4.7 Article

Multiple-Approaches to the Identification and Quantification of Cytochromes P450 in Human Liver Tissue by Mass Spectrometry

期刊

JOURNAL OF PROTEOME RESEARCH
卷 8, 期 4, 页码 1672-1681

出版社

AMER CHEMICAL SOC
DOI: 10.1021/pr800795r

关键词

cytochrome P450; microsomes; label-free quantification; stable-isotope dilution mass spectrometry; LC-MS/MS; 2D-LC-MS/MS

资金

  1. U.K. Biotechnology and Biological Sciences Research Council [BB/C515771/1, BB/C511356/1]
  2. Biotechnology and Biological Sciences Research Council [BB/C511356/1, BB/C515771/1] Funding Source: researchfish

向作者/读者索取更多资源

Here we report the identification and approximate quantification of cytochrome P450 (CYP) proteins in human liver microsomes as determined by nano-LC-MS/MS with application of the exponentially modified protein abundance index (emPAI) algorithm during database searching. Protocols based on 1D-gel protein separation and 2D-LC peptide separation gave comparable results. In total, 18 CYP isoforms were unambiguously identified based on unique peptide matches. Further, we have determined the absolute quantity of two CYP enzymes (2E1 and 1A2) in human liver microsomes using stableisotope dilution mass spectrometry, where microsomal proteins were separated by 1D-gel electrophoresis, digested with trypsin in the presence of either a CYP2E1- or 1A2-specific stable-isotope labeled tryptic peptide and analyzed by LC-MS/MS. Using multiple reaction monitoring (MRM) for the isotope-labeled tryptic peptides and their natural unlabeled analogues quantification could be performed over the range of 0.1 -1.5 pmol on column. Liver microsomes from four individuals were analyzed for CYP2E1 giving values of 88-200 pmol/mg microsomal protein. The CYP1A2 content of microsomes from a further three individuals ranged from 165 to 263 pmol/mg microsomal protein. Although, in this proof-of-concept study for CYP quantification, the two CYP isoforms were quantified from different samples, there are no practical reasons to prevent multiplexing the method to allow the quantification of multiple CYP isoforms in a single sample.

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