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首页> 外文期刊>Journal of neuroendocrinology >Arcuate nucleus transcriptome profiling identifies ankyrin repeat and suppressor of cytokine signalling box-containing protein 4 as a gene regulated by fasting in central nervous system feeding circuits.
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Arcuate nucleus transcriptome profiling identifies ankyrin repeat and suppressor of cytokine signalling box-containing protein 4 as a gene regulated by fasting in central nervous system feeding circuits.

机译:弓形核转录组分析鉴定锚蛋白重复和细胞因子信号转导盒含蛋白4的抑制子,这是一种通过禁食在中枢神经系统进食回路中调控的基因。

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The arcuate nucleus of the hypothalamus is a primary site for sensing blood borne nutrients and hormonal messengers that reflect caloric status. To identify novel energy homeostatic genes, we examined RNA extracts from the microdissected arcuate nucleus of fed and 48-h fasted rats using oligonucleotide microarrays. The relative abundance of 118 mRNA transcripts was increased and 203 mRNA transcripts was decreased during fasting. One of the down-regulated mRNAs was ankyrin-repeat and suppressor of cytokine signalling box-containing protein 4 (Asb-4). The predicted structure of Asb-4 protein suggested that it might encode an intracellular regulatory protein, and therefore its mRNA expression was investigated further. Reverse transcription quantitative polymerase chain reaction was used to validate down-regulation of Asb-4 mRNA in the arcuate nucleus of the fasted Sprague-Dawley rat (relative expression of Asb-4 mRNA: fed = 4.66 +/- 0.26; fasted = 3.96 +/- 0.23; n = 4, P < 0.01). Down-regulation was also demonstrated in the obese fa/fa Zucker rat, another model of energy disequilibrium (relative expression of Asb-4 mRNA: lean Zucker = 3.91 +/- 0.32; fa/fa = 2.93 +/- 0.26; n = 5, P < 0.001). In situ hybridisation shows that Asb-4 mRNA is expressed in brain areas linked to energy homeostasis, including the arcuate nucleus, paraventricular nucleus, dorsomedial nucleus, lateral hypothalamus and posterodorsal medial amygdaloid area. Double in situ hybridisation revealed that Asb-4 mRNA colocalises with key energy homeostatic neurones. In the fed state, Asb-4 mRNA is expressed by 95.6% of pro-opiomelanocortin (POMC) neurones and 46.4% of neuropeptide Y (NPY) neurones. By contrast, in the fasted state, the percentage of POMC neurones expressing Asb-4 mRNA drops to 73.2% (P < 0.001). Moreover, the density of Asb-4 mRNA per fasted POMC neurone is markedly decreased. Conversely, expression of Asb-4 mRNA by NPY neurones in the fasted state is modestly increased to 52.7% (P < 0.05). Based on its differential expression, neuroanatomical distribution and colocalisation, we hypothesise that Asb-4 is a gene involved in energy homeostasis.
机译:下丘脑的弓形核是感知血液中营养物质和激素的主要部位,这些营养物质和激素使卡路里状态得以反映。为了鉴定新的能量稳态基因,我们使用寡核苷酸微阵列检查了进食和禁食48小时的大鼠的显微解剖弓形核的RNA提取物。禁食期间118个mRNA转录物的相对丰度增加,而203个mRNA转录物的相对丰度降低。下调的mRNA之一是锚蛋白重复和抑制细胞因子信号箱的蛋白4(Asb-4)。 Asb-4蛋白的预测结构表明它可能编码细胞内调节蛋白,因此需要进一步研究其mRNA表达。逆转录定量聚合酶链反应用于验证禁食Sprague-Dawley大鼠弓状核中Asb-4 mRNA的下调(Asb-4 mRNA的相对表达:进食= 4.66 +/- 0.26;禁食= 3.96 + /-0.23; n = 4,P <0.01)。在肥胖的fa / fa Zucker大鼠中也证实了下调,这是另一种能量失衡模型(Asb-4 mRNA的相对表达:lean Zucker = 3.91 +/- 0.32; fa / fa = 2.93 +/- 0.26; n = 5,P <0.001)。原位杂交表明,Asb-4 mRNA在与能量稳态相关的大脑区域表达,包括弓形核,室旁核,背核,下丘脑外侧和后方内侧杏仁核区域。双原位杂交显示,Asb-4 mRNA与关键能量稳态神经元共定位。在进食状态下,Asp-4 mRNA的表达率为95.6%的前阿片黑皮质素(POMC)神经元和46.4%的神经肽Y(NPY)神经元。相比之下,在禁食状态下,表达Asb-4 mRNA的POMC神经元的百分比下降至73.2%(P <0.001)。此外,每个禁食的POMC神经元的Asb-4 mRNA的密度显着降低。相反,在禁食状态下,NPY神经元的Asb-4 mRNA表达适度增加至52.7%(P <0.05)。基于其差异表达,神经解剖分布和共定位,我们假设Asb-4是参与能量稳态的基因。

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