Mass Spectrometry in Proteome Research

Mass spectrometry (MS) - based proteomics allows the sensitive and accurate quantification of almost complete proteomes of complex biological fluids and tissues. At the moment, however, the routinely usage of MS-based proteomics is prevented and complicated by the very complex work flow comprising sample preparation, chromatography, MS measurement followed by data processing and evaluation. The new technologies, products and assays developed by Precision Proteomics could help enabling and establishing mass spectrometry (MS) - based proteomics in academic and pharmaceutical research as well as in clinical diagnostics.

Relevant Conferences:

7th International Conference on Analytical and Bioanalytical Techniques September 28-30, 2016 Orlando, Florida, USA; 2nd International Conference on Current Trends in Mass Spectrometry July 20-22, 2016 Chicago, USA; World Congress on Chromatography September 21-23, 2016 Amsterdam, Netherlands; 7th International Conference on Proteomics October 24-26, 2016 Rome, Italy; 2nd International Conference on Genetic and Protein Engineering November 14-16, 2016 Atlanta, Georgia, USA; XI National Conference of the Italian Proteomic Association May 16-19, 2016 Perugia, Italy; HUPO 15th Annual World Congress September 18-22, 2016 Taipei, Taiwan; X Annual Congress of the European Proteomics Association June 21-25, 2016 Istanbul, Turkey; US HUPO 12th Annual Conference March 13-16, 2016 Boston, Massachusetts; HUPO 16th Annual World Congress September 17-20, 2017 Dublin, Ireland.

Recent successes illustrate the role of mass spectrometry-based proteomics as an indispensable tool for molecular and cellular biology and for the emerging field of systems biology. Quantitative proteomics is an analytical chemistry technique for determining the amount of proteins in a sample. Computational Methods for Mass Spectrometry Proteomics describes the different instruments and methodologies used in proteomics in a unified manner. Matrix-assisted laser desorption/ionization (MALDI) is a soft ionization technique used in mass spectrometry, allowing the analysis of biomolecules (biopolymers such as DNA, proteins, peptides and sugars) and large organic molecules (such as polymers, dendrimers and other macromolecules), which tend to be fragile and fragment when ionized by more conventional ionization methods. Electrospray ionization (ESI) is a technique used in mass spectrometry to produce ions using an electrospray in which a high voltage is applied to a liquid to create an aerosol. Liquid chromatography is an analytical chemistry technique that combines the physical separation capabilities of liquid chromatography (or HPLC) with the mass analysis capabilities of mass spectrometry (MS). Multidimensional Protein Identification Technology (MudPIT) is used to analyze the proteomes of organisms. Protein purification is a series of processes intended to isolate one or a few proteins from a complex mixture, usually cells, tissues or whole organisms. Imaging mass spectrometry (IMS) using matrix-assisted laser desorption ionization (MALDI) is a new and effective tool for molecular studies of complex biological samples such as tissue sections.

  • Mass spectrometry based proteomics
  • Mass spectrometry data analysis in proteomics
  • Mass spectrometry based quantitative proteomics
  • Analysis of protein and proteome by mass spectrometry
  • Computational methods of mass spectrometry in proteomics
  • Matrix-assisted laser desorption (MALDI-TOF-MS)
  • Electrospray ionization mass spectrometry (ESI-MS)
  • Liquid chromatography mass spectrometry (LC-MS)
  • Multidimensional protein identification technology – MudPIT
  • Protein identification and validation
  • Over expression and purification of the proteins
  • Molecular imaging by mass spectrometry

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