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配体诱导发育中小鼠小脑雌激素和甲状腺激素受体表达的变化:一项比较定量PCR和蛋白质免疫印迹研究

Ligand-induced changes in Oestrogen and thyroid hormone receptor expression in the developing rat cerebellum: A comparative quantitative PCR and Western blot study.

作者信息

Scalise Trudy Johnson, Győrffy Andrea, Tóth István, Kiss Dávid Sándor, Somogyi Virág, Goszleth Gréta, Bartha Tibor, Frenyó László V, Zsarnovszky Attila

机构信息

Szent István University Department of Physiology and Biochemistry, Faculty of Veterinary Sciences István u. 2 H-1078 Budapest Hungary.

出版信息

Acta Vet Hung. 2012 Jun;60(2):263-84. doi: 10.1556/AVet.2012.023.

Abstract

Oestrogen (E2) and thyroid hormones (THs) are key regulators of cerebellar development. Recent reports implicate a complex mechanism through which E2 and THs influence the expression levels of each other's receptors (ERs and TRs) to precisely mediate developmental signals and modulate signal strength. We examined the modulating effects of E2 and THs on the expression levels of their receptor mRNAs and proteins in cultured cerebellar cells obtained from 7-day-old rat pups. Cerebellar granule cell cultures were treated with either E2, THs or a combination of these hormones, and resulting receptor expression levels were determined by quantitative PCR and Western blot techniques. The results were compared to non-treated controls and to samples obtained from 14-day-old in situ cerebella. Additionally, we determined the glial effects on the regulation of ER-TR expression levels. The results show that (i) ER and TR expression depends on the combined presence of E2 and THs; (ii) glial cells mediate the hormonal regulation of neuronal ER-TR expression and (iii) loss of tissue integrity results in characteristic changes in ER-TR expression levels. These observations suggest that both E2 and THs, in adequate amounts, are required for the precise orchestration of cerebellar development and that alterations in the ratio of E2/THs may influence signalling mechanisms involved in neurodevelopment. Comparison of data from in vitro and in situ samples revealed a shift in receptor expression levels after loss of tissue integrity, suggesting that such adjusting/regenerative mechanisms may function after cerebellar tissue injury as well.

摘要

雌激素(E2)和甲状腺激素(THs)是小脑发育的关键调节因子。最近的报道表明存在一种复杂机制,通过该机制E2和THs相互影响对方受体(ERs和TRs)的表达水平,以精确介导发育信号并调节信号强度。我们研究了E2和THs对从7日龄大鼠幼崽获得的培养小脑细胞中其受体mRNA和蛋白表达水平的调节作用。用E2、THs或这些激素的组合处理小脑颗粒细胞培养物,并通过定量PCR和蛋白质印迹技术测定所得受体表达水平。将结果与未处理的对照以及从14日龄原位小脑获得的样本进行比较。此外,我们确定了胶质细胞对ER-TR表达水平调节的影响。结果表明:(i)ER和TR的表达取决于E2和THs的共同存在;(ii)胶质细胞介导神经元ER-TR表达的激素调节;(iii)组织完整性的丧失导致ER-TR表达水平发生特征性变化。这些观察结果表明,适量的E2和THs都是小脑发育精确协调所必需的,并且E2/THs比例的改变可能影响神经发育中涉及的信号传导机制。体外和原位样本数据的比较显示,组织完整性丧失后受体表达水平发生了变化,这表明这种调节/再生机制在小脑组织损伤后也可能起作用。

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