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首页> 外文期刊>Development >The Drosophila serine protease homologue Scarface regulates JNK signalling in a negative-feedback loop during epithelial morphogenesis.
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The Drosophila serine protease homologue Scarface regulates JNK signalling in a negative-feedback loop during epithelial morphogenesis.

机译:果蝇丝氨酸蛋白酶同源物Scarface在上皮形态发生过程中以负反馈回路调节JNK信号传导。

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摘要

In Drosophila melanogaster, dorsal closure is a model of tissue morphogenesis leading to the dorsal migration and sealing of the embryonic ectoderm. The activation of the JNK signal transduction pathway, specifically in the leading edge cells, is essential to this process. In a genome-wide microarray screen, we identified new JNK target genes during dorsal closure. One of them is the gene scarface (scaf), which belongs to the large family of trypsin-like serine proteases. Some proteins of this family, like Scaf, bear an inactive catalytic site, representing a subgroup of serine protease homologues (SPH) whose functions are poorly understood. Here, we show that scaf is a general transcriptional target of the JNK pathway coding for a secreted SPH. scaf loss-of-function induces defects in JNK-controlled morphogenetic events such as embryonic dorsal closure and adult male terminalia rotation. Live imaging of the latter process reveals that, like for dorsal closure, JNK directs the dorsal fusion of two epithelial layers in the pupal genital disc. Genetic data show that scaf loss-of-function mimics JNK over-activity. Moreover, scaf ectopic expression aggravates the effect of the JNK negative regulator puc on male genitalia rotation. We finally demonstrate that scaf acts as an antagonist by negatively regulating JNK activity. Overall, our results identify the SPH-encoding gene scaf as a new transcriptional target of JNK signalling and reveal the first secreted regulator of the JNK pathway acting in a negative-feedback loop during epithelial morphogenesis.
机译:在黑腹果蝇中,背侧闭合是组织形态发生的模型,其导致背侧迁移和胚胎外胚层的密封。 JNK信号转导途径的激活,特别是在前沿细胞中,对于此过程至关重要。在全基因组微阵列筛选中,我们在背侧闭合过程中发现了新的JNK靶基因。其中之一是基因Scarface(scaf),它属于胰蛋白酶样丝氨酸蛋白酶的大家族。该家族的某些蛋白质,例如Scaf,带有一个无活性的催化位点,代表丝氨酸蛋白酶同系物(SPH)的一个亚组,其功能尚不清楚。在这里,我们显示scaf是编码分泌型SPH的JNK途径的一般转录靶标。 af功能丧失引起JNK控制的形态发生事件的缺陷,例如胚胎背闭合和成年男性终末期旋转。后一个过程的实时成像显示,与背侧闭合一样,JNK引导p生殖器椎间盘中两个上皮层的背侧融合。遗传数据表明,sc功能丧失模仿了JNK的过度活跃。此外,sc异位表达加剧了JNK负调控因子puc对男性生殖器旋转的影响。我们最终证明了scaf通过负调节JNK活性充当拮抗剂。总的来说,我们的结果确定了SPH编码基因scaf是JNK信号转导的新转录靶点,并揭示了上皮形态发生过程中负反馈回路中JNK通路的第一个分泌调节子。

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