首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Cap-n-Collar Promotes Tissue Regeneration by Regulating ROS and JNK Signaling in the Drosophila melanogaster Wing Imaginal Disc
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Cap-n-Collar Promotes Tissue Regeneration by Regulating ROS and JNK Signaling in the Drosophila melanogaster Wing Imaginal Disc

机译:Cap-n-Collar通过调节果蝇翼想像盘中的ROS和JNK信号来促进组织再生。

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Regeneration is a complex process that requires an organism to recognize and repair tissue damage, as well as grow and pattern new tissue. Here, we describe a genetic screen to identify novel regulators of regeneration. We ablated the Drosophila melanogaster larval wing primordium by inducing apoptosis in a spatially and temporally controlled manner and allowed the tissue to regenerate and repattern. To identify genes that regulate regeneration, we carried out a dominant-modifier screen by assessing the amount and quality of regeneration in adult wings heterozygous for isogenic deficiencies. We have identified 31 regions on the right arm of the third chromosome that modify the regenerative response. Interestingly, we observed several distinct phenotypes: mutants that regenerated poorly, mutants that regenerated faster or better than wild-type, and mutants that regenerated imperfectly and had patterning defects. We mapped one deficiency region to [cap-n-collar][1] ( [cnc][1] ), the Drosophila Nrf2 ortholog, which is required for regeneration. Cnc regulates reactive oxygen species levels in the regenerating epithelium, and affects c-Jun N-terminal protein kinase (JNK) signaling, growth, debris localization, and pupariation timing. Here, we present the results of our screen and propose a model wherein Cnc regulates regeneration by maintaining an optimal level of reactive oxygen species to promote JNK signaling. [1]: http://flybase.org/reports/FBgn0262975.html
机译:再生是一个复杂的过程,需要有机体识别和修复组织损伤,以及生长和组织新组织。在这里,我们描述了一种遗传筛选,以鉴定新的再生调节剂。我们通过以时空控制的方式诱导细胞凋亡来消灭果蝇幼虫翅原基,并允许组织再生和重新形成图案。为了鉴定调节再生的基因,我们通过评估成年机翼的等基因缺陷杂合子的再生量和质量进行了显性修饰子筛选。我们在第三条染色体的右臂上发现了31个区域,这些区域改变了再生反应。有趣的是,我们观察到几种不同的表型:再生较差的突变体,比野生型再生更快或更佳的突变体,以及再生不完全且具有模式缺陷的突变体。我们将一个缺陷区域映射到[cap-n-collar] [1]([cnc] [1])果蝇Nrf2直系同源物,这是再生所必需的。 Cnc调节再生上皮中的活性氧种类水平,并影响c-Jun N端蛋白激酶(JNK)信号传导,生长,碎片定位和产卵时间。在这里,我们介绍了我们的筛选结果,并提出了一个模型,其中Cnc通过维持最佳活性氧水平来促进JNK信号传导来调节再生。 [1]:http://flybase.org/reports/FBgn0262975.html

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