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ELT-2是控制秀丽隐杆线虫从胚胎到成虫阶段肠道分化和功能的主要转录因子。

ELT-2 is the predominant transcription factor controlling differentiation and function of the C. elegans intestine, from embryo to adult.

作者信息

McGhee James D, Fukushige Tetsunari, Krause Michael W, Minnema Stephanie E, Goszczynski Barbara, Gaudet Jeb, Kohara Yuji, Bossinger Olaf, Zhao Yongjun, Khattra Jaswinder, Hirst Martin, Jones Steven J M, Marra Marco A, Ruzanov Peter, Warner Adam, Zapf Richard, Moerman Donald G, Kalb John M

机构信息

Department of Biochemistry and Molecular Biology, Department of Medical Genetics, Genes and Development Research Group, University of Calgary, Calgary, Alberta, Canada T2N 4N1.

出版信息

Dev Biol. 2009 Mar 15;327(2):551-65. doi: 10.1016/j.ydbio.2008.11.034. Epub 2008 Dec 9.

Abstract

Starting with SAGE-libraries prepared from C. elegans FAC-sorted embryonic intestine cells (8E-16E cell stage), from total embryos and from purified oocytes, and taking advantage of the NextDB in situ hybridization data base, we define sets of genes highly expressed from the zygotic genome, and expressed either exclusively or preferentially in the embryonic intestine or in the intestine of newly hatched larvae; we had previously defined a similarly expressed set of genes from the adult intestine. We show that an extended TGATAA-like sequence is essentially the only candidate for a cis-acting regulatory motif common to intestine genes expressed at all stages. This sequence is a strong ELT-2 binding site and matches the sequence of GATA-like sites found to be important for the expression of every intestinal gene so far analyzed experimentally. We show that the majority of these three sets of highly expressed intestinal-specific/intestinal-enriched genes respond strongly to ectopic expression of ELT-2 within the embryo. By flow-sorting elt-2(null) larvae from elt-2(+) larvae and then preparing Solexa/Illumina-SAGE libraries, we show that the majority of these genes also respond strongly to loss-of-function of ELT-2. To test the consequences of loss of other transcription factors identified in the embryonic intestine, we develop a strain of worms that is RNAi-sensitive only in the intestine; however, we are unable (with one possible exception) to identify any other transcription factor whose intestinal loss-of-function causes a phenotype of comparable severity to the phenotype caused by loss of ELT-2. Overall, our results support a model in which ELT-2 is the predominant transcription factor in the post-specification C. elegans intestine and participates directly in the transcriptional regulation of the majority (>80%) of intestinal genes. We present evidence that ELT-2 plays a central role in most aspects of C. elegans intestinal physiology: establishing the structure of the enterocyte, regulating enzymes and transporters involved in digestion and nutrition, responding to environmental toxins and pathogenic infections, and regulating the downstream intestinal components of the daf-2/daf-16 pathway influencing aging and longevity.

摘要

我们从由秀丽隐杆线虫经荧光激活细胞分选技术分选的胚胎肠道细胞(8细胞至16细胞阶段)、全胚胎以及纯化的卵母细胞制备的SAGE文库入手,并利用NextDB原位杂交数据库,定义了从合子基因组高度表达的基因集,这些基因在胚胎肠道或新孵化幼虫的肠道中特异性或优先表达;我们之前已经从成虫肠道中定义了一组类似表达的基因。我们发现,一个扩展的TGATAA样序列基本上是所有阶段表达的肠道基因共有的顺式作用调控基序的唯一候选序列。该序列是一个强ELT - 2结合位点,并且与迄今通过实验分析发现对每个肠道基因表达都很重要的GATA样位点序列相匹配。我们表明,这三组高度表达的肠道特异性/肠道富集基因中的大多数对胚胎内ELT - 2的异位表达有强烈反应。通过从elt - 2(+)幼虫中流式分选elt - 2(null)幼虫,然后制备Solexa/Illumina - SAGE文库,我们表明这些基因中的大多数对ELT - 2功能缺失也有强烈反应。为了测试在胚胎肠道中鉴定出的其他转录因子缺失的后果,我们构建了一种仅在肠道中对RNA干扰敏感的线虫品系;然而,我们无法(可能有一个例外)鉴定出任何其他转录因子,其在肠道中的功能缺失会导致与ELT - 2缺失所引起的表型严重性相当的表型。总体而言,我们的结果支持这样一种模型,即ELT - 2是秀丽隐杆线虫肠道分化后主要的转录因子,并直接参与大多数(>80%)肠道基因的转录调控。我们提供的证据表明,ELT - 2在秀丽隐杆线虫肠道生理学的大多数方面都起着核心作用:建立肠上皮细胞的结构、调节参与消化和营养的酶及转运蛋白、对环境毒素和病原体感染作出反应,以及调节影响衰老和寿命的daf - 2/daf - 16信号通路的下游肠道成分。

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