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Hox基因表达的增强子时间调控:内源性Hoxc8早期增强子的缺失

Enhancer timing of Hox gene expression: deletion of the endogenous Hoxc8 early enhancer.

作者信息

Juan Aster H, Ruddle Frank H

机构信息

Department of Molecular, Cellular, and Developmental Biology, Yale University, New Haven, CT 06520, USA.

出版信息

Development. 2003 Oct;130(20):4823-34. doi: 10.1242/dev.00672. Epub 2003 Aug 13.

Abstract

The proper expression of Hox genes is necessary for the accurate patterning of the body plan. The elucidation of the developmental genetic basis of transcriptional regulation of Hox genes by the study of their cis-regulatory elements provides crucial information regarding the establishment of axial specification. In this report, we investigate the role of the early enhancer (EE) of the murine Hoxc8 gene to better understand its role in pattern formation. Previous reports show that knockouts of the endogenous Hoxc8 coding region result in a combination of neural, behavioral and skeletal phenotypes. In this report, we limit ourselves to a consideration of the skeletal abnormalities. Early reports from our laboratory based on exogenous transgenic reporter constructs implicate a 200 bp non-coding element 3 kb upstream of the Hoxc8 promoter as a crucial enhancer that regulates the transcription of Hoxc8. In the present work, we have deleted this regulatory region from the endogenous genome using embryonic stem cell technology. Our results show that the deletion of the EE results in a significant delay in the temporal expression of Hoxc8. We also show that the deletion of the EE does not eliminate the expression of the Hoxc8 protein, but delays the attainment of control levels of expression and anterior and posterior boundaries of expression on the AP axis. The temporal delay in Hoxc8 expression is sufficient to produce phenocopies of many of the axial skeletal defects associated with the complete absence of Hoxc8 gene product as previously reported for the Hoxc8-null mutation. Our results are consistent with emerging evidence that the precise temporal expression of Hox genes is crucial for the establishment of regional identities. The fact that the EE deletion does not eliminate Hoxc8 expression indicates the existence of a Hoxc8 transcriptional regulatory apparatus independent to some degree of the Hoxc8 EE. In a comparison of our results with those reported previously by others investigating temporal control of Hox gene expression, we have discovered a structural similarity between the Hoxc8 EE reported here and a transcriptional control element located in the Hoxd11 region. We speculate that a distributed system of expression timing control may exist that is similar the one we propose for Hoxc8. Last, our data is consistent with the position that disparate regulatory pathways are responsible for the expression of Hoxc8 in the organogenesis of somites, neural tube and limb bud.

摘要

Hox基因的正确表达对于身体蓝图的精确模式形成至关重要。通过对其顺式调控元件的研究来阐明Hox基因转录调控的发育遗传基础,为轴向特化的建立提供了关键信息。在本报告中,我们研究了小鼠Hoxc8基因早期增强子(EE)的作用,以更好地理解其在模式形成中的作用。先前的报告表明,内源性Hoxc8编码区的敲除会导致神经、行为和骨骼表型的组合。在本报告中,我们将自己的研究局限于骨骼异常的考虑。我们实验室早期基于外源性转基因报告构建体的报告表明,Hoxc8启动子上游3 kb处的一个200 bp非编码元件是调节Hoxc8转录的关键增强子。在目前的工作中,我们利用胚胎干细胞技术从内源性基因组中删除了这个调控区域。我们的结果表明,EE的缺失导致Hoxc8的时间表达显著延迟。我们还表明,EE的缺失并没有消除Hoxc8蛋白的表达,但延迟了表达达到对照水平以及在前后轴上表达的前后边界。Hoxc8表达的时间延迟足以产生许多与先前报道的Hoxc8基因产物完全缺失相关的轴向骨骼缺陷的拟表型。我们的结果与新出现的证据一致,即Hox基因的精确时间表达对于区域身份的建立至关重要。EE缺失并未消除Hoxc8表达这一事实表明存在某种在一定程度上独立于Hoxc8 EE的Hoxc8转录调控机制。在将我们的结果与其他人先前报道的关于Hox基因表达时间控制的结果进行比较时,我们发现这里报道的Hoxc8 EE与位于Hoxd11区域的一个转录控制元件之间存在结构相似性。我们推测可能存在一个类似于我们为Hoxc8提出的表达时间控制的分布式系统。最后,我们的数据与不同调控途径负责Hoxc8在体节、神经管和肢芽器官发生中的表达这一观点一致。

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