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Improvement of Capture Compound Mass Spectrometry Technology (CCMS) for the Profiling of Human Kinases by Combination with 2D LC-MS/MS

An increasingly popular and promising field in functional proteomics is the isolation of proteome subsets based on small molecule-protein interactions. One platform approach in this field are Capture Compounds that contain a small molecule of interest to bind target proteins, a photo-activatable rea...

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Autores principales: Fischer, Jenny J., Graebner, Olivia, Dreger, Mathias, Glinski, Mirko, Baumgart, Sabine, Koester, Hubert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3176445/
https://www.ncbi.nlm.nih.gov/pubmed/21941435
http://dx.doi.org/10.1155/2011/850589
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author Fischer, Jenny J.
Graebner, Olivia
Dreger, Mathias
Glinski, Mirko
Baumgart, Sabine
Koester, Hubert
author_facet Fischer, Jenny J.
Graebner, Olivia
Dreger, Mathias
Glinski, Mirko
Baumgart, Sabine
Koester, Hubert
author_sort Fischer, Jenny J.
collection PubMed
description An increasingly popular and promising field in functional proteomics is the isolation of proteome subsets based on small molecule-protein interactions. One platform approach in this field are Capture Compounds that contain a small molecule of interest to bind target proteins, a photo-activatable reactivity function to covalently trap bound proteins, and a sorting function to isolate captured protein conjugates from complex biological samples for direct protein identification by liquid chromatography/mass spectrometry (nLC-MS/MS). In this study we used staurosporine as a selectivity group for analysis in HepG2 cells derived from human liver. In the present study, we combined the functional isolation of kinases with different separation workflows of automated split-free nanoflow liquid chromatography prior to mass spectrometric analysis. Two different CCMS setups, CCMS technology combined with 1D LC-MS and 2D LC-MS, were compared regarding the total number of kinase identifications. By extending the chromatographic separation of the tryptic digested captured proteins from 1D LC linear gradients to 2D LC we were able to identify 97 kinases. This result is similar to the 1D LC setup we previously reported but this time 4 times less input material was needed. This makes CCMS of kinases an even more powerful tool for the proteomic profiling of this important protein family.
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spelling pubmed-31764452011-09-22 Improvement of Capture Compound Mass Spectrometry Technology (CCMS) for the Profiling of Human Kinases by Combination with 2D LC-MS/MS Fischer, Jenny J. Graebner, Olivia Dreger, Mathias Glinski, Mirko Baumgart, Sabine Koester, Hubert J Biomed Biotechnol Methodology Report An increasingly popular and promising field in functional proteomics is the isolation of proteome subsets based on small molecule-protein interactions. One platform approach in this field are Capture Compounds that contain a small molecule of interest to bind target proteins, a photo-activatable reactivity function to covalently trap bound proteins, and a sorting function to isolate captured protein conjugates from complex biological samples for direct protein identification by liquid chromatography/mass spectrometry (nLC-MS/MS). In this study we used staurosporine as a selectivity group for analysis in HepG2 cells derived from human liver. In the present study, we combined the functional isolation of kinases with different separation workflows of automated split-free nanoflow liquid chromatography prior to mass spectrometric analysis. Two different CCMS setups, CCMS technology combined with 1D LC-MS and 2D LC-MS, were compared regarding the total number of kinase identifications. By extending the chromatographic separation of the tryptic digested captured proteins from 1D LC linear gradients to 2D LC we were able to identify 97 kinases. This result is similar to the 1D LC setup we previously reported but this time 4 times less input material was needed. This makes CCMS of kinases an even more powerful tool for the proteomic profiling of this important protein family. Hindawi Publishing Corporation 2011 2011-09-19 /pmc/articles/PMC3176445/ /pubmed/21941435 http://dx.doi.org/10.1155/2011/850589 Text en Copyright © 2011 Jenny J. Fischer et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Methodology Report
Fischer, Jenny J.
Graebner, Olivia
Dreger, Mathias
Glinski, Mirko
Baumgart, Sabine
Koester, Hubert
Improvement of Capture Compound Mass Spectrometry Technology (CCMS) for the Profiling of Human Kinases by Combination with 2D LC-MS/MS
title Improvement of Capture Compound Mass Spectrometry Technology (CCMS) for the Profiling of Human Kinases by Combination with 2D LC-MS/MS
title_full Improvement of Capture Compound Mass Spectrometry Technology (CCMS) for the Profiling of Human Kinases by Combination with 2D LC-MS/MS
title_fullStr Improvement of Capture Compound Mass Spectrometry Technology (CCMS) for the Profiling of Human Kinases by Combination with 2D LC-MS/MS
title_full_unstemmed Improvement of Capture Compound Mass Spectrometry Technology (CCMS) for the Profiling of Human Kinases by Combination with 2D LC-MS/MS
title_short Improvement of Capture Compound Mass Spectrometry Technology (CCMS) for the Profiling of Human Kinases by Combination with 2D LC-MS/MS
title_sort improvement of capture compound mass spectrometry technology (ccms) for the profiling of human kinases by combination with 2d lc-ms/ms
topic Methodology Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3176445/
https://www.ncbi.nlm.nih.gov/pubmed/21941435
http://dx.doi.org/10.1155/2011/850589
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