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子宫内邻苯二甲酸盐暴露会导致表观遗传变化并损害胰岛素信号传导。

Phthalate exposure in utero causes epigenetic changes and impairs insulin signalling.

作者信息

Rajesh Parsanathan, Balasubramanian Karundevi

机构信息

Department of EndocrinologyDr ALM Post Graduate Institute of Basic Medical Sciences, University of Madras, Taramani, Chennai 600 113, India.

Department of EndocrinologyDr ALM Post Graduate Institute of Basic Medical Sciences, University of Madras, Taramani, Chennai 600 113, India

出版信息

J Endocrinol. 2014 Oct;223(1):47-66. doi: 10.1530/JOE-14-0111.

Abstract

Di-(2-ethylhexyl)phthalate (DEHP) is an endocrine-disrupting chemical (EDC), widely used as a plasticiser. Developmental exposure to EDCs could alter epigenetic programming and result in adult-onset disease. We investigated whether DEHP exposure during development affects glucose homoeostasis in the F1 offspring as a result of impaired insulin signal transduction in gastrocnemius muscle. Pregnant Wistar rats were administered DEHP (0, 1, 10 and 100 mg/kg per day) from embryonic days 9-21 orally. DEHP-exposed offspring exhibited elevated blood glucose, impaired serum insulin, glucose tolerance and insulin tolerance, along with reduced insulin receptor, glucose uptake and oxidation in the muscle at postnatal day 60. The levels of insulin signalling molecules and their phosphorylation were down-regulated in DEHP-exposed offspring. However, phosphorylated IRS1(Ser636/639), which impedes binding of downstream effectors and the negative regulator (PTEN) of PIP3, was increased in DEHP-exposed groups. Down-regulation of glucose transporter 4 (Glut4 (Slc2a4)) gene expression and increased GLUT4(Ser488) phosphorylation, which decreases its intrinsic activity and translocation towards the plasma membrane, were recorded. Chromatin immunoprecipitation assays detected decreased MYOD binding and increased histone deacetylase 2 interaction towards Glut4, indicative of the tight chromatin structure at the Glut4 promoter. Increased DNMTs and global DNA methylation levels were also observed. Furthermore, methylation of Glut4 at the MYOD-binding site was increased in DEHP-exposed groups. These findings indicate that, gestational DEHP exposure predisposes F1 offspring to glucometabolic dysfunction at adulthood by down-regulating the expression of critical genes involved in the insulin signalling pathway. Furthermore, DEHP-induced epigenetic alterations in Glut4 appear to play a significant role in disposition towards this metabolic abnormality.

摘要

邻苯二甲酸二(2-乙基己基)酯(DEHP)是一种内分泌干扰化学物质(EDC),被广泛用作增塑剂。发育期接触EDC可能会改变表观遗传编程并导致成年期疾病。我们研究了发育期接触DEHP是否会由于腓肠肌胰岛素信号转导受损而影响F1代后代的葡萄糖稳态。从胚胎第9天至21天,对怀孕的Wistar大鼠经口给予DEHP(0、1、10和100毫克/千克/天)。在出生后第60天,接触DEHP的后代出现血糖升高、血清胰岛素受损、葡萄糖耐量和胰岛素耐量受损,同时肌肉中的胰岛素受体、葡萄糖摄取和氧化减少。接触DEHP的后代中胰岛素信号分子及其磷酸化水平下调。然而,在接触DEHP的组中,阻碍下游效应器结合的磷酸化IRS1(Ser636/639)和PIP3的负调节因子(PTEN)增加。记录到葡萄糖转运蛋白4(Glut4(Slc2a4))基因表达下调以及GLUT4(Ser488)磷酸化增加,这会降低其内在活性并减少向质膜的转运。染色质免疫沉淀分析检测到MYOD结合减少以及组蛋白去乙酰化酶2与Glut4的相互作用增加,这表明Glut4启动子处的染色质结构紧密。还观察到DNA甲基转移酶(DNMTs)增加和整体DNA甲基化水平升高。此外,在接触DEHP的组中,Glut4在MYOD结合位点的甲基化增加。这些发现表明,孕期接触DEHP会通过下调胰岛素信号通路中关键基因的表达,使F1代后代在成年期易患糖代谢功能障碍。此外,DEHP诱导的Glut4表观遗传改变似乎在导致这种代谢异常方面起重要作用。

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