Quantitative Phosphoproteomic Comparison of Lens Proteins in Highly Myopic Cataract and Age‐Related Cataract
Quantitative Phosphoproteomic Comparison of Lens Proteins in Highly Myopic Cataract and Age‐Related Cataract
Purpose. To investigate and compare the lens phosphoproteomes in patients with highly myopic cataract (HMC) or age‐related cataract (ARC). Methods. In this study, we undertook a comparative phosphoproteome analysis of the lenses from patients with HMC or ARC. Intact lenses from ARC and HMC patients were separated into the cortex and nucleus. After protein digestion, the phosphopeptides were quantitatively analyzed with TiO2 enrichment and liquid chromatography‐mass spectrometry. The potential functions of different phosphopeptides were assessed by Gene Ontology (GO) enrichment analysis and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analysis. Results. In total, 522 phosphorylation sites in 164 phosphoproteins were identified. The number of phosphorylation sites was significantly higher in the cortex than in the nucleus, in both ARC and HMC lenses. The differentially phosphorylated peptides in the lens cortex and nucleus in HMC eyes were significantly involved in the glutathione metabolism pathway. The KEGG pathway enrichment analysis indicated that the differences in phosphosignaling mediators between the ARC and HMC lenses were associated with glycolysis and the level of phosphorylated phosphoglycerate kinase 1 was lower in HMC lenses than in ARC lenses. Conclusions. We provide an overview of the differential phosphoproteomes of HMC and ARC lenses that can be used to clarify the molecular mechanisms underlying their different phenotypes.
- Chinese Academy of Medical Sciences & Peking Union Medical College China (People's Republic of)
- Fudan University China (People's Republic of)
- Eye & ENT Hospital of Fudan University China (People's Republic of)
- Chinese Academy of Medical Sciences China (People's Republic of)
Phosphopeptides, Genome, Proteome, Phosphoproteins, Crystallins, Cataract, Mass Spectrometry, Lens, Crystalline, Myopia, Humans, Phosphorylation, Research Article, Chromatography, Liquid
Phosphopeptides, Genome, Proteome, Phosphoproteins, Crystallins, Cataract, Mass Spectrometry, Lens, Crystalline, Myopia, Humans, Phosphorylation, Research Article, Chromatography, Liquid
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