首页> 外文期刊>American Journal of Life Sciences >Restraint-Induced Glucocorticoid Receptor Downregulation is Dysregulated in High Fat Diet-Fed Rats Likely from Impairment of miR-142-3p Expression in the Hypothalamus and Hippocampus
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Restraint-Induced Glucocorticoid Receptor Downregulation is Dysregulated in High Fat Diet-Fed Rats Likely from Impairment of miR-142-3p Expression in the Hypothalamus and Hippocampus

机译:约束诱导的糖皮质激素受体下调在高脂饮食喂养的大鼠中可能下调,可能是由于下丘脑和海马中的miR-142-3p表达受损

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High fat diet (HFD) induces dysregulation of the hypothalamic-pituitary-adrenal (HPA) axis function. The HPA axis is controlled by the feedback of glucocortioids on the hypothalamus, hippocampus and pituitary. At least three miRNAs (miR-101a, miR-124, miR-142-3p) have been reported to suppress glucocorticoid receptor (GR) translation. Because their relation to stress-induced downregulation of GR expression and dysregulation of its expression in HFD feeding are unclear, we studied to identify which miRNAs are involved in restraint-induced downregulation of GR expression in the hypothalamus and hippocampus, and to compare the basal and restraint-modified miRNA expressions in these tissues in HFD-fed rats. Rats exposed to HFD were divided into two groups, HFD-induced obese (HFD-ob) and obesity resistant (HFD-obR) rats. Basal plasma corticosterone concentrations were higher in HFD-ob than in standard chow-fed (SC) rats and in HFD-obR. Restraint-induced elevation of plasma corticosterone was higher in HFD-obR than in the other groups. Restraint decreased GR expressions and increased miR-142-3p expression in the hypothalamus and hippocampus without affecting others expressions. miR-142-3p expressions in both areas were increased by dexamethasone and restraint-induced miR-142-3p expression was blocked in adrenalectomy. The basal expression of GR or miR-142-3p expression in both areas of HFD-fed rats did not differ from those of SC, and restraint induced no changes in GR or miR-142-3p expression in both areas in HFD-ob and HFD-obR. These results suggest that impairment of glucocorticoid-induced increase in miR-142-3p may be involved in dysregulation of stress-induced downregulation of GR expression in the hypothalamus and hippocampus of HFD-fed rats.
机译:高脂饮食(HFD)导致下丘脑-垂体-肾上腺(HPA)轴功能失调。 HPA轴受下丘脑,海马和垂体上糖皮质激素的反馈控制。据报道,至少三个miRNA(miR-101a,miR-124,miR-142-3p)抑制糖皮质激素受体(GR)的翻译。由于尚不清楚它们与应激诱导的HFD喂养中GR表达下调及其表达失调之间的关系,因此我们研究鉴定了哪些miRNA参与了下丘脑和海马中GR的抑制诱导下调,并比较了基础和HFD喂养的大鼠在这些组织中的限制性修饰的miRNA表达。暴露于HFD的大鼠分为两组,HFD诱导的肥胖(HFD-ob)和肥胖抵抗性(HFD-obR)大鼠。在HFD-ob中,基础血浆皮质类固醇浓度高于在标准高脂喂养(SC)大鼠和HFD-obR中。约束诱导的血浆皮质酮升高在HFD-obR中高于其他组。抑制在下丘脑和海马中GR表达降低,而miR-142-3p表达升高,而不会影响其他表达。地塞米松增加了这两个区域中的miR-142-3p表达,并且在肾上腺切除术中抑制了约束诱导的miR-142-3p表达。用HFD喂养的大鼠的两个部位的GR或miR-142-3p的基础表达与SC均无差异,束缚诱导HFD-ob和HFD的两个部位的GR或miR-142-3p的表达均无变化。 HFD-obR。这些结果表明,糖皮质激素诱导的miR-142-3p升高的损伤可能与HFD喂养的大鼠下丘脑和海马应激诱导的GR表达下调失调有关。

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