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具有和不具有单体DNA结合能力的HOX第13组转录因子的候选下游调控基因。

Candidate downstream regulated genes of HOX group 13 transcription factors with and without monomeric DNA binding capability.

作者信息

Williams Thomas M, Williams Melissa E, Kuick Rork, Misek David, McDonagh Kevin, Hanash Samir, Innis Jeffrey W

机构信息

Department of Human Genetics, University of Michigan, Ann Arbor, MI 48109-0618, USA.

出版信息

Dev Biol. 2005 Mar 15;279(2):462-80. doi: 10.1016/j.ydbio.2004.12.015.

Abstract

Hox genes encode transcription factors that regulate the morphogenesis of developing embryos. In mammals, knowledge of the genetic pathways, including the possible direct or indirect targets, regulated by HOX proteins is extremely limited. To identify the downstream genes regulated by posterior HOX proteins, we expressed HOXA13 in mouse embryonic fibroblasts lacking paralog group 13 expression using a bicistronic HOXA13/EGFP retroviral vector. Microarray analysis identified 68 genes with significant, reproducible RNA expression changes (50 activated; 18 repressed) in stable HOXA13-expressing cells. Genes with the GO annotation terms "extracellular matrix" and "basement membrane" were greatly overrepresented, and several were shown to be regulated by HOX proteins in other studies. Among the genes strongly activated by HOXA13 were Enpp2, a bifunctional enzyme known to modulate tumor and normal cell motility and which is expressed in precartilaginous condensations; Fhl1, a transcription factor implicated in muscle cell differentiation and development; and M32486, a putative integral membrane molecule expressed in the female reproductive tract. Expression differences in the HOXA13-expressing cells were confirmed for selected downstream genes using semi-quantitative RT-PCR, and in vivo coexpression with Hoxa13 in the limb interdigital mesenchyme was demonstrated for many. For two candidates, Igfbp4 and Fstl, interdigital limb bud expression was reduced in Hoxa13 mutants. To explore whether paralogous and nonparalogous HOX proteins could regulate the same genes, we created new HOX cell lines and examined the expression of selected genes identified by the HOXA13 screen. HOXD13 similarly activated/repressed 6 tested candidates, demonstrating that multiple downstream genetic pathways may be regulated by paralog HOX proteins. In contrast, HOXA9 was only able to repress expression of some gene targets. A HOXD13 mutant, HOXD13(IQN >)(AAA), incapable of monomeric DNA-binding, activated the expression of 5 HOXA13-upregulated genes; but was incapable of repressing the expression of Ngef and Casp8ap2. Our results suggest that HOX protein-protein interactions without direct HOX DNA-binding may play a larger role in HOX transcriptional regulation than generally assumed, and DNA-binding appears critical for repression.

摘要

Hox基因编码调控发育中胚胎形态发生的转录因子。在哺乳动物中,关于由HOX蛋白调控的遗传途径(包括可能的直接或间接靶点)的知识极其有限。为了鉴定由后部HOX蛋白调控的下游基因,我们使用双顺反子HOXA13/EGFP逆转录病毒载体在缺乏同源群13表达的小鼠胚胎成纤维细胞中表达HOXA13。微阵列分析鉴定出在稳定表达HOXA13的细胞中有68个基因具有显著的、可重复的RNA表达变化(50个被激活;18个被抑制)。具有“细胞外基质”和“基底膜”GO注释术语的基因被大量富集,并且在其他研究中显示有几个基因受HOX蛋白调控。在被HOXA13强烈激活的基因中,有Enpp2,一种已知可调节肿瘤和正常细胞运动性且在软骨前凝聚物中表达的双功能酶;Fhl1,一种与肌肉细胞分化和发育有关的转录因子;以及M32486,一种在雌性生殖道中表达的假定整合膜分子。使用半定量RT-PCR证实了所选下游基因在表达HOXA13的细胞中的表达差异,并且许多基因在体内与肢体指间间充质中的Hoxa13共表达得到了证实。对于两个候选基因Igfbp4和Fstl,在Hoxa13突变体中肢体芽间表达降低。为了探究同源和非同源HOX蛋白是否能调控相同的基因,我们创建了新的HOX细胞系并检测了由HOXA13筛选鉴定出的所选基因的表达。HOXD13同样激活/抑制了6个测试候选基因,表明多个下游遗传途径可能受同源HOX蛋白调控。相比之下,HOXA9仅能抑制一些基因靶点的表达。一个不能进行单体DNA结合的HOXD13突变体HOXD13(IQN >)(AAA)激活了5个HOXA13上调基因的表达;但不能抑制Ngef和Casp8ap2的表达。我们的结果表明,没有直接HOX DNA结合的HOX蛋白 - 蛋白相互作用在HOX转录调控中可能比一般认为的发挥更大的作用,并且DNA结合对于抑制似乎至关重要。

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