...
首页> 外文期刊>Development >HNF4 factors control chromatin accessibility and are redundantly required for maturation of the fetal intestine
【24h】

HNF4 factors control chromatin accessibility and are redundantly required for maturation of the fetal intestine

机译:HNF4因子控制染色质可用性,胎儿肠道成熟需要冗余

获取原文
获取原文并翻译 | 示例
           

摘要

s embryos mature, cells undergo remarkable transitions that are accompanied by shifts in transcription factor regulatory networks. Mechanisms driving developmental transitions are incompletely understood. The embryonic intestine transitions from a rapidly proliferating tube with pseudostratified epithelium prior to murine embryonic day (E) 14.5 to an exquisitely folded columnar epithelium in fetal stages. We sought to identify factors driving mouse fetal intestinal maturation by mining chromatin accessibility data for transcription factor motifs. ATAC-seq accessible regions shift during tissue maturation, with CDX2 transcription factor motifs abundant at chromatin-accessible regions of the embryo. Hepatocyte nuclear factor 4 (HNF4) transcription factor motifs are the most abundant in the fetal stages (>E16.5). Genetic inactivation of Hnf4a and its paralog Hnf4g revealed that HNF4 factors are redundantly required for fetal maturation. CDX2 binds to and activates Hnf4 gene loci to elevate HNF4 expression at fetal stages. HNF4 and CDX2 transcription factors then occupy shared genomic regulatory sites to promote chromatin accessibility and gene expression in the maturing intestine. Thus, HNF4 paralogs are key components of an intestinal transcription factor network shift during the embryonic to fetal transition.
机译:S胚胎成熟,细胞经历了显着的转变,伴随着转录因子监管网络中的变化。驾驶发育过渡的机制不完全理解。在鼠胚胎日(e)14.5之前,胚胎肠道从快速增殖的管道转变为鼠胚胎天(E)14.5至胎儿阶段的精致折叠柱状上皮。我们试图通过用于转录因子基序的染色质染色体可访问性数据来确定驱动小鼠胎儿肠道成熟的因素。 ATAC-SEQ可访问区域在组织成熟期间偏移,CDX2转录因子基序在胚胎的染色蛋白可接近区域中丰富。肝细胞核因子4(HNF4)转录因子基序是胎儿阶段中最丰富的(> E16.5)。 HNF4a及其寄生虫HNF4G的遗传失活显示,胎儿成熟需要HNF4因素。 CDX2结合并激活HNF4基因基因座以升高胎儿阶段的HNF 4表达。然后HNF4和CDX2转录因子占据共用基因组调节部位,以促进成熟肠道中的染色质可接受性和基因表达。因此,HNF4常规蛋白酶是胚胎到胎儿过渡期间肠道转录因子网络偏移的关键组分。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号