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大鼠围产期转变过程中的肝脏基因表达

Hepatic Gene Expression During the Perinatal Transition in the Rat.

作者信息

Hurley Edward, Zabala Valerie, Boylan Joan M, Gruppuso Philip A, Sanders Jennifer A

机构信息

Department of Pediatrics, Brown University, Providence, RI, USA.

出版信息

Gene Expr. 2018 Dec 14;19(1):1-13. doi: 10.3727/105221618X15293258688953. Epub 2018 Jun 21.

Abstract

During the immediate postnatal (PN) period, the liver, with its role in energy metabolism and macromolecule synthesis, plays a central role in the perinatal transition. Using RNA microarrays and several complementary computational analyses, we characterized changes in hepatic gene expression in the rat across a developmental period starting with the late gestation fetus (embryonic day 21), and including 30 min PN, 4 h PN, 12 h PN, 1 day PN, and 1 week after birth. Following subtle changes in gene expression at the earliest PN time point, there were marked changes that occurred between 4 and 12 h after birth. These reflected changes in multiple metabolic pathways, with expression of enzymes involved in glycolysis and cholesterol synthesis showing the greatest change. Over 50% of nuclear-encoded mitochondrial genes changed in the first 7 days of PN life, with 25% changing within the first 24 h. We also observed changes coinciding with a transient period of synchronous hepatocyte proliferation that we had observed previously, which occurs during the first PN week. Analysis for upstream regulators of gene expression indicated multiple initiating factors, including cell stress, hormones, and cytokines. Also implicated were multiple canonical transcription factor networks. We conclude that changes in gene expression during the early phases of the perinatal transition involve a complex, choreographed network of signaling pathways that respond to a variety of environmental stimuli. This transcriptomic response during the immediate PN period reflects a complex metabolic adaptive response that incorporates a panoply of signaling pathways and transcriptional regulators.

摘要

在出生后即刻的围产期,肝脏在能量代谢和大分子合成中发挥作用,在围产期过渡中起着核心作用。我们使用RNA微阵列和几种互补的计算分析方法,对大鼠从妊娠晚期胎儿(胚胎第21天)开始,包括出生后30分钟、4小时、12小时、1天以及出生后1周这一发育阶段的肝脏基因表达变化进行了表征。在出生后最早时间点基因表达出现细微变化后,出生后4至12小时之间发生了显著变化。这些变化反映了多种代谢途径的改变,其中参与糖酵解和胆固醇合成的酶的表达变化最为显著。超过50%的核编码线粒体基因在围产期生活的前7天发生变化,其中25%在最初24小时内发生变化。我们还观察到与之前观察到的肝细胞同步增殖的短暂时期相吻合的变化,这一时期发生在围产期第一周。对基因表达上游调节因子的分析表明存在多种起始因子,包括细胞应激、激素和细胞因子。还涉及多个经典转录因子网络。我们得出结论,围产期过渡早期阶段的基因表达变化涉及一个复杂的、精心编排的信号通路网络,该网络对多种环境刺激做出反应。出生后即刻围产期的这种转录组反应反映了一种复杂的代谢适应性反应,其中包含了一系列信号通路和转录调节因子。

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Deciphering the Developmental Dynamics of the Mouse Liver Transcriptome.解析小鼠肝脏转录组的发育动态
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