养转运蛋白上调;然而,脂联素对胎盘功能的影响尚不清楚。我们假设脂联素调节胎盘氨基酸的转运。研究设计和方法-培养人类原代滋养细胞并与球状脂联素(gAd)或全长脂联素(fAd)单独或与胰岛素组合孵育。测量了系统A和L的氨基酸转运以及SNAT1,SNAT2和SNAT4同工型表达。确定了AMP激活的蛋白激酶(AMPK),磷脂酰肌醇3激酶-AKT和过氧化物酶体增殖物激活的受体-α(PPARα)信号通路的活性。结果-在没有胰岛素的情况下,gAd刺激AMPK Thr1772磷酸化,SNAT2蛋白表达和系统A活性。这种作用似乎是由白介素6的释放以及信号转导和转录激活因子3(STAT3)的信号传导所介导的,因为gAd无法刺激使用小干扰RNA沉默了STAT3的细胞中的系统A。单独的fAd对系统A活性或SNAT表达没有影响。胰岛素增加了AKT和胰岛素受体底物1(IRS-1)的磷酸化,系统A活性和SNAT2表达。与胰岛素结合使用时,gAd不会影响系统A的活性或SNAT表达。相反,fAd消除了胰岛素刺激的AKT Thr308和IRS-1 Tyr612磷酸化,系统A活性和SNAT2表达。此外,fAd增加了PPARa的表达和PPARa(Ser21)的磷酸化。rn结论-与文献报道的脂联素在肝脏和肌肉中的胰岛素增敏作用相反,fAd减弱了原代人滋养细胞的胰岛素信号传导。结果,fAd抑制了胰岛素刺激的氨基酸转运,这可能对与孕妇脂联素水平变化相关的妊娠并发症中的胎盘营养素转运和胎儿生长产生重要影响。

著录项

  • 来源
    《Diabetes》 |2010年第4期|P.1161-1170|共10页
  • 作者单位

    Department of Obstetrics and Gynecology, University of Cincinnati,Cincinnati, Ohio Center for Molecular Fetal Therapy, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio;

    rnDepartment of Obstetrics and Gynecology, University of Cincinnati,Cincinnati, Ohio Center for Pregnancy and Newborn Research, Department of Obstetrics and Gynecology, University of Texas Health Science Center, San Antonio, Texas;

    rnDepartment of Obstetrics and Gynecology, University of Cincinnati,Cincinnati, Ohio Center for Pregnancy and Newborn Research, Department of Obstetrics and Gynecology, University of Texas Health Science Center, San Antonio, Texas;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:46:37

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