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首页> 外文期刊>PLoS Genetics >Genome-Wide Identification of Binding Sites Defines Distinct Functions for Caenorhabditis elegans PHA-4/FOXA in Development and Environmental Response
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Genome-Wide Identification of Binding Sites Defines Distinct Functions for Caenorhabditis elegans PHA-4/FOXA in Development and Environmental Response

机译:基因组覆盖结合点的鉴定为<斜视> caenorhabdisegris的不同功能定义了发展和环境反应中的秀丽杆菌 PHA-4 / FOXA

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摘要

Transcription factors are key components of regulatory networks that control development, as well as the response to environmental stimuli. We have established an experimental pipeline in Caenorhabditis elegans that permits global identification of the binding sites for transcription factors using chromatin immunoprecipitation and deep sequencing. We describe and validate this strategy, and apply it to the transcription factor PHA-4, which plays critical roles in organ development and other cellular processes. We identified thousands of binding sites for PHA-4 during formation of the embryonic pharynx, and also found a role for this factor during the starvation response. Many binding sites were found to shift dramatically between embryos and starved larvae, from developmentally regulated genes to genes involved in metabolism. These results indicate distinct roles for this regulator in two different biological processes and demonstrate the versatility of transcription factors in mediating diverse biological roles. Author Summary The C. elegans transcription factor PHA-4 is a member of the highly conserved FOXA family of transcription factors. These factors act as master regulators of organ development by controlling how genes are turned off and on as tissues are formed. Additionally they regulate genes in response to nutrient levels and control both longevity and survival of the organism. However, the extent to which these factors control similar or distinct gene targets for each of these functions is unknown. For this reason, we have used the technique of chromatin immunoprecipitation followed by deep sequencing (ChIP–Seq), to define the target binding sites of PHA-4 on a genome-wide scale, when it is either functioning as an organ identity regulator or in response to environmental stress. Our data clearly demonstrate distinct sets of biologically relevant target genes for the transcription factor PHA-4 under these two different conditions. Not only have we defined PHA-4 targets, but we established an experimental ChIP–Seq pipeline to facilitate the identification of binding sites for many transcription factors in the future.
机译:转录因子是控制发展的监管网络的关键组成部分,以及对环境刺激的反应。我们已经在Caenorhabditis elegans中建立了一个实验管道,允许使用染色质免疫沉淀和深序来全局鉴定转录因子的结合位点。我们描述并验证了这种策略,并将其应用于转录因子PHA-4,其在器官发展和其他蜂窝过程中起着关键作用。在胚胎咽部的形成期间,我们在形成胚胎咽期期间鉴定了数千个粘合位点,并且在饥饿反应期间也发现该因子的作用。发现许多结合位点在胚胎和饥饿的幼虫之间显着偏移,从发育调节基因到参与代谢的基因。这些结果表明该调节剂在两种不同的生物学过程中的不同作用,并证明了转录因子在调解各种生物学作用中的多功能性。作者摘要C. Elegans转录因子PHA-4是高度保守的Foxa转录因子的成员。这些因素是通过控制基因在形成的基因和组织的情况下,作为器官开发的主调节因子。此外,它们响应营养水平并控制生物体的寿命和存活率来调节基因。但是,这些因素对这些功能中的每种功能的类似或不同基因靶点的程度是未知的。因此,我们使用了染色质免疫沉淀的技术,然后进行深序(芯片-SEQ),当其用作器官身份调节剂或者时,将PHA-4的靶结合位点定义为基因组尺寸。响应环境压力。我们的数据清楚地展示了在这两个不同条件下转录因子PHA-4的不同组织相关靶基因。我们不仅定义了PHA-4目标,而且我们建立了一个实验芯片SEQ管道,以促进未来许多转录因子的结合位点。

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