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The transcriptome of the rat subfornical organ is altered in response to early postnatal overnutrition

机译:响应于出生后早期的营养过剩大鼠亚生殖器官的转录组发生了变化

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摘要

Early postnatal overnutrition in humans is associated with long-term negative outcomes including obesity, increased risk of type-II diabetes, and cardiovascular disease. Hypothalamic neurons from rodents exposed to early postnatal overnutrition show altered expression of satiety signals and receptors, and exhibit altered responses to many satiety signals, suggesting a hypothalamic link between early overnutrition and development of these sequelae. Importantly, several hypothalamic nuclei receive information regarding circulating hormones (such as insulin, leptin and ghrelin) from the subfornical organ (SFO), a forebrain sensory circumventricular organ which lacks a blood brain barrier. Previous transcriptomic studies indicate that challenges to energy balance and hydration status stimulate changes in gene expression within the SFO, including genes encoding ion channels and receptors. In order to determine if early postnatal overnutrition also causes changes in SFO gene expression which may be associated with homeostatic dysregulation, we performed whole transcriptome sequencing on SFO tissue from rats raised in small (4 pups), or control (large, 12 pups) litters. Illumina RNA sequencing was performed on SFO tissue from rats raised from small and large litters, and read sequences were aligned to the Rat Rnor_6.0 genome. Control data were further compared to previously published microarray data set for validation. We found statistically significant (p < 0.05) changes in expression of 12 transcripts, three of which have likely roles in neuronal excitability, neurite outgrowth and differentiation, and food intake (Manf, Slc24a4, Cracr2b). Additionally, gene ontology analysis identified a trend among significantly altered transcripts in roles for oxidative stress response. We conclude that the SFO transcriptome is subtly altered by early postnatal overnutrition, and recommend further investigation of the effect of early postnatal overnutrition on SFO physiology and morphology.
机译:人类早期的产后营养过剩与长期负面结果有关,包括肥胖,II型糖尿病风险增加和心血管疾病。暴露于出生后早期营养过剩的啮齿动物的下丘脑神经元显示饱食信号和受体的表达改变,并且对许多饱食信号表现出改变的响应,表明这些早期后营养过剩与这些后遗症发展之间存在下丘脑联系。重要的是,几个下丘脑核从缺乏脑血屏障的前脑感觉性室旁器官(SFO)的下分支器官(SFO)接收有关循环激素(例如胰岛素,瘦素和生长素释放肽)的信息。先前的转录组研究表明,对能量平衡和水合状态的挑战刺激了SFO中基因表达的变化,包括编码离子通道和受体的基因。为了确定产后早期营养过剩是否还会引起SFO基因表达的变化,这可能与体内稳态失调有关,我们对小(4仔)或对照组(大,12仔)饲养的大鼠的SFO组织进行了全转录组测序。 Illumina RNA测序是在大小不一的大白鼠的SFO组织上进行的,读取的序列与Rat Rnor_6.0基因组比对。将对照数据与先前发布的微阵列数据集进行进一步比较以进行验证。我们发现12个转录本的表达具有统计学意义(p <0.05),其中三个可能与神经元兴奋性,神经突向外生长和分化以及食物摄入有关(Manf,Slc24a4,Cracr2b)。此外,基因本体分析确定了转录物在氧化应激反应中的作用显着改变的趋势。我们得出的结论是,产后早期营养过剩会微弱地改变SFO转录组,并建议进一步研究产后早期营养过剩对SFO生理和形态的影响。

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