Suppr超能文献

鸡肝脏从进食到禁食转变过程中的转录组分析。

Transcriptome profiling of the feeding-to-fasting transition in chicken liver.

作者信息

Désert Colette, Duclos Michel J, Blavy Pierre, Lecerf Frédéric, Moreews François, Klopp Christophe, Aubry Marc, Herault Frédéric, Le Roy Pascale, Berri Cécile, Douaire Madeleine, Diot Christian, Lagarrigue Sandrine

机构信息

INRA, UMR 598, Génétique Animale, F-35000 Rennes, France.

出版信息

BMC Genomics. 2008 Dec 17;9:611. doi: 10.1186/1471-2164-9-611.

Abstract

BACKGROUND

Starvation triggers a complex array of adaptative metabolic responses including energy-metabolic responses, a process which must imply tissue specific alterations in gene expression and in which the liver plays a central role. The present study aimed to describe the evolution of global gene expression profiles in liver of 4-week-old male chickens during a 48 h fasting period using a chicken 20 K oligoarray.

RESULTS

A large number of genes were modulated by fasting (3532 genes with a pvalue corrected by Benjamini-Hochberg < 0.01); 2062 showed an amplitude of variation higher than +/- 40% among those, 1162 presented an human ortholog, allowing to collect functional information. Notably more genes were down-regulated than up-regulated, whatever the duration of fasting (16 h or 48 h). The number of genes differentially expressed after 48 h of fasting was 3.5-fold higher than after 16 h of fasting. Four clusters of co-expressed genes were identified by a hierarchical cluster analysis. Gene Ontology, KEGG and Ingenuity databases were then used to identify the metabolic processes associated to each cluster. After 16 h of fasting, genes involved in ketogenesis, gluconeogenesis and mitochondrial or peroxisomal fatty acid beta-oxidation, were up-regulated (cluster-1) whereas genes involved in fatty acid and cholesterol synthesis were down-regulated (cluster-2). For all genes tested, the microarray data was confirmed by quantitative RT-PCR. Most genes were altered by fasting as already reported in mammals. A notable exception was the HMG-CoA synthase 1 gene, which was up-regulated following 16 and 48 h of fasting while the other genes involved in cholesterol metabolism were down-regulated as reported in mammalian studies. We further focused on genes not represented on the microarray and candidates for the regulation of the target genes belonging to cluster-1 and -2 and involved in lipid metabolism. Data are provided concerning PPARa, SREBP1, SREBP2, NR1H3 transcription factors and two desaturases (FADS1, FADS2).

CONCLUSION

This study evidences numerous genes altered by starvation in chickens and suggests a global repression of cellular activity in response to this stressor. The central role of lipid and acetyl-CoA metabolisms and its regulation at transcriptional level are confirmed in chicken liver in response to short-term fasting. Interesting expression modulations were observed for NR1H3, FADS1 and FADS2 genes. Further studies are needed to precise their role in the complex regulatory network controlling lipid metabolism.

摘要

背景

饥饿引发一系列复杂的适应性代谢反应,包括能量代谢反应,这一过程必然涉及基因表达的组织特异性改变,而肝脏在其中起着核心作用。本研究旨在利用鸡20K寡核苷酸芯片描述4周龄雄性鸡肝脏在48小时禁食期内全局基因表达谱的变化。

结果

大量基因受禁食调节(3532个基因经Benjamini-Hochberg校正后的p值<0.01);其中2062个基因的变化幅度高于+/-40%,1162个基因有人类直系同源基因,从而能够收集功能信息。值得注意的是,无论禁食时间长短(16小时或48小时),下调的基因都比上调的基因多。禁食48小时后差异表达的基因数量比禁食16小时后高3.5倍。通过层次聚类分析鉴定出四个共表达基因簇。然后利用基因本体论、KEGG和Ingenuity数据库鉴定与每个簇相关的代谢过程。禁食16小时后,参与生酮作用、糖异生以及线粒体或过氧化物酶体脂肪酸β-氧化的基因上调(簇1),而参与脂肪酸和胆固醇合成的基因下调(簇2)。对于所有检测的基因,微阵列数据通过定量RT-PCR得到证实。如在哺乳动物中已报道的那样,大多数基因受禁食影响而改变。一个显著的例外是HMG-CoA合酶1基因,在禁食16小时和48小时后该基因上调,而参与胆固醇代谢的其他基因如在哺乳动物研究中报道的那样下调。我们进一步关注微阵列上未呈现的基因以及属于簇1和簇2且参与脂质代谢的靶基因调控的候选基因。提供了有关PPARa、SREBP1、SREBP2、NR1H3转录因子和两种去饱和酶(FADS1、FADS2)的数据。

结论

本研究证明鸡体内有大量基因因饥饿而改变,并表明细胞活性因这种应激源而受到整体抑制。脂质和乙酰辅酶A代谢及其在转录水平的调控在鸡肝脏对短期禁食的反应中所起的核心作用得到证实。观察到NR1H3、FADS1和FADS2基因有有趣的表达调节。需要进一步研究以明确它们在控制脂质代谢的复杂调控网络中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14da/2628918/cfa1a839df95/1471-2164-9-611-1.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验