首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Noncanonical Decapentaplegic Signaling Activates Matrix Metalloproteinase 1 To Restrict Hedgehog Activity and Limit Ectopic Eye Differentiation in Drosophila
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Noncanonical Decapentaplegic Signaling Activates Matrix Metalloproteinase 1 To Restrict Hedgehog Activity and Limit Ectopic Eye Differentiation in Drosophila

机译:非甘露出的脱悬浮信号传导激活基质金属蛋白酶1以限制刺猬活性并限制果蝇中的异位眼睛分化

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One of the pertinent issues associated with cellular plasticity is to understand how the delicate balance between the determined state of cells and the extent to which they can transdetermine is maintained. Employing the well-established model of generating ectopic eyes in developing wing discs of Drosophila by ectopic eyeless expression, we provide evidence for the genetic basis of this mechanism. By both loss-of-function and gain-of-function genetic analyses, we demonstrate that Matrix metalloproteinase 1 (Mmp1) plays an important role in regulating the extent of ectopic ommatidial differentiation. Transcriptional activation of ectopic Mmp1 by the morphogen Decapentaplegic (Dpp) is not triggered by its canonical signaling pathway which involves Mad. Rather, Dpp activates an alternate cascade involving dTak1 and JNK, to induce ectopic Mmp1 expression. Mutational analyses reveal that Mmp1 negatively regulates ectopic eye differentiation by restricting the rate of proliferation and the levels of expression of retinal-determining genes dachshund and eyes absent. This is primarily achieved by restricting the range of Hedgehog (Hh) signaling. Importantly, the increase in proliferation and upregulation of target retinal-determining genes, as observed upon attenuating Mmp1 activity, gets significantly rescued when ectopic eyes are generated in wing discs of hh heterozygous mutants. In conjunction with the previously established instructive and permissive roles of Dpp in facilitating ectopic eye differentiation in wing discs, the outcome of this study sheds light on a mechanism by which Dpp plays a dual role in modulating the delicate balance between the determined state of cells and the extent they can transdetermine.
机译:与细胞可塑性相关的相关问题是了解如何维持确定的细胞状态与它们可以转移的程度之间的微妙平衡。在通过异位眼盲的表达,在开发果蝇的翅膀椎间盘中产生异位眼模型,我们为这种机制的遗传基础提供了证据。通过函数丧失和功能性遗传分析,我们证明基质金属蛋白酶1(MMP1)在调节异位异常分化的程度方面起着重要作用。通过其伴随致力于疯狂的规范信号通路,不会引发形态学抑制(DPP)的异位MMP1的转录激活。相反,DPP激活涉及DTAK1和JNK的替代级联,以诱导异位MMP1表达。突变分析表明,MMP1通过限制扩散速率和视网膜测定基因达克斯斯犬和眼睛的表达水平来负调节异位眼睛分化。这主要通过限制刺猬(HH)信号传导的范围来实现。重要的是,当在HH杂合突变体的翼片产生异位眼时,在衰减MMP1活性时观察到,靶视网膜测定基因的增殖和上调的增加得到显着救助。结合先前建立了DPP在翼盘中异位眼睛分化方面的DPP的允许作用,这项研究的结果揭示了DPP在调制所确定的细胞状态之间的微妙平衡方面发挥双重作用的机制他们可以转移的程度。

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