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The drosophila T-box transcription factor midline functions within Insulin/Akt and c-Jun-N terminal kinase stress-reactive signaling pathways to regulate interommatial bristle formation and cell survival

机译:果蝇T-box转录因子中线在胰岛素/ Akt和c-Jun-N终端激酶应激反应性信号传导途径内发挥功能调节子宫内膜刷毛的形成和细胞存活

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摘要

We recently reported that the T-box transcription factor midline (mid) functions within the Notch-Delta signaling pathway to specify sensory organ precursor (SOP) cell fates in early-staged pupal eye imaginal discs and to suppress apoptosis (Das et al.). From genetic and allelic modifier screens, we now report that mid interacts with genes downstream of the insulin receptor(InR)/Akt, c-Jun-N-terminal kinase (JNK) and Notch signaling pathways to regulate interommatidial bristle (IOB) formation and cell survival. One of the most significant mid-interacting genes identified from the modifier screen is dFOXO, a transcription factor exhibiting a nucleocytoplasmic subcellular distribution pattern. In common with dFOXO, we show that Mid exhibits a nucleocytoplasmic distribution pattern within WT third-instar larval (3°L) tissue homogenates. Because dFOXO is a stress-responsive factor, we assayed the effects of either oxidative or metabolic stress responses on modifying the mid mutant phenotype which is characterized by a 50% loss of IOBs within the adult compound eye. While metabolic starvation stress does not affect the mid mutant phenotype, either 1 mM paraquat or 20% coconut oil, oxidative stress inducers, partially suppresses the mid mutant phenotype resulting in a significant recovery of IOBs. Another significant mid-interacting gene we identified is groucho (gro). Mid and Gro are predicted to act as corepressors of the enhancer-of-split gene complex downstream of Notch. Immunolabeling WT and dFOXO null 3°L eye-antennal imaginal discs with anti-Mid and anti-Engrailed (En) antibodies indicate that dFOXO is required to activate Mid and En expression within photoreceptor neurons of the eye disc. Taken together, these studies show that Mid and dFOXO serve as critical effectors of cell fate specification and survival within integrated Notch, InR/dAkt, and JNK signaling pathways during 3°L and pupal eye imaginal disc development.
机译:我们最近报道说,T-box转录因子中线(mid)在Notch-Delta信号通路内发挥作用,以指定早期imagin眼成像盘中的感觉器官前体(SOP)细胞命运并抑制细胞凋亡(Das等)。 。从遗传和等位基因修饰剂筛选中,我们现在报道中段与胰岛素受体(InR)/ Akt,c-Jun-N-末端激酶(JNK)和Notch信号通路下游的基因相互作用,以调节线粒体刷毛(IOB)的形成和细胞存活。从修饰子筛选中鉴定出的最重要的中间相互作用基因之一是dFOXO,dFOXO是一种显示核质亚细胞分布模式的转录因子。与dFOXO相同,我们显示Mid在WT第三龄幼虫(3°L)组织匀浆中展现出核质分布模式。由于dFOXO是一种应激反应因子,因此我们分析了氧化应激反应或代谢应激反应对修饰中期突变型的影响,该突变型的特征是在成年复眼中IOB损失了50%。尽管代谢饥饿应激不会影响中期突变表型,但是1 mM百草枯或20%的椰子油(氧化应激诱导剂)会部分抑制中期突变表型,从而导致IOB的显着恢复。我们确定的另一个重要的中间相互作用基因是groucho(gro)。预计Mid和Gro会充当Notch下游的split-of-split基因复合体的核心抑制剂。用抗Mid和抗Engrailed(En)抗体对WT和dFOXO无效的3°L眼-肛门虚视盘进行免疫标记,表明dFOXO需要激活眼盘感光神经元内的Mid和En表达。综上所述,这些研究表明,Mid和dFOXO在3°L和p眼假想椎间盘发育过程中,在整合的Notch,InR / dAkt和JNK信号通路内,成为细胞命运规范和存活的关键效应器。

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