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Comparative iTRAQ proteomics revealed proteins associated with lobed fin regeneration in Bichirs

机译:比较ITRAQ蛋白质组学揭示了Bichirs中与叶片翅片再生相关的蛋白质

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Background:Polypterus senegalus can fully regenerate its pectoral lobed fins, including a complex endoskeleton, with remarkable precision. However, despite the enormous potential of this species for use in medical research, its regeneration mechanisms remain largely unknown.Methods:To identify the differentially expressed proteins (DEPs) during the early stages of lobed fin regeneration in P. senegalus, we performed a differential proteomic analysis using isobaric tag for relative and absolute quantitation (iTRAQ) approach based quantitative proteome from the pectoral lobed fins at 3 time points. Furthermore, we validated the changes in protein expression with multiple-reaction monitoring (MRM) analysis.Results:The experiment yielded a total of 3177 proteins and 15,091 unique peptides including 1006 non-redundant (nr) DEPs. Of these, 592 were upregulated while 349 were downregulated after lobed fin amputation when compared to the original tissue. Bioinformatics analyses showed that the DEPs were mainly associated with Ribosome and RNA transport, metabolic, ECM-receptor interaction, Golgi and endoplasmic reticulum, DNA replication, and Regulation of actin cytoskeleton.Conclusions:To our knowledge, this is the first proteomic research to investigate alterations in protein levels and affected pathways in bichirs' lobe-fin/limb regeneration. In addition, our study demonstrated a highly dynamic regulation during lobed fin regeneration in P. senegalus. These results not only provide a comprehensive dataset on differentially expressed proteins during the early stages of lobe-fin/limb regeneration but also advance our understanding of the molecular mechanisms underlying lobe-fin/limb regeneration.? The Author(s). 2019.
机译:背景:Polypterus Senegalus可以完全重新生成其胸椎裂片,包括复杂的内骨骼,具有显着的精度。然而,尽管该物种用于医学研究的巨大潜力,但其再生机制仍然很大程度上是未知的。方法:鉴定在P.塞内加尔斯的裂片翅片再生期间的差异表达蛋白质(DEP),我们进行了差异蛋白质组学分析,用于相对和绝对定量(ITRAQ)的相对定量(ITRAQ)的定量蛋白质组在3个时间点。此外,我们通过多反应监测(MRM)分析验证了蛋白质表达的变化。结果:实验产生了总共3177个蛋白质和15,091个独特的肽,包括1006个非冗余(NR)DEP。其中,在与原始组织相比,在叶片截肢后下调349,在349下调。生物信息学分析表明,DEPS主要与核糖体和RNA转运,代谢,ECM-受体相互作用,GOLGI和内质网,DNA复制和调节肌肌瘤细胞骨架。结论:对我们的知识,这是第一个调查的蛋白质组学研究Bichirs叶片翅片/肢体再生中蛋白质水平和受影响途径的改变。此外,我们的研究表明,在P.塞内加尔斯的裂片翅片再生过程中表现出高度动态的调节。这些结果不仅在叶片 - 鳍片/肢体再生的早期阶段提供差异表达蛋白质的综合数据集,而且还推进了我们对叶片翅片/肢体再生的分子机制的理解。作者。 2019年。

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