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人子宫内膜中叉头框 A2(FOXA2)顺式作用元件的综合分析。

Integrative analysis of the forkhead box A2 (FOXA2) cistrome for the human endometrium.

机构信息

Division of Animal Sciences, University of Missouri, Columbia, Missouri, USA.

Informatics Institute, University of Missouri, Columbia, Missouri, USA.

出版信息

FASEB J. 2019 Jul;33(7):8543-8554. doi: 10.1096/fj.201900013R. Epub 2019 Apr 5.

Abstract

The pioneer forkhead box (FOX)A2 transcription factor is specifically expressed in the glands of the uterus, which are central to endometrial function and fertility. In mice, FOXA2 is a critical regulator of uterine gland development in the neonate and gland function in the adult. An integrative approach was used here to define the FOXA2 cistrome in the human endometrium. Genome-wide mapping of FOXA2 binding intervals by chromatin immunoprecipitation sequencing was performed using proliferative (P)- and midsecretory (MS)-phase endometrium and integrated with the transcriptome determined by RNA sequencing. Distinctive FOXA2 binding intervals, enriched for different transcription factor binding site motifs, were detected in the P and MS endometrium. Pathway analysis revealed different biologic processes regulated by genes with FOXA2 binding intervals in the P and MS endometrium. Thus, FOXA2 is postulated to regulate gene expression in concert with other transcription factors and impact uterine gland development and function in a cycle phase-dependent manner. Analyses also identified potential FOXA2-regulated genes that influence uterine receptivity, blastocyst implantation, and stromal cell decidualization, which are key events in pregnancy establishment.-Kelleher, A. M., Behura, S. K., Burns, G. W., Young, S. L., DeMayo, F. J., Spencer, T. E. Integrative analysis of the forkhead box A2 (FOXA2) cistrome for the human endometrium.

摘要

先驱叉头框(FOX)A2 转录因子特异性表达于子宫的腺体中,这是子宫内膜功能和生育能力的核心。在小鼠中,FOXA2 是新生儿子宫腺发育和成年子宫腺功能的关键调节因子。在这里,我们采用了一种综合方法来定义人类子宫内膜中的 FOXA2 顺式作用元件。通过染色质免疫沉淀测序对 FOXA2 结合间隔进行全基因组作图,使用增殖期(P)和中期分泌期(MS)子宫内膜进行,并与 RNA 测序确定的转录组整合。在 P 和 MS 子宫内膜中检测到具有不同转录因子结合位点基序的独特 FOXA2 结合间隔。通路分析显示,在 P 和 MS 子宫内膜中,FOXA2 结合间隔基因调控不同的生物学过程。因此,FOXA2 被假设与其他转录因子一起调节基因表达,并以周期依赖性方式影响子宫腺的发育和功能。分析还鉴定了潜在的 FOXA2 调节基因,这些基因影响子宫容受性、胚泡着床和基质细胞蜕膜化,这是妊娠建立的关键事件。

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