Suppr超能文献

小鼠Hoxb3基因的调控分析:多种元件协同作用以指导表达的时空模式。

Regulatory analysis of the mouse Hoxb3 gene: multiple elements work in concert to direct temporal and spatial patterns of expression.

作者信息

Kwan C T, Tsang S L, Krumlauf R, Sham M H

机构信息

Department of Biochemistry, The University of Hong Kong, 5 Sassoon Road, Hong Kong, Pokfulam, China.

出版信息

Dev Biol. 2001 Apr 1;232(1):176-90. doi: 10.1006/dbio.2001.0157.

Abstract

The expression pattern of the mouse Hoxb3 gene is exceptionally complex and dynamic compared with that of other members of the Hoxb cluster. There are multiple types of transcripts for Hoxb3 gene, and the anterior boundaries of its expression vary at different stages of development. Two enhancers flanking Hoxb3 on the 3' and 5' sides regulate Hoxb2 and Hoxb4, respectively, and these control regions define the two ends of a 28-kb interval in and around the Hoxb3 locus. To assay the regulatory potential of DNA fragments in this interval we have used transgenic analysis with a lacZ reporter gene to locate cis-elements for directing the dynamic patterns of Hoxb3 expression. Our detailed analysis has identified four new and widely spaced cis-acting regulatory regions that can together account for major aspects of the Hoxb3 expression pattern. Elements Ib, IIIa, and IVb control gene expression in neural and mesodermal tissues; element Va controls mesoderm-specific gene expression. The most anterior neural expression domain of Hoxb3 is controlled by an r5 enhancer (element IVa); element IIIa directs reporter expression in the anterior spinal cord and hindbrain up to r6, and the region A enhancer (in element I) mediates posterior neural expression. Hence, the regulation of segmental expression of Hoxb3 in the hindbrain is different from that of Hoxa3, as two separate enhancer elements contribute to expression in r5 and r6. The mesoderm-specific element (Va) directs reporter expression to prevertebra C1 at 12.5 dpc, which is the anterior limit of paraxial mesoderm expression for Hoxb3. When tested in combinations, these cis-elements appear to work as modules in an additive manner to recapitulate the major endogenous expression patterns of Hoxb3 during embryogenesis. Together our study shows that multiple control elements direct reporter gene expression in diverse tissue-, temporal-, and spatially restricted subset of the endogenous Hoxb3 expression domains and work in concert to control the neural and mesodermal patterns of expression.

摘要

与Hoxb基因簇的其他成员相比,小鼠Hoxb3基因的表达模式异常复杂且具有动态性。Hoxb3基因有多种类型的转录本,其表达的前边界在发育的不同阶段有所变化。Hoxb3两侧3'和5'端的两个增强子分别调控Hoxb2和Hoxb4,这些控制区域定义了Hoxb3基因座及其周围28 kb区间的两端。为了检测该区间内DNA片段的调控潜力,我们使用带有lacZ报告基因的转基因分析来定位指导Hoxb3动态表达模式的顺式元件。我们的详细分析确定了四个新的且间隔较远的顺式作用调控区域,它们共同构成了Hoxb3表达模式的主要方面。元件Ib、IIIa和IVb控制神经和中胚层组织中的基因表达;元件Va控制中胚层特异性基因表达。Hoxb3最前端的神经表达结构域由r5增强子(元件IVa)控制;元件IIIa指导报告基因在前脊髓和后脑直至r6区域的表达,区域A增强子(在元件I中)介导后部神经表达。因此,Hoxb3在后脑节段性表达的调控与Hoxa3不同,因为两个独立的增强子元件分别促成r5和r6区域的表达。中胚层特异性元件(Va)在胚胎发育12.5天时将报告基因的表达导向第一颈椎前体,这是Hoxb3在近轴中胚层表达的前端界限。当进行组合测试时,这些顺式元件似乎以累加的方式作为模块发挥作用,以重现胚胎发育过程中Hoxb3主要的内源性表达模式。我们的研究共同表明,多个控制元件在内源性Hoxb3表达结构域的不同组织、时间和空间限制子集中指导报告基因的表达,并协同作用以控制神经和中胚层的表达模式。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验