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Molecular signatures that correlate with induction of lens regeneration in newts: lessons from proteomic analysis

机译:与new中晶状体再生的诱导相关的分子标记:蛋白质组学分析的教训

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Background Amphibians have the remarkable ability to regenerate missing body parts. After complete removal of the eye lens, the dorsal but not the ventral iris will transdifferentiate to regenerate an exact replica of the lost lens. We used reverse-phase nano-liquid chromatography followed by mass spectrometry to detect protein concentrations in dorsal and ventral iris 0, 4, and 8 days post-lentectomy. We performed gene expression comparisons between regeneration and intact timepoints as well as between dorsal and ventral iris. Results Our analysis revealed gene expression patterns associated with the ability of the dorsal iris for transdifferentiation and lens regeneration. Proteins regulating gene expression and various metabolic processes were enriched in regeneration timepoints. Proteins involved in extracellular matrix, gene expression, and DNA-associated functions like DNA repair formed a regeneration-related protein network and were all up-regulated in the dorsal iris. In addition, we investigated protein concentrations in cultured dorsal (transdifferentiation-competent) and ventral (transdifferentiation-incompetent) iris pigmented epithelial (IPE) cells. Our comparative analysis revealed that the ability of dorsal IPE cells to keep memory of their tissue of origin and transdifferentiation is associated with the expression of proteins that specify the dorso-ventral axis of the eye as well as with proteins found highly expressed in regeneration timepoints, especially 8 days post-lentectomy. Conclusions The study deepens our understanding in the mechanism of regeneration by providing protein networks and pathways that participate in the process.
机译:背景两栖动物具有显着的能力来再生缺失的身体部位。完全摘除晶状体后,背侧虹膜而不是腹侧虹膜将分化,以重新生成丢失的晶状体的精确副本。我们使用反相纳米液相色谱,然后进行质谱分析,以检测在全角膜切除术后0、4和8天的背侧和腹侧虹膜中的蛋白质浓度。我们进行了再生和完整时间点之间以及背侧和腹侧虹膜之间的基因表达比较。结果我们的分析揭示了与背虹膜转分化和晶状体再生能力相关的基因表达模式。调节基因表达和各种代谢过程的蛋白质在再生时间点上很丰富。参与细胞外基质,基因表达和与DNA相关的功能(如DNA修复)的蛋白质形成了与再生相关的蛋白质网络,并且在背虹膜中均被上调。另外,我们研究了培养的背侧(转分化能力)和腹侧(转分化能力)虹膜色素上皮(IPE)细胞中的蛋白质浓度。我们的比较分析表明,背侧IPE细胞保持其起源和转分化组织记忆的能力与指定眼睛背腹轴的蛋白质以及在再生时间点高度表达的蛋白质的表达有关,特别是术后8天。结论该研究通过提供参与该过程的蛋白质网络和途径,加深了我们对再生机理的理解。

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