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果蝇T-box转录因子Optomotor-blind通过限制Hh信号来防止翅上皮细胞的病理性折叠和局部过度生长。

Drosophila T-box transcription factor Optomotor-blind prevents pathological folding and local overgrowth in wing epithelium through confining Hh signal.

作者信息

Umemori Makoto, Takemura Masahiko, Maeda Kousuke, Ohba Keisuke, Adachi-Yamada Takashi

机构信息

Graduate School of Science, Kobe University, Kobe 657-8501, Japan.

出版信息

Dev Biol. 2007 Aug 1;308(1):68-81. doi: 10.1016/j.ydbio.2007.05.007. Epub 2007 May 16.

Abstract

Aberration of morphogen signaling leads directly to inappropriate cell differentiation and secondarily causes various pathological phenotypes such as abnormal morphogenesis and tumorigenesis. However, mechanisms for linking morphogen signaling and the higher order phenotypes have not been fully elucidated. Here we focus on the Drosophila T-box gene optomotor-blind (omb), a transcriptional target of a long-range morphogen Decapentaplegic (Dpp). Genetic analyses of omb function revealed that a negative feedback loop, where omb plays a crucial role, exists between Dpp and its upstream regulator Hedgehog (Hh), a short-range morphogen. Consequently, dysfunction of omb elicits hyperactivation of Hh signaling that causes an ectopic folding and local overgrowth in the wing columnar epithelium, neither of which are the direct results of reduced Dpp response. In the case of the local overgrowth, it was never seen in mutants for thick veins (tkv) encoding a Dpp receptor, suggesting that the Dpp signaling pathway is divided into two antagonistic branches, one of which contains Omb. Thus defect in feedback between the two morphogens explains both phenotypes, and disruption of a balance between the morphogen targets further accounts for the local overgrowth. These are the mechanisms for generating secondary phenotypes when a single signaling factor Omb fails to function.

摘要

形态发生素信号的异常直接导致不适当的细胞分化,继而引发各种病理表型,如异常形态发生和肿瘤发生。然而,连接形态发生素信号与高阶表型的机制尚未完全阐明。在这里,我们聚焦于果蝇的T-box基因视动盲(omb),它是远距离形态发生素五体不全(Dpp)的一个转录靶点。对omb功能的遗传学分析表明,在Dpp与其上游调节因子刺猬蛋白(Hh,一种短距离形态发生素)之间存在一个以omb起关键作用的负反馈回路。因此,omb功能障碍会引发Hh信号的过度激活,导致翅柱状上皮细胞出现异位折叠和局部过度生长,而这两者都不是Dpp反应降低的直接结果。就局部过度生长而言,在编码Dpp受体的粗脉(tkv)突变体中从未见过,这表明Dpp信号通路分为两个拮抗分支,其中一个分支包含Omb。因此,两种形态发生素之间反馈的缺陷解释了这两种表型,形态发生素靶点之间平衡的破坏进一步解释了局部过度生长。这些就是当单一信号因子Omb功能失调时产生次级表型的机制。

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