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在斑马鱼发育的早期就出现了具有深度保守调控活性的心脏增强因子。

Heart enhancers with deeply conserved regulatory activity are established early in zebrafish development.

机构信息

Program in Genetics and Genome Biology, The Hospital for Sick Children, Toronto, ON, M5G 0A4, Canada.

Program in Developmental and Stem Cell Biology, The Hospital for Sick Children, Toronto, ON, M5G 0A4, Canada.

出版信息

Nat Commun. 2018 Nov 26;9(1):4977. doi: 10.1038/s41467-018-07451-z.

Abstract

During the phylotypic period, embryos from different genera show similar gene expression patterns, implying common regulatory mechanisms. Here we set out to identify enhancers involved in the initial events of cardiogenesis, which occurs during the phylotypic period. We isolate early cardiac progenitor cells from zebrafish embryos and characterize 3838 open chromatin regions specific to this cell population. Of these regions, 162 overlap with conserved non-coding elements (CNEs) that also map to open chromatin regions in human. Most of the zebrafish conserved open chromatin elements tested drive gene expression in the developing heart. Despite modest sequence identity, human orthologous open chromatin regions recapitulate the spatial temporal expression patterns of the zebrafish sequence, potentially providing a basis for phylotypic gene expression patterns. Genome-wide, we discover 5598 zebrafish-human conserved open chromatin regions, suggesting that a diverse repertoire of ancient enhancers is established prior to organogenesis and the phylotypic period.

摘要

在表型期,来自不同属的胚胎表现出相似的基因表达模式,这表明存在共同的调控机制。在这里,我们旨在鉴定参与心脏发生初始事件的增强子,心脏发生发生在表型期。我们从斑马鱼胚胎中分离出早期心脏祖细胞,并对该细胞群体特有的 3838 个开放染色质区域进行了特征描述。其中,162 个与保守的非编码元件(CNEs)重叠,这些元件也映射到人类的开放染色质区域。在测试的大多数斑马鱼保守的开放染色质元件中,驱动基因在发育中的心脏中表达。尽管序列同一性较小,但人类同源的开放染色质区域再现了斑马鱼序列的时空表达模式,这可能为表型基因表达模式提供了基础。在全基因组范围内,我们发现了 5598 个斑马鱼-人类保守的开放染色质区域,这表明在器官发生和表型期之前就建立了多样化的古老增强子库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d68/6255839/2a2d23bffa48/41467_2018_7451_Fig1_HTML.jpg

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