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Cell-fate transitions involve the integration of genomic information encoded by regulatory elements, such as enhancers, with the cellular environment. However, identification of genomic sequences that control human embryonic development represents a formidable challenge. Here we show that in human embryonic stem cells (hESCs), unique chromatin signatures identify two distinct classes of genomic elements, both of which are marked by the presence of chromatin regulators p300 and BRG1, monomethylation of histone H3 at lysine 4 (H3K4me1), and low nucleosomal density. In addition, elements of the first class are distinguished by the acetylation of histone H3 at lysine 27 (H3K27ac), overlap with previously characterized hESC enhancers, and are located proximally to genes expressed in hESCs and the epiblast. In contrast, elements of the second class, which we term 'poised enhancers', are distinguished by the absence of H3K27ac, enrichment of histone H3 lysine 27 trimethylation (H3K27me3), and are linked to genes inactive in hESCs and instead are involved in orchestrating early steps in embryogenesis, such as gastrulation, mesoderm formation and neurulation. Consistent with the poised identity, during differentiation of hESCs to neuroepithelium, a neuroectoderm-specific subset of poised enhancers acquires a chromatin signature associated with active enhancers. When assayed in zebrafish embryos, poised enhancers are able to direct cell-type and stage-specific expression characteristic of their proximal developmental gene, even in the absence of sequence conservation in the fish genome. Our data demonstrate that early developmental enhancers are epigenetically pre-marked in hESCs and indicate an unappreciated role of H3K27me3 at distal regulatory elements. Moreover, the wealth of new regulatory sequences identified here provides an invaluable resource for studies and isolation of transient, rare cell populations representing early stages of human embryogenesis.  相似文献   

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Identifying the sequences that direct the spatial and temporal expression of genes and defining their function in vivo remains a significant challenge in the annotation of vertebrate genomes. One major obstacle is the lack of experimentally validated training sets. In this study, we made use of extreme evolutionary sequence conservation as a filter to identify putative gene regulatory elements, and characterized the in vivo enhancer activity of a large group of non-coding elements in the human genome that are conserved in human-pufferfish, Takifugu (Fugu) rubripes, or ultraconserved in human-mouse-rat. We tested 167 of these extremely conserved sequences in a transgenic mouse enhancer assay. Here we report that 45% of these sequences functioned reproducibly as tissue-specific enhancers of gene expression at embryonic day 11.5. While directing expression in a broad range of anatomical structures in the embryo, the majority of the 75 enhancers directed expression to various regions of the developing nervous system. We identified sequence signatures enriched in a subset of these elements that targeted forebrain expression, and used these features to rank all approximately 3,100 non-coding elements in the human genome that are conserved between human and Fugu. The testing of the top predictions in transgenic mice resulted in a threefold enrichment for sequences with forebrain enhancer activity. These data dramatically expand the catalogue of human gene enhancers that have been characterized in vivo, and illustrate the utility of such training sets for a variety of biological applications, including decoding the regulatory vocabulary of the human genome.  相似文献   

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Valouev A  Johnson SM  Boyd SD  Smith CL  Fire AZ  Sidow A 《Nature》2011,474(7352):516-520
Nucleosomes are the basic packaging units of chromatin, modulating accessibility of regulatory proteins to DNA and thus influencing eukaryotic gene regulation. Elaborate chromatin remodelling mechanisms have evolved that govern nucleosome organization at promoters, regulatory elements, and other functional regions in the genome. Analyses of chromatin landscape have uncovered a variety of mechanisms, including DNA sequence preferences, that can influence nucleosome positions. To identify major determinants of nucleosome organization in the human genome, we used deep sequencing to map nucleosome positions in three primary human cell types and in vitro. A majority of the genome showed substantial flexibility of nucleosome positions, whereas a small fraction showed reproducibly positioned nucleosomes. Certain sites that position in vitro can anchor the formation of nucleosomal arrays that have cell type-specific spacing in vivo. Our results unveil an interplay of sequence-based nucleosome preferences and non-nucleosomal factors in determining nucleosome organization within mammalian cells.  相似文献   

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Chromatin is composed of DNA and a variety of modified histones and non-histone proteins, which have an impact on cell differentiation, gene regulation and other key cellular processes. Here we present a genome-wide chromatin landscape for Drosophila melanogaster based on eighteen histone modifications, summarized by nine prevalent combinatorial patterns. Integrative analysis with other data (non-histone chromatin proteins, DNase I hypersensitivity, GRO-Seq reads produced by engaged polymerase, short/long RNA products) reveals discrete characteristics of chromosomes, genes, regulatory elements and other functional domains. We find that active genes display distinct chromatin signatures that are correlated with disparate gene lengths, exon patterns, regulatory functions and genomic contexts. We also demonstrate a diversity of signatures among Polycomb targets that include a subset with paused polymerase. This systematic profiling and integrative analysis of chromatin signatures provides insights into how genomic elements are regulated, and will serve as a resource for future experimental investigations of genome structure and function.  相似文献   

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A map of the cis-regulatory sequences in the mouse genome   总被引:1,自引:0,他引:1  
Y Shen  F Yue  DF McCleary  Z Ye  L Edsall  S Kuan  U Wagner  J Dixon  L Lee  VV Lobanenkov  B Ren 《Nature》2012,488(7409):116-120
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The long-range interaction landscape of gene promoters   总被引:3,自引:0,他引:3  
A Sanyal  BR Lajoie  G Jain  J Dekker 《Nature》2012,489(7414):109-113
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隔离子     
隔离子作为一种转录调控因子,可以调节增强子和启动子之间的相互作用,也可以保护基因免受沉默效应的影响.本文从隔离子的生物学功能、作用特点和作用机制几个方面对其进行了介绍.  相似文献   

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染色质DNA对DNase Ⅰ表现出高敏感性的位点(DNase Ⅰ hypersensitive sites,DHSs)多是顺式作用元件所在的位置,包括启动子、增强子、调节子和衰减子等.研究DHSs位点的数目及其动态变化是探明顺式作用元件功能、揭示基因表达调控机制,乃至进行基因编辑和创新遗传材料的重要辅助手段.本文借鉴水稻和拟南芥DHSs文库构建方法,通过优化设计,初步建立了二倍体雷蒙德氏棉(Gossypium raimondii D5)的DHSs文库,为深入进行棉花功能基因组研究奠定基础.  相似文献   

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A viral enhancer element specifically active in human haematopoietic cells   总被引:30,自引:0,他引:30  
L Mosthaf  M Pawlita  P Gruss 《Nature》1985,315(6020):597-600
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A high-resolution map of active promoters in the human genome   总被引:1,自引:0,他引:1  
Kim TH  Barrera LO  Zheng M  Qu C  Singer MA  Richmond TA  Wu Y  Green RD  Ren B 《Nature》2005,436(7052):876-880
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