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HOXB5与RET基因的多物种保守序列(MCS + 9.7)结合并调节RET表达。

HOXB5 binds to multi-species conserved sequence (MCS+9.7) of RET gene and regulates RET expression.

作者信息

Zhu Joe Jiang, Kam Mandy KaMan, Garcia-Barceló Maria-Mercè, Tam Paul Kwong Hang, Lui Vincent Chi Hang

机构信息

Department of Surgery, LKS Faculty of Medicine, The University of Hong Kong, Hong Kong Special Administrative Region; Faculty of Medicine, Shenzhen University, Shenzhen, Guangdong Province, China.

Department of Surgery, LKS Faculty of Medicine, The University of Hong Kong, Hong Kong Special Administrative Region.

出版信息

Int J Biochem Cell Biol. 2014 Jun;51:142-9. doi: 10.1016/j.biocel.2014.04.013. Epub 2014 Apr 29.

Abstract

RET gene is crucial for the development of enteric nervous system, and dys-regulation of RET expression causes Hirschsprung disease. HOXB5 regulates RET transcription, and perturbations in transcriptional regulation by HOXB5 caused reduced RET expression and defective enteric nervous system development in mice. The mechanisms by which HOXB5 regulate RET transcription are unclear. Thus, unraveling the regulatory mechanisms of HOXB5 on RET transcription could lead to a better understanding of the etiology of Hirschsprung disease. In this study, we identified and confirmed HOXB5 binding to the multi-species conserved sequence (MCS+9.7) in the first intron of the RET gene. We developed a RET mini-gene reporter system, and showed that MCS+9.7 enhanced HOXB5 trans-activation from RET promoter in human neuroblastoma SK-N-SH cells and in chick embryos. The deletion of HOXB5 binding site interfered with HOXB5 trans-activation. Furthermore, transfection of HOXB5 induced endogenous RET transcription, enhanced the co-precipitation of TATA-box binding protein with the transcription start site of RET, and induced histone H3K4 trimethylation in chromatin regions upstream and downstream of RET transcription start site. In conclusion, (i) HOXB5 physically interacted with MCS+9.7 and enhanced RET transcription, (ii) HOXB5 altered chromatin conformation and histone modification of RET locus, which could facilitate the formation of transcription complex, and enhance RET transcription, (iii) expression of RET was mediated by a complex regulatory network of transcription factors functioning in a synergistic, additive and/or independent manners. Hence, dys-regulation of RET expression by HOXB5 could result in insufficient RET expression and Hirschsprung disease.

摘要

RET基因对于肠道神经系统的发育至关重要,RET表达失调会导致先天性巨结肠症。HOXB5调节RET转录,HOXB5转录调控的紊乱导致小鼠RET表达降低和肠道神经系统发育缺陷。HOXB5调节RET转录的机制尚不清楚。因此,阐明HOXB5对RET转录的调控机制有助于更好地理解先天性巨结肠症的病因。在本研究中,我们鉴定并证实了HOXB5与RET基因第一个内含子中的多物种保守序列(MCS+9.7)结合。我们开发了一个RET微型基因报告系统,并表明MCS+9.7在人神经母细胞瘤SK-N-SH细胞和鸡胚中增强了HOXB5从RET启动子的反式激活。HOXB5结合位点的缺失干扰了HOXB5的反式激活。此外,转染HOXB5可诱导内源性RET转录,增强TATA盒结合蛋白与RET转录起始位点的共沉淀,并在RET转录起始位点上游和下游的染色质区域诱导组蛋白H3K4三甲基化。总之,(i)HOXB5与MCS+9.7发生物理相互作用并增强RET转录,(ii)HOXB5改变了RET基因座的染色质构象和组蛋白修饰,这可能促进转录复合物的形成并增强RET转录,(iii)RET的表达由转录因子的复杂调控网络介导,这些转录因子以协同、累加和/或独立的方式发挥作用。因此,HOXB5对RET表达的失调可能导致RET表达不足和先天性巨结肠症。

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