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Proteomic analysis of human cataract aqueous humour: Comparison of one-dimensional gel LCMS with two-dimensional LCMS of unlabelled and iTRAQ®-labelled specimens. | LitMetric

AI Article Synopsis

  • The study utilizes mass spectrometry to analyze the protein content in aqueous humour from cataract patients, employing iTRAQ® methodology for quantitative proteomics.
  • A total of 198 protein groups were identified across samples, with 88% showing minimal variation in protein levels, indicating consistent regulation among the samples.
  • The identified proteins primarily function in binding and inhibition, with significant roles in inflammatory and immune responses, as well as transport processes.

Article Abstract

In this study, we report a comparative and quantitative analysis by mass spectrometry of the protein content of aqueous humour from cataract (control) patients. In addition to protein profiling, the approach is layered with quantitative proteomics using the iTRAQ® methodology. Aqueous humour from ten clinically-matched patients was collected and depleted of albumin and immunoglobulin G. Pairs of patient material were pooled and divided into three aliquots for subsequent analysis by alternative proteomic approaches. Excluding keratin, trypsin, residual albumin and immunoglobulins, a total of 198 protein groups were identified across the entire study. Relative protein quantitation with iTRAQ® revealed that 88% of the proteins had a maximal ±2-fold differential regulation between 3 of the 4 labelled samples, indicating minimal variation. The identified proteins were categorised by gene ontology and one third of the proteins were annotated as extracellular. The major molecular functions of the proteins in aqueous humour are binding (protein, metal ion, heparin, and DNA) and inhibition of proteolytic activity. Complementary to molecular function, the predominant biological processes for the proteins in aqueous humour are assigned to inflammatory and immune responses, and transport.

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http://dx.doi.org/10.1016/j.jprot.2010.10.002DOI Listing

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