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截瘫头部囊突变破坏了控制果蝇腹侧头部形态发生的新型围膜表达。

Decapentaplegic head capsule mutations disrupt novel peripodial expression controlling the morphogenesis of the Drosophila ventral head.

作者信息

Stultz Brian G, Lee Heuijung, Ramon Karolyn, Hursh Deborah A

机构信息

Division of Cell and Gene Therapy, Cellular and Tissue Therapy Branch, Center for Biologics Evaluation and Research, Food and Drug Administration, HFM-740, Bldg. 29B, Rm. 1E16, 8800 Rockville Pike, Bethesda, MD 20892, USA.

出版信息

Dev Biol. 2006 Aug 15;296(2):329-39. doi: 10.1016/j.ydbio.2006.05.034. Epub 2006 Jun 2.

Abstract

Drosophila adult structures derive from imaginal discs, which are sacs with apposed epithelial sheets, the disc proper (DP) and the peripodial epithelium (PE). The Drosophila TGF-beta family member decapentaplegic (dpp) contributes to the development of adult structures through expression in all imaginal discs, driven by enhancers from the 3' cis-regulatory region of the gene. In the eye/antennal disc, there is 3' directed dpp expression in both the DP and PE associated with cell proliferation and eye formation. Here, we analyze a new class of dpp cis-regulatory mutations, which specifically disrupt a previously unknown region of dpp expression, controlled by enhancers in the 5' regulatory region of the gene and limited to the PE of eye/antennal discs. These are the first described Drosophila mutations that act by solely disrupting PE gene expression. The mutants display defects in the ventral adult head and alter peripodial but not DP expression of known dpp targets. However, apoptosis is observed in the underlying DP, suggesting that this peripodial dpp signaling source supports cell survival in the DP.

摘要

果蝇的成虫结构源自成虫盘,成虫盘是由相对的上皮层构成的囊,即盘本体(DP)和围食膜上皮(PE)。果蝇转化生长因子-β家族成员“五体不全”(dpp)通过在所有成虫盘中表达来促进成虫结构的发育,其表达由该基因3'顺式调控区域的增强子驱动。在眼/触角盘中,DP和PE中均存在3'方向的dpp表达,这与细胞增殖和眼睛形成有关。在此,我们分析了一类新的dpp顺式调控突变,这些突变特异性地破坏了dpp表达的一个先前未知区域,该区域由基因5'调控区域中的增强子控制,且仅限于眼/触角盘的PE。这些是首次描述的仅通过破坏PE基因表达起作用的果蝇突变。这些突变体在成虫头部腹侧表现出缺陷,并改变了已知dpp靶标的围食膜表达,但未改变DP表达。然而,在下层的DP中观察到了细胞凋亡,这表明这个围食膜dpp信号源支持DP中的细胞存活。

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