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Fabrication of Stable Packed Capillary Reversed-Phase Columns for Protein Structural Analysis
Authors:Daixin Tong  Robert L Moritz  James S Eddes  Gavin E Reid  Richele K Rasmussen  Donna S Dorow and Richard J Simpson
Institution:(1) Joint Protein Structure Laboratory, Ludwig Institute for Cancer Research (Melbourne Branch) and The Walter and Eliza Hall Institute of Medical Research, Parkville, Victoria, 3050, Australia;(2) Trescowthick Research Center, Peter MacCallum Cancer Institute, Melbourne, Victoria, Australia;(3) Ludwig Institute for Cancer Research, Royal Melbourne Hospital, Victoria, 3050, Australia
Abstract:Capillary column (le320-mgrm ID) liquid chromatography is an essential tool for the separation and concentration of low-picomole amounts of proteins and peptides for mass-spectrometric based structural analysis. We describe a detailed procedure for the fabrication of stable and efficient 50- to 180-mgrm ID polyimide fused-silica columns. Columns were packed by conventional slurry packing with reversed-phase silica-based supports followed by column bed consolidation with acetonitrile and sonication. PVDF membrane or internal fused-silica particles were employed for column end-frit construction. The ability of these columns to withstand high back pressures (300–400 bar) enabled their use for rapid chromatography (>3400 cm/hr; i.e., sim40 mgrl/min for 200-mgrm ID columns) and the loading of large sample volumes (up to 500 mgrl). The accurate low flow rates (0.4–4.0 mgrl/min) and precise gradient formation necessary to operate these columns were achieved by a simple modification of conventional HPLC systems Moritz et al. (1992), J. Chromatogr. 599, 119–130]. Column performance was evaluated for ability to resolve low-fmol amounts of all components of a mixture of PTH-amino acids and to separate peptides for on-line LC/MS analysis of peptide mixtures derived from in situ digestion of 2-DE resolved protein spots.
Keywords:Reversed-phase microcolumn liquid chromatography  protein concentration  column end-frit fabrication  phenylthiohydantoin amino acid analysis  capillary chromatography
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