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Microarray analysis of the transcriptome of the subfornical organ in the rat: regulation by fluid and food deprivation

机译:大鼠子宫内风官转录组的微阵列分析:通过流体和食品剥夺调节

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Microarray analysis of the transcriptome of the subfornical organ in the rat: regulation by fluid and food deprivation. Am J Physiol Regul Integr Comp Physiol 295: R1914-R1920, 2008. First published October 1, 2008; doi:10.1152/ajpregu.90560.2008.-We have employed microarray technology using Affymetrix 230 2.0 genome chips to initially catalog the transcriptome of the subfornical organ (SFO) under control conditions and to also evaluate the changes (common and differential) in gene expression induced by the challenges of fluid and food deprivation. We have identified a total of 17,293 genes tagged as present in one of our three experimental conditions, transcripts, which were then used as the basis for further filtering and statistical analysis. In total, the expression of 46 genes was changed in the SFO following dehydration compared with control animals (22 upregulated and 24 downregulated), with the largest change being the greater than fivefold increase in brain-derived neurotrophic factor (BDNF) expression, while significant changes in the expression of the calcium-sensing (upregulated) and apelin (downregulated) receptors were also reported. In contrast, food deprivation caused greater than twofold changes in a total of 687 transcripts (222 upregulated and 465 downregulated), including significant reductions in vasopressin, oxy-tocin, promelanin concentrating hormone, cocaine amphetamine-related transcript (CART), and the endothelin type B receptor, as well as increases in the expression of the GABAb receptor. Of these regulated transcripts, we identified 37 that are commonly regulated by fasting and dehydration, nine that were uniquely regulated by dehydration, and 650 that are uniquely regulated by fasting. We also found five transcripts that were differentially regulated by fasting and dehydration including BDNF and CART. In these studies we have for the first time described the transcriptome of the rat SFO and have in addition identified genes, the expression of which is significantly modified by either water or food deprivation
机译:大鼠子叉器官转录组的微阵列分析:通过流体和食品剥夺调节。 AM J Physiol Seng Intent Comp Physiol 295:R1914-R1920,2008. 2008年10月1日发表; DOI:10.1152 / AJPREGU.90560.2008 .--我们使用了使用Affymetrix 230 2.0基因组芯片的微阵列技术在对照条件下初始目录,并在对照条件下对子宫内风官(SFO)的转录组目录,并评估诱导的基因表达中的变化(常见和差异)通过液体和食品剥夺的挑战。我们已经鉴定了我们三个实验条件的转录物之一的总共标记的17,293个基因,然后用作进一步过滤和统计分析的基础。总共,与对照动物(22上调和下调24个)相比,在SFO后,SFO改变了46个基因的表达,最大变化是脑衍生的神经营养因子(BDNF)表达的大于五倍,同时显着还报道了钙感测(上调)和阿贝林(下调)受体的表达的变化。相比之下,粮食剥夺引起的,总共大于双重变化,总共687份转录物(222次上调和465个下调),包括血压加压素,氧 - 特霉素,Promelanin浓缩激素,可卡因amphetamine相关转录物(推车)和内皮素的显着减少B型受体,以及增加Gabab受体的表达的增加。在这些受调节的转录物中,我们确定了37,其通常通过禁食和脱水通常调节,九个用脱水唯一调节,650个通过禁食唯一调节。我们还发现了五个转录物,通过禁食和脱水,包括BDNF和推车在内的速度调节。在这些研究中,我们首次描述了大鼠SFO的转录组并具有另外的鉴定基因,其表达是通过水或食物剥夺的显着修饰的

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