| Literature DB >> 21884602 |
Sarah Paule1, Katie Meehan1, Adam Rainczuk1, Andrew N Stephens1, Guiying Nie1.
Abstract
BACKGROUND: Identification of secreted proteins of low abundance is often limited by abundant and high molecular weight (MW) proteins. We have optimised a procedure to overcome this limitation.Entities:
Year: 2011 PMID: 21884602 PMCID: PMC3184050 DOI: 10.1186/1477-5956-9-50
Source DB: PubMed Journal: Proteome Sci ISSN: 1477-5956 Impact factor: 2.480
Figure 1Schematic diagram showing SEAN captures low MW proteins but leaves high MW proteins in culture media. () The process of capturing low MW proteins from cultured media using SEAN. () Representative SELDI-ToF profiles shows the removal of albumin in SEAN-captured (control and decidualized) media samples. Albumin was absent in SEAN-bound (and ) but present in SEAN-unbound proteins (and ). Proteins over the range of 0-150 000 m/z are shown.
Figure 2Comparison of SEAN-bound proteins from control and decidualized cell media. () Representative SELDI-ToF profiles shows a clear difference between control and decidualized media over the range of 0-25 000 m/z. () Principle components analysis (PCA) of all significant protein peaks, revealing a dramatic separation between the two groups over 4 separate experiments.
Figure 3Mass spectrometry analysis of secreted proteins from decidualized cells. Stratification of proteins of interest was based on the number of peptides contributing to their identification (), subcellular localization () and molecular function (). () Representative SELDI-ToF profiles shows a clear difference between control and decidualized media over the range of 0-25 000 m/z. () Principle components analysis (PCA) of all significant protein peaks, revealing a dramatic separation between the two groups over 4 separate experiments.