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受限的时空性Hoxa5基因表达需要多个顺式作用调控区域。

Multiple cis-acting regulatory regions are required for restricted spatio-temporal Hoxa5 gene expression.

作者信息

Larochelle C, Tremblay M, Bernier D, Aubin J, Jeannotte L

机构信息

Centre de Recherche en Cancérologie de l'Université Laval, Centre Hospitalier Universitaire de Québec, Canada.

出版信息

Dev Dyn. 1999 Feb;214(2):127-40. doi: 10.1002/(SICI)1097-0177(199902)214:2<127::AID-AJA3>3.0.CO;2-F.

Abstract

Genetic analyses have revealed the essential role of the murine Hoxa5 gene for the correct specification of the cervical and upper thoracic region of the skeleton, and for the normal organogenesis and function of the respiratory tract, both structures expressing Hoxa5 during embryogenesis. To understand how the expression domains of the Hoxa5 gene are established during development, we have analyzed the cis-acting control regions mediating Hoxa5 gene expression using a transgenic approach. Four transcripts are derived from the Hoxa5 locus. The shortest and most abundant one displays a specific spatio-temporal profile of expression at earlier stages and in more anterior structures along the embryonic axis than the larger forms. We established that an 11.1 kilobase pair (kb) genomic fragment, extending from position -3.8 kb to +7.3 kb relative to Hoxa5 transcription initiation site, was sufficient to reproduce the temporal expression and substantially reconstitute the spatial pattern of the major Hoxa5 transcript. By deletion analyses, we identified a 2.1 kb fragment located downstream of the Hoxa5 gene that possesses mesodermal enhancer activity. Overall, the findings demonstrate that cis-acting regulatory elements essential for the correct expression of the major Hoxa5 transcript are located both upstream and downstream of the Hoxa5 coding sequences.

摘要

基因分析揭示了小鼠Hoxa5基因对于骨骼颈部和上胸部区域的正确特化,以及对于呼吸道正常器官发生和功能的重要作用,这两个结构在胚胎发育过程中均表达Hoxa5。为了了解Hoxa5基因的表达域在发育过程中是如何建立的,我们使用转基因方法分析了介导Hoxa5基因表达的顺式作用控制区。Hoxa5基因座产生四种转录本。最短且最丰富的一种在胚胎轴上比更大的形式在更早阶段和更靠前的结构中显示出特定的时空表达模式。我们确定,相对于Hoxa5转录起始位点,从-3.8 kb延伸至+7.3 kb的一个11.1千碱基对(kb)的基因组片段足以重现主要Hoxa5转录本的时间表达并基本重建其空间模式。通过缺失分析,我们鉴定出位于Hoxa5基因下游的一个2.1 kb片段,其具有中胚层增强子活性。总体而言,这些发现表明,对于主要Hoxa5转录本的正确表达至关重要的顺式作用调控元件位于Hoxa5编码序列的上游和下游。

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