Systematic evaluation of species-independent serum pre-fractionation strategies revealed cost-effective methods to reduce proteome complexity
Autor: | Ankan De, Parthasarathi Behera, Mohammad Ayub Ali, Jagan Mohanarao Gali, Tapan Kumar Dutta |
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Rok vydání: | 2019 |
Předmět: |
Proteomics
Swine Cost-Benefit Analysis Biophysics Fractionation Chemical Fractionation 01 natural sciences Biochemistry 03 medical and health sciences Animals Humans Molecular Biology 030304 developmental biology 0303 health sciences Chromatography Chemistry 010401 analytical chemistry Albumin Pig model Cell Biology Blood Proteins Laboratory chemicals Blood proteins Mass spectrometric 0104 chemical sciences Proteome Protein abundance |
Zdroj: | Analytical biochemistry. 584 |
ISSN: | 1096-0309 |
Popis: | In this study, the efficiency of one commercial (ProteoMiner™ -PM) and five simple and cost-effective laboratory chemicals (Acetone, TCA/acetone, DTT, ACN and DTT-ACN) based serum protein pre-fractionation strategies was compared in pig model by label-free quantitation based mass spectrometric approach to find out the most suitable strategy for reducing the complexity of serum proteome for subsequent proteomic studies. The highest serum protein depletion percentage and highest depletion of albumin, the most abundant serum protein, was observed in DTT-ACN method. The maximum number of serum proteins was identified in ACN followed by DTT-ACN method and importantly, detection of more number of low-abundant proteins (LAPs) could also be achieved by these two methods. Although PM method resulted into lowest dynamic range of protein abundance, quite a less number of proteins were identified by this method. Overall, sequential depletion using DTT-ACN and ACN methods provided advantage of simultaneous detection of more number of proteins along with LAPs with a reasonably high dynamic range of protein abundances over other methods and thus emerged as cheaper and effective alternatives to the commercial methods. Further, these methods are species-independent and hence can be applied in human and in any livestock species to simplify the serum proteome. |
Databáze: | OpenAIRE |
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