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Early quantitative profiling of differential retinal protein expression in lens-induced myopia in guinea pig using fluorescence difference two-dimensional gel electrophoresis

机译:荧光差异二维凝胶电泳对豚鼠晶状体近视中视网膜蛋白差异表达的早期定量分析

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摘要

The current study aimed to investigate the differential protein expression in guinea pig retinas in response to lens-induced myopia (LIM) before fully compensated eye growth. Four days old guinea pigs (n=5) were subjected to −4D LIM for 8 days. Refractive errors were measured before and at the end of the lens wear period. Ocular dimensions were also recorded using high-frequency A-scan ultrasonography. After the LIM treatment, retinas of both eyes were harvested and soluble proteins were extracted. Paired retinal protein expressions in each animal were profiled and compared using a sensitive fluorescence difference two-dimensional gel electrophoresis. The quantitative retinal proteomes of myopic and control eye were analysed using computerised DeCyder software. Those proteins that were consistently changed with at least 1.2-fold difference (P<0.05) in the same direction in all five animals were extracted, trypsin digested and identified by tandem mass spectrometry. Significant myopia was induced in guinea pigs after 8 days of lens wear. The vitreous chamber depth in lens-treated eyes was found to be significantly elongated. Typically, more than 1,000 protein spots could be detected from each retina. Thirty-two of them showed differential expression between myopic and untreated retina. Among these proteins, 21 spots were upregulated and 11 were downregulated. Eight protein spots could be successfully identified which included β-actin, enolase 1, cytosolic malate dehydrogenase, Ras-related protein Rab-11B, protein-L-isoaspartate (D-aspartate) O-methyltransferase, PKM2 protein, X-linked eukaryotic translation initiation factor 1A and ACP1 protein. The present study serves as the first report to uncover the retinal 2D proteome expressions in mammalian guinea pig myopia model using a top-down fluorescent dyes labelling gel approach. The results showed a downregulation in glycolytic enzymes that may suggest a significant alteration of glycolysis during myopia development. Other protein candidates also suggested multiple pathways which could provide new insights for further study of the myopic eye growth.
机译:当前的研究旨在调查在完全补偿眼睛生长之前,对晶状体诱发的近视​​(LIM)的响应,豚鼠视网膜中的差异蛋白表达。对四天大的豚鼠(n = 5)进行-4D LIM,持续8天。在镜片佩戴期之前和结束时测量屈光不正。还使用高频A扫描超声记录眼的尺寸。 LIM处理后,收获两只眼睛的视网膜并提取可溶性蛋白。使用敏感的荧光差异二维凝胶电泳分析并比较每只动物中成对的视网膜蛋白表达。使用计算机化的DeCyder软件分析了近视眼和对照眼的定量视网膜蛋白质组。在所有五只动物中,在相同方向上以至少1.2倍差异(P <0.05)一致变化的那些蛋白质被提取,胰蛋白酶消化并通过串联质谱法鉴定。戴眼镜8天后,豚鼠出现明显的近视。发现经晶状体处理的眼睛的玻璃体腔深度显着延长。通常,可以从每个视网膜中检测到1,000多个蛋白质斑点。其中有32个在近视眼和未经治疗的视网膜之间表现出差异表达。在这些蛋白质中,有21个斑点被上调,有11个斑点被下调。可以成功鉴定出八个蛋白点,包括β-肌动蛋白,烯醇酶1,胞质苹果酸脱氢酶,与Ras相关的蛋白Rab-11B,蛋白L-异天冬氨酸(D-天冬氨酸)O-甲基转移酶,PKM2蛋白,X连锁真核翻译起始因子1A和ACP1蛋白。本研究是使用自上而下的荧光染料标记凝胶方法揭示哺乳动物豚鼠近视模型中视网膜2D蛋白质组表达的第一份报告。结果表明糖酵解酶的下调可能表明在近视发展过程中糖酵解发生了显着变化。其他候选蛋白质还提出了多种途径,这些途径可以为进一步研究近视眼的生长提供新的见识。

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