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渗透压应激增加下丘脑视上核中脑源性神经营养因子信使核糖核酸的表达,且对其转录本有不同调控。与精氨酸加压素含量的关系。

Osmotic stress increases brain-derived neurotrophic factor messenger RNA expression in the hypothalamic supraoptic nucleus with differential regulation of its transcripts. Relation to arginine-vasopressin content.

作者信息

Aliaga E, Arancibia S, Givalois L, Tapia-Arancibia L

机构信息

Laboratoire de Plasticité Cérébrale, UMR 5102 CNRS, Université Montpellier 2, CC 090, Place Eugène Bataillon, 34095 Montpellier Cedex 5, France.

出版信息

Neuroscience. 2002;112(4):841-50. doi: 10.1016/s0306-4522(02)00128-8.

Abstract

We have shown that osmotic stress increases brain-derived neurotrophic factor (BDNF) mRNA in the supraoptic nucleus and that this increase seems to be determined by the high expression of transcripts containing exon I. The paraventricular nucleus is another hypothalamic neuronal subset where BDNF mRNA is also sensitive to osmotic stress stimulation. In this nucleus, transcripts containing exon I were not modified but only those containing exon II. By contrast, transcripts containing exon III did not exhibit any variation in our experimental conditions. The presence of BDNF mRNA in both paraventricular and supraoptic hypothalamic nuclei was recently reported. These nuclei are extremely sensitive to osmotic stimuli and their neurons secrete oxytocin and arginine-vasopressin in the posterior pituitary gland. This study was thus designed to investigate the possible involvement of BDNF in the response of supraoptic nucleus to osmotic stress stimulus. Osmotic stress was induced by hypertonic saline injection (1.35% NaCl) administered to animals 3 h before analysis. We used non-isotopic in situ hybridization to study the expression of BDNF mRNA and its transcripts with antisense riboprobes on histological brain sections, including paraventricular and supraoptic nuclei from control and osmotic stress-stimulated animals. To investigate a possible correlation between the expression of BDNF mRNA and arginine-vasopressin, the peptide content was analyzed by immunohistochemistry in both paraventricular and supraoptic nuclei at two different times after hyperosmotic injection. The results showed that BDNF mRNA expression preceded the arginine-vasopressin increase. In addition, on serial adjacent histological sections of supraoptic nucleus (10 microm), both BDNF and arginine-vasopressin mRNAs were visualized by isotopic in situ hybridization and the images were overlaid, showing that almost all of the hybridization signals were overlapped. Taken together our results are in keeping with the hypothesis that activation of the different BDNF promoters seems to be region-specific. Besides, the temporal correlation between both BDNF mRNA expression and arginine-vasopressin content, as well as the morphological vicinity between their respective producing cells in the supraoptic nucleus, suggest an autocrine or paracrine action for this neurotrophin in the regulation of arginine-vasopressin secretion.

摘要

我们已经表明,渗透压应激可增加视上核中脑源性神经营养因子(BDNF)的mRNA水平,且这种增加似乎是由含第I外显子的转录本的高表达所决定。室旁核是下丘脑神经元的另一个亚群,其中BDNF mRNA也对渗透压应激刺激敏感。在该核中,含第I外显子的转录本未发生改变,只有含第II外显子的转录本发生了变化。相比之下,含第III外显子的转录本在我们的实验条件下未表现出任何变化。最近有报道称,室旁核和视上核中均存在BDNF mRNA。这些核对视渗透压刺激极为敏感,且它们的神经元在后叶垂体中分泌催产素和精氨酸加压素。因此,本研究旨在探讨BDNF在视上核对渗透压应激刺激的反应中可能的作用。在分析前3小时给动物注射高渗盐水(1.35% NaCl)诱导渗透压应激。我们使用非同位素原位杂交技术,用反义核糖探针研究BDNF mRNA及其转录本在组织学脑切片上的表达,这些切片包括来自对照动物和渗透压应激刺激动物的室旁核和视上核。为了研究BDNF mRNA表达与精氨酸加压素之间可能的相关性,在高渗注射后的两个不同时间,通过免疫组织化学分析室旁核和视上核中的肽含量。结果表明,BDNF mRNA表达先于精氨酸加压素增加。此外,在视上核(10微米)的连续相邻组织学切片上,通过同位素原位杂交观察到BDNF和精氨酸加压素的mRNA,并将图像叠加,结果显示几乎所有杂交信号都重叠。综上所述,我们的结果符合不同BDNF启动子的激活似乎具有区域特异性这一假说。此外,BDNF mRNA表达与精氨酸加压素含量之间的时间相关性,以及视上核中它们各自产生细胞之间的形态学邻近性,表明这种神经营养因子在调节精氨酸加压素分泌中具有自分泌或旁分泌作用。

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