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        High Throughput Methods in Proteomics

        互联网

        1038

        David Wishart
        University of Alberta
        Edmonton, AB
        david.wishart@ualberta.ca

        Proteomics
        Proteomics employs an incredibly diverse range of technologies including:
        molecular biology
        chromatography
        electrophoresis
        mass spectrometry
        X-ray crystallography
        NMR spectroscopy
        microscopy
        computational biology

        Proteomics Tools
        Molecular Biology Tools
        Separation & Display Tools
        Protein Identification Tools
        Protein Structure Tools
        Molecular Biology Tools
        Northern/Southern Blotting
        Differential Display
        RNAi (small RNA interference)
        Serial Analysis of Gene Expression (SAGE)
        DNA Microarrays or Gene Chips
        Yeast two-hybrid analysis
        Immuno-precipitation/pull-down
        GFP Tagging & Microscopy

        SAGE
        Principle is to convert every mRNA molecule into a short (10-14 base), unique tag. Equivalent to reducing all the people in a city into a telephone book with surnames
        After creating the tags, these are assembled or concatenated into a long “list”
        The list can be read using a DNA sequencer and the list compared to a database to ID genes or proteins and their frequency

        SAGE Tools
        High Throughput Methods in Proteomics

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        High Throughput Methods in Proteomics

        SAGE of Yeast Chromosome
        High Throughput Methods in Proteomics

         

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