Rapid clearance of epigenetic protein reporters from wound edge cells in Drosophila larvae does not depend on the JNK or PDGFR/VEGFR signaling pathways.

Aimee E Anderson, Michael J Galko
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引用次数: 4

Abstract

The drastic cellular changes required for epidermal cells to dedifferentiate and become motile during wound closure are accompanied by changes in gene transcription, suggesting corresponding alterations in chromatin. However, the epigenetic changes that underlie wound-induced transcriptional programs remain poorly understood partly because a comprehensive study of epigenetic factor expression during wound healing has not been practical. To determine which chromatin modifying factors might contribute to wound healing, we screened publicly available fluorescently-tagged reporter lines in Drosophila for altered expression at the wound periphery during healing. Thirteen reporters tagging seven different proteins showed strongly diminished expression at the wound edge. Three downregulated proteins, Osa, Kismet, and Spt6, are generally associated with active chromatin, while four others, Sin3A, Sap130, Mi-2, and Mip120, are associated with repressed chromatin. In all cases reporter down regulation was independent of the Jun N-terminal Kinase and Pvr pathways, suggesting that novel signals control reporter clearance. Taken together, our results suggest that clearance of chromatin modifying factors may enable wound edge cells to rapidly and comprehensively change their transcriptional state following tissue damage.

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果蝇幼虫创口边缘细胞中表观遗传蛋白报告蛋白的快速清除不依赖于JNK或PDGFR/VEGFR信号通路。
表皮细胞在伤口愈合过程中发生去分化和运动所需的剧烈细胞变化伴随着基因转录的变化,这表明染色质也发生了相应的变化。然而,由于对伤口愈合过程中表观遗传因子表达的全面研究尚未实现,因此对伤口诱导的转录程序背后的表观遗传变化仍然知之甚少。为了确定哪些染色质修饰因子可能有助于伤口愈合,我们在果蝇中筛选了公开可用的荧光标记报告细胞系,以观察伤口愈合过程中伤口周围表达的改变。标记7种不同蛋白的13个报告蛋白在伤口边缘显示出强烈的表达减少。三种下调蛋白,Osa, Kismet和Spt6,通常与活性染色质相关,而另外四种,Sin3A, Sap130, Mi-2和Mip120,与抑制染色质相关。在所有情况下,报告蛋白的下调都独立于Jun n -末端激酶和Pvr通路,这表明新的信号控制着报告蛋白的清除。综上所述,我们的研究结果表明,清除染色质修饰因子可能使伤口边缘细胞在组织损伤后迅速全面地改变其转录状态。
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