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伴随血清素水平改变的全转录组变化 于……中

Global Transcriptome Changes That Accompany Alterations in Serotonin Levels in .

作者信息

Cruz-Corchado Johnny, Ooi Felicia K, Das Srijit, Prahlad Veena

机构信息

Department of Biology, Aging Mind and Brain Initiative, Iowa Neuroscience Institute, 143 Biology Building, Iowa City, IA 52242-1324.

Department of Biology, Aging Mind and Brain Initiative, Iowa Neuroscience Institute, 143 Biology Building, Iowa City, IA 52242-1324

出版信息

G3 (Bethesda). 2020 Apr 9;10(4):1225-1246. doi: 10.1534/g3.120.401088.

Abstract

Serotonin (5-hydroxytryptamine, 5-HT), is a phylogenetically ancient molecule best characterized as a neurotransmitter that modulates multiple aspects of mood and social cognition. The roles that 5-HT plays in normal and abnormal behavior are not fully understood but have been posited to be due to its common function as a 'defense signal'. However, 5-HT levels also systemically impact cell physiology, modulating cell division, migration, apoptosis, mitochondrial biogenesis, cellular metabolism and differentiation. Whether these diverse cellular effects of 5-HT also share a common basis is unclear. provides an ideal system to interrogate the systemic effects of 5-HT, since lacking a blood-brain barrier, 5-HT synthesized and released by neurons permeates the organism to modulate neuronal as well as non-neuronal cells throughout the body. Here we used RNA-Seq to characterize the systemic changes in gene expression that occur in upon altering 5-HT levels, and compared the transcriptomes to published datasets. We find that an acute increase in 5-HT is accompanied by a global decrease in gene expression levels, upregulation of genes involved in stress pathways, changes that significantly correlate with the published transcriptomes of animals that have activated defense and immune responses, and an increase in levels of phosphorylated eukaryotic initiation factor, eIF2α. In 5-HT deficient animals lacking tryptophan hydroxylase () there is a net increase in gene expression, with an overrepresentation of genes related to development and chromatin. Surprisingly, the transcriptomes of animals with acute increases in 5-HT levels, and 5-HT deficiency do not overlap with transcriptomes of mutants with whom they share striking physiological resemblance. These studies are the first to catalog systemic transcriptome changes that occur upon alterations in 5-HT levels. They further show that in changes in gene expression upon altering 5-HT levels, and changes in physiology, are not directly correlated.

摘要

血清素(5-羟色胺,5-HT)是一种在系统发育上古老的分子,其最显著的特征是作为一种神经递质,可调节情绪和社会认知的多个方面。5-HT在正常和异常行为中所起的作用尚未完全了解,但据推测是由于其作为“防御信号”的共同功能。然而,5-HT水平也会系统性地影响细胞生理,调节细胞分裂、迁移、凋亡、线粒体生物发生、细胞代谢和分化。5-HT的这些不同细胞效应是否也有共同的基础尚不清楚。由于缺乏血脑屏障,神经元合成和释放的5-HT会渗透到整个机体中,调节全身的神经元和非神经元细胞,因此为研究5-HT的全身效应提供了一个理想的系统。在这里,我们使用RNA测序来表征5-HT水平改变时发生的基因表达的系统性变化,并将转录组与已发表的数据集进行比较。我们发现,5-HT的急性增加伴随着基因表达水平的整体下降、应激途径相关基因的上调,这些变化与已发表的激活防御和免疫反应的动物转录组显著相关,以及磷酸化真核起始因子eIF2α水平的增加。在缺乏色氨酸羟化酶()的5-HT缺陷动物中,基因表达有净增加,与发育和染色质相关的基因占比过高。令人惊讶的是,5-HT水平急性增加的动物和5-HT缺陷动物的转录组与具有显著生理相似性的突变体的转录组不重叠。这些研究首次编目了5-HT水平改变时发生的系统性转录组变化。它们进一步表明,在中,5-HT水平改变时的基因表达变化与生理变化并不直接相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3632/7144078/f7fddff3d5c3/1225f1.jpg

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