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ATOH1及其靶标SPDEF在肠道中的转录调控

Transcriptional Regulation by ATOH1 and its Target SPDEF in the Intestine.

作者信息

Lo Yuan-Hung, Chung Eunah, Li Zhaohui, Wan Ying-Wooi, Mahe Maxime M, Chen Min-Shan, Noah Taeko K, Bell Kristin N, Yalamanchili Hari Krishna, Klisch Tiemo J, Liu Zhandong, Park Joo-Seop, Shroyer Noah F

机构信息

Integrative Molecular and Biomedical Sciences Graduate Program, Baylor College of Medicine, Houston, Texas.

Division of Pediatric Urology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio; Division of Developmental Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio.

出版信息

Cell Mol Gastroenterol Hepatol. 2016 Oct 21;3(1):51-71. doi: 10.1016/j.jcmgh.2016.10.001. eCollection 2017 Jan.

Abstract

BACKGROUND & AIMS: The transcription factor atonal homolog 1 (ATOH1) controls the fate of intestinal progenitors downstream of the Notch signaling pathway. Intestinal progenitors that escape Notch activation express high levels of ATOH1 and commit to a secretory lineage fate, implicating ATOH1 as a gatekeeper for differentiation of intestinal epithelial cells. Although some transcription factors downstream of ATOH1, such as SPDEF, have been identified to specify differentiation and maturation of specific cell types, the bona fide transcriptional targets of ATOH1 still largely are unknown. Here, we aimed to identify ATOH1 targets and to identify transcription factors that are likely to co-regulate gene expression with ATOH1.

METHODS

We used a combination of chromatin immunoprecipitation and messenger RNA-based high-throughput sequencing (ChIP-seq and RNA-seq), together with cell sorting and transgenic mice, to identify direct targets of ATOH1, and establish the epistatic relationship between ATOH1 and SPDEF.

RESULTS

By using unbiased genome-wide approaches, we identified more than 700 genes as ATOH1 transcriptional targets in adult small intestine and colon. Ontology analysis indicated that ATOH1 directly regulates genes involved in specification and function of secretory cells. De novo motif analysis of ATOH1 targets identified SPDEF as a putative transcriptional co-regulator of ATOH1. Functional epistasis experiments in transgenic mice show that SPDEF amplifies ATOH1-dependent transcription but cannot independently initiate transcription of ATOH1 target genes.

CONCLUSIONS

This study unveils the direct targets of ATOH1 in the adult intestines and illuminates the transcriptional events that initiate the specification and function of intestinal secretory lineages.

摘要

背景与目的

转录因子无调性同源物1(ATOH1)控制Notch信号通路下游肠道祖细胞的命运。逃避Notch激活的肠道祖细胞表达高水平的ATOH1并致力于分泌谱系命运,这表明ATOH1是肠道上皮细胞分化的守门人。尽管已鉴定出一些ATOH1下游的转录因子,如SPDEF,可指定特定细胞类型的分化和成熟,但ATOH1真正的转录靶点仍大多未知。在此,我们旨在鉴定ATOH1的靶点,并鉴定可能与ATOH1共同调节基因表达的转录因子。

方法

我们结合染色质免疫沉淀和基于信使核糖核酸的高通量测序(ChIP-seq和RNA-seq),以及细胞分选和转基因小鼠,来鉴定ATOH1的直接靶点,并建立ATOH1与SPDEF之间的上位关系。

结果

通过使用无偏倚的全基因组方法,我们在成年小肠和结肠中鉴定出700多个基因作为ATOH1的转录靶点。本体分析表明,ATOH1直接调节参与分泌细胞指定和功能的基因。对ATOH1靶点的从头基序分析确定SPDEF为ATOH1的假定转录共调节因子。转基因小鼠中的功能上位实验表明,SPDEF可放大ATOH1依赖的转录,但不能独立启动ATOH1靶基因的转录。

结论

本研究揭示了成年肠道中ATOH1的直接靶点,并阐明了启动肠道分泌谱系指定和功能的转录事件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bb0/5247424/bbcc3cac86e9/gr1.jpg

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