Cargando…

Analysis of histone post translational modifications in primary monocyte derived macrophages using reverse phase × reverse phase chromatography in conjunction with porous graphitic carbon stationary phase

A two dimensional-liquid chromatography (2D-LC) based approach was developed for the identification and quantification of histone post translational modifications in conjunction with mass spectrometry analysis. Using a bottom-up strategy, offline 2D-LC was developed using reverse phase chromatograph...

Descripción completa

Detalles Bibliográficos
Autores principales: Minshull, Thomas C., Cole, Joby, Dockrell, David H., Read, Robert C., Dickman, Mark J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4906248/
https://www.ncbi.nlm.nih.gov/pubmed/27260198
http://dx.doi.org/10.1016/j.chroma.2016.05.025
_version_ 1782437391706882048
author Minshull, Thomas C.
Cole, Joby
Dockrell, David H.
Read, Robert C.
Dickman, Mark J.
author_facet Minshull, Thomas C.
Cole, Joby
Dockrell, David H.
Read, Robert C.
Dickman, Mark J.
author_sort Minshull, Thomas C.
collection PubMed
description A two dimensional-liquid chromatography (2D-LC) based approach was developed for the identification and quantification of histone post translational modifications in conjunction with mass spectrometry analysis. Using a bottom-up strategy, offline 2D-LC was developed using reverse phase chromatography. A porous graphitic carbon stationary phase in the first dimension and a C(18) stationary phase in the second dimension interfaced with mass spectrometry was used to analyse global levels of histone post translational modifications in human primary monocyte-derived macrophages. The results demonstrated that 84 different histone peptide proteoforms, with modifications at 18 different sites including combinatorial marks were identified, representing an increase in the identification of histone peptides by 65% and 51% compared to two different 1D-LC approaches on the same mass spectrometer. The use of the porous graphitic stationary phase in the first dimension resulted in efficient separation of histone peptides across the gradient, with good resolution and is orthogonal to the online C(18) reverse phase chromatography. Overall, more histone peptides were identified using the 2D-LC approach compared to conventional 1D-LC approaches. In addition, a bioinformatic pipeline was developed in-house to enable the high throughput efficient and accurate quantification of fractionated histone peptides. The automation of a section of the downstream analysis pipeline increased the throughput of the 2D-LC–MS/MS approach for the quantification of histone post translational modifications.
format Online
Article
Text
id pubmed-4906248
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-49062482016-07-01 Analysis of histone post translational modifications in primary monocyte derived macrophages using reverse phase × reverse phase chromatography in conjunction with porous graphitic carbon stationary phase Minshull, Thomas C. Cole, Joby Dockrell, David H. Read, Robert C. Dickman, Mark J. J Chromatogr A Article A two dimensional-liquid chromatography (2D-LC) based approach was developed for the identification and quantification of histone post translational modifications in conjunction with mass spectrometry analysis. Using a bottom-up strategy, offline 2D-LC was developed using reverse phase chromatography. A porous graphitic carbon stationary phase in the first dimension and a C(18) stationary phase in the second dimension interfaced with mass spectrometry was used to analyse global levels of histone post translational modifications in human primary monocyte-derived macrophages. The results demonstrated that 84 different histone peptide proteoforms, with modifications at 18 different sites including combinatorial marks were identified, representing an increase in the identification of histone peptides by 65% and 51% compared to two different 1D-LC approaches on the same mass spectrometer. The use of the porous graphitic stationary phase in the first dimension resulted in efficient separation of histone peptides across the gradient, with good resolution and is orthogonal to the online C(18) reverse phase chromatography. Overall, more histone peptides were identified using the 2D-LC approach compared to conventional 1D-LC approaches. In addition, a bioinformatic pipeline was developed in-house to enable the high throughput efficient and accurate quantification of fractionated histone peptides. The automation of a section of the downstream analysis pipeline increased the throughput of the 2D-LC–MS/MS approach for the quantification of histone post translational modifications. Elsevier 2016-07-01 /pmc/articles/PMC4906248/ /pubmed/27260198 http://dx.doi.org/10.1016/j.chroma.2016.05.025 Text en © 2016 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Minshull, Thomas C.
Cole, Joby
Dockrell, David H.
Read, Robert C.
Dickman, Mark J.
Analysis of histone post translational modifications in primary monocyte derived macrophages using reverse phase × reverse phase chromatography in conjunction with porous graphitic carbon stationary phase
title Analysis of histone post translational modifications in primary monocyte derived macrophages using reverse phase × reverse phase chromatography in conjunction with porous graphitic carbon stationary phase
title_full Analysis of histone post translational modifications in primary monocyte derived macrophages using reverse phase × reverse phase chromatography in conjunction with porous graphitic carbon stationary phase
title_fullStr Analysis of histone post translational modifications in primary monocyte derived macrophages using reverse phase × reverse phase chromatography in conjunction with porous graphitic carbon stationary phase
title_full_unstemmed Analysis of histone post translational modifications in primary monocyte derived macrophages using reverse phase × reverse phase chromatography in conjunction with porous graphitic carbon stationary phase
title_short Analysis of histone post translational modifications in primary monocyte derived macrophages using reverse phase × reverse phase chromatography in conjunction with porous graphitic carbon stationary phase
title_sort analysis of histone post translational modifications in primary monocyte derived macrophages using reverse phase × reverse phase chromatography in conjunction with porous graphitic carbon stationary phase
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4906248/
https://www.ncbi.nlm.nih.gov/pubmed/27260198
http://dx.doi.org/10.1016/j.chroma.2016.05.025
work_keys_str_mv AT minshullthomasc analysisofhistoneposttranslationalmodificationsinprimarymonocytederivedmacrophagesusingreversephasereversephasechromatographyinconjunctionwithporousgraphiticcarbonstationaryphase
AT colejoby analysisofhistoneposttranslationalmodificationsinprimarymonocytederivedmacrophagesusingreversephasereversephasechromatographyinconjunctionwithporousgraphiticcarbonstationaryphase
AT dockrelldavidh analysisofhistoneposttranslationalmodificationsinprimarymonocytederivedmacrophagesusingreversephasereversephasechromatographyinconjunctionwithporousgraphiticcarbonstationaryphase
AT readrobertc analysisofhistoneposttranslationalmodificationsinprimarymonocytederivedmacrophagesusingreversephasereversephasechromatographyinconjunctionwithporousgraphiticcarbonstationaryphase
AT dickmanmarkj analysisofhistoneposttranslationalmodificationsinprimarymonocytederivedmacrophagesusingreversephasereversephasechromatographyinconjunctionwithporousgraphiticcarbonstationaryphase