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刺猬信号通路(Hedgehog)和布林克蛋白(Brinker)的拮抗输入在果蝇腿部成虫盘上界定了一条毛状蛋白(hairy)表达带。

Opposing inputs by Hedgehog and Brinker define a stripe of hairy expression in the Drosophila leg imaginal disc.

作者信息

Kwon Chulan, Hays Rebecca, Fetting Jennifer, Orenic Teresa V

机构信息

University of Illinois at Chicago, Department of Biological Sciences, Chicago, IL 60607, USA.

出版信息

Development. 2004 Jun;131(11):2681-92. doi: 10.1242/dev.01127. Epub 2004 May 5.

DOI:10.1242/dev.01127
PMID:15128656
Abstract

The sensory organs of the Drosophila adult leg provide a simple model system with which to investigate pattern-forming mechanisms. In the leg, a group of small mechanosensory bristles is organized into a series of longitudinal rows, a pattern that depends on periodic expression of the hairy gene (h) and the proneural genes achaete (ac) and scute (sc). Expression of ac in longitudinal stripes in prepupal leg discs defines the positions of the mechanosensory bristle rows. The ac/sc expression domains are delimited by the Hairy repressor, which is itself periodically expressed. In order to gain insight into the molecular mechanisms involved in leg sensory organ patterning, we have analyzed a Hedgehog (Hh)- and Decapentaplegic (Dpp)-responsive enhancer of the h gene, which directs expression of h in a narrow stripe in the dorsal leg imaginal disc (the D-h stripe). Our studies suggest that the domain of D-h expression is defined by the overlap of Hh and high-level Dpp signaling. We find that the D-h enhancer consists of a Hh-responsive activation element (HHRE) and a repression element (REPE), which responds to the transcriptional repressor Brinker (Brk). The HHRE directs expression of h in a broad stripe along the anteroposterior (AP) compartment boundary. HHRE-directed expression is refined along the AP and dorsoventral axes by Brk1, acting through the REPE. In D-h-expressing cells, Dpp signaling is required to block Brk-mediated repression. This study elucidates a molecular mechanism for integration of the Hh and Dpp signals, and identifies a novel function for Brk as a repressor of Hh-target genes.

摘要

果蝇成虫腿部的感觉器官提供了一个简单的模型系统,用于研究模式形成机制。在腿部,一组小型机械感觉刚毛被组织成一系列纵向排,这种模式依赖于毛状基因(h)以及原神经基因achaete(ac)和scute(sc)的周期性表达。在蛹前期腿部盘的纵向条纹中ac的表达确定了机械感觉刚毛排的位置。ac/sc的表达域由Hairy阻遏物界定,而Hairy阻遏物本身也是周期性表达的。为了深入了解腿部感觉器官模式形成所涉及的分子机制,我们分析了h基因的一个对Hedgehog(Hh)和Decapentaplegic(Dpp)有反应的增强子,该增强子在背侧腿部成虫盘的一条窄条纹(D-h条纹)中指导h的表达。我们的研究表明,D-h表达域由Hh和高水平Dpp信号的重叠所界定。我们发现D-h增强子由一个对Hh有反应的激活元件(HHRE)和一个对转录阻遏物Brinker(Brk)有反应的阻遏元件(REPE)组成。HHRE在沿前后(AP)隔室边界的一条宽条纹中指导h的表达。通过REPE起作用的Brk1沿AP和背腹轴对HHRE指导的表达进行优化。在表达D-h的细胞中,需要Dpp信号来阻断Brk介导的阻遏作用。这项研究阐明了整合Hh和Dpp信号的分子机制,并确定了Brk作为Hh靶基因阻遏物的新功能。

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