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Genome-wide studies of nuclear receptors in cell fate decisions

机译:细胞命运决定中核受体的全基因组研究

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Nuclear receptors (NRs) are important mediators of the information encoded in the chemical structure of its corresponding ligand, as they interpret such information in the context of the cell identity and physiological status and convert it into sequential transcription regulatory events. At the cell level this can result in temporally coordinated processes such as cell fate transitions, which comprise the regulation of a plethora of gene programs including among others regulation of cell proliferation, metabolism and specific functionalities that are acquired by the differentiated cell. While both the early steps of nuclear receptor function and their impact on animal/organ physiology is rather well understood, little is known about the dynamic gene networks that ultimately cause a particular (cell) physiological phenomenon induced by the cognate NR ligand/hormone. Thanks to advances in massive parallel sequencing and bioinformatics analyses of genome-wide data sets, time has come for the development of NR systems biology. Indeed it is now possible to integrate global transcription factor binding, epigenetic chromatin histone and DNA modification patterns with transcriptomes and 3-dimensional chromatin structures, extract decision points in temporal studies and decipher the temporal control of gene networks that are the ultimate genetic readouts of NR ligandinduced physiological phenomena. In this review we will summarize the chronology of the development of increasingly larger data sets for NR action, with a particular focus on studies performed with the RAR/RXR nuclear receptor family, and discuss the present attempts to integrate a multitude of genomewide data sets in the ultimate context of the temporal 3-dimensional chromatin structure.
机译:核受体(NRs)是在其相应配体的化学结构中编码的信息的重要介体,因为它们会在细胞身份和生理状态的背景下解释此类信息,并将其转换为顺序的转录调控事件。在细胞水平上,这可能会导致时间上协调一致的过程,例如细胞命运转变,其中包括对众多基因程序的调节,其中包括对细胞增殖,代谢和分化细胞获得的特定功能的调节等。尽管人们对核受体功能的早期步骤及其对动物/器官生理的影响都相当了解,但对于最终导致由同源NR配体/激素诱导的特定(细胞)生理现象的动态基因网络知之甚少。由于大规模并行测序和对全基因组数据集进行生物信息学分析的进展,NR系统生物学的发展时机已经到来。实际上,现在有可能将整体转录因子结合,表观遗传染色质组蛋白和DNA修饰模式与转录组和3维染色质结构整合在一起,在时间研究中提取决策点,并破译作为NR最终遗传读数的基因网络的时间控制。配体诱导的生理现象。在这篇综述中,我们将总结开发越来越大的NR作用数据集的时间顺序,特别关注RAR / RXR核受体家族进行的研究,并讨论目前整合多种全基因组数据集的尝试。时间3维染色质结构的最终上下文。

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