Literature DB >> 25805797

EpiProfile Quantifies Histone Peptides With Modifications by Extracting Retention Time and Intensity in High-resolution Mass Spectra.

Zuo-Fei Yuan1, Shu Lin1, Rosalynn C Molden2, Xing-Jun Cao1, Natarajan V Bhanu1, Xiaoshi Wang1, Simone Sidoli1, Shichong Liu1, Benjamin A Garcia3.   

Abstract

Histone post-translational modifications contribute to chromatin function through their chemical properties which influence chromatin structure and their ability to recruit chromatin interacting proteins. Nanoflow liquid chromatography coupled with high resolution tandem mass spectrometry (nanoLC-MS/MS) has emerged as the most suitable technology for global histone modification analysis because of the high sensitivity and the high mass accuracy of this approach that provides confident identification. However, analysis of histones with this method is even more challenging because of the large number and variety of isobaric histone peptides and the high dynamic range of histone peptide abundances. Here, we introduce EpiProfile, a software tool that discriminates isobaric histone peptides using the distinguishing fragment ions in their tandem mass spectra and extracts the chromatographic area under the curve using previous knowledge about peptide retention time. The accuracy of EpiProfile was evaluated by analysis of mixtures containing different ratios of synthetic histone peptides. In addition to label-free quantification of histone peptides, EpiProfile is flexible and can quantify different types of isotopically labeled histone peptides. EpiProfile is unique in generating layouts (i.e. relative retention time) of histone peptides when compared with manual quantification of the data and other programs (such as Skyline), filling the need of an automatic and freely available tool to quantify labeled and non-labeled modified histone peptides. In summary, EpiProfile is a valuable nanoflow liquid chromatography coupled with high resolution tandem mass spectrometry-based quantification tool for histone peptides, which can also be adapted to analyze nonhistone protein samples.
© 2015 by The American Society for Biochemistry and Molecular Biology, Inc.

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Year:  2015        PMID: 25805797      PMCID: PMC4458730          DOI: 10.1074/mcp.M114.046011

Source DB:  PubMed          Journal:  Mol Cell Proteomics        ISSN: 1535-9476            Impact factor:   5.911


  28 in total

1.  Partitioning and plasticity of repressive histone methylation states in mammalian chromatin.

Authors:  Antoine H F M Peters; Stefan Kubicek; Karl Mechtler; Roderick J O'Sullivan; Alwin A H A Derijck; Laura Perez-Burgos; Alexander Kohlmaier; Susanne Opravil; Makoto Tachibana; Yoichi Shinkai; Joost H A Martens; Thomas Jenuwein
Journal:  Mol Cell       Date:  2003-12       Impact factor: 17.970

2.  Novel linear quadrupole ion trap/FT mass spectrometer: performance characterization and use in the comparative analysis of histone H3 post-translational modifications.

Authors:  John E P Syka; Jarrod A Marto; Dina L Bai; Stevan Horning; Michael W Senko; Jae C Schwartz; Beatrix Ueberheide; Benjamin Garcia; Scott Busby; Tara Muratore; Jeffrey Shabanowitz; Donald F Hunt
Journal:  J Proteome Res       Date:  2004 May-Jun       Impact factor: 4.466

3.  Exploiting the kernel trick to correlate fragment ions for peptide identification via tandem mass spectrometry.

Authors:  Yan Fu; Qiang Yang; Ruixiang Sun; Dequan Li; Rong Zeng; Charles X Ling; Wen Gao
Journal:  Bioinformatics       Date:  2004-03-25       Impact factor: 6.937

Review 4.  Generation and characterization of antibodies directed against di-modified histones, and comments on antibody and epitope recognition.

Authors:  Peter Cheung
Journal:  Methods Enzymol       Date:  2004       Impact factor: 1.600

Review 5.  The significance, development and progress of high-throughput combinatorial histone code analysis.

Authors:  Nicolas L Young; Peter A Dimaggio; Benjamin A Garcia
Journal:  Cell Mol Life Sci       Date:  2010-08-04       Impact factor: 9.261

6.  Chemical derivatization of histones for facilitated analysis by mass spectrometry.

Authors:  Benjamin A Garcia; Sahana Mollah; Beatrix M Ueberheide; Scott A Busby; Tara L Muratore; Jeffrey Shabanowitz; Donald F Hunt
Journal:  Nat Protoc       Date:  2007       Impact factor: 13.491

7.  Determination of monoisotopic masses and ion populations for large biomolecules from resolved isotopic distributions.

Authors:  M W Senko; S C Beu; F W McLaffertycor
Journal:  J Am Soc Mass Spectrom       Date:  1995-04       Impact factor: 3.109

8.  A mixed integer linear optimization framework for the identification and quantification of targeted post-translational modifications of highly modified proteins using multiplexed electron transfer dissociation tandem mass spectrometry.

Authors:  Peter A DiMaggio; Nicolas L Young; Richard C Baliban; Benjamin A Garcia; Christodoulos A Floudas
Journal:  Mol Cell Proteomics       Date:  2009-08-07       Impact factor: 5.911

9.  Global turnover of histone post-translational modifications and variants in human cells.

Authors:  Barry M Zee; Rebecca S Levin; Peter A DiMaggio; Benjamin A Garcia
Journal:  Epigenetics Chromatin       Date:  2010-12-06       Impact factor: 4.954

10.  Evaluation of proteomic search engines for the analysis of histone modifications.

Authors:  Zuo-Fei Yuan; Shu Lin; Rosalynn C Molden; Benjamin A Garcia
Journal:  J Proteome Res       Date:  2014-09-07       Impact factor: 4.466

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  56 in total

1.  Multicellular Tumor Spheroids Combined with Mass Spectrometric Histone Analysis To Evaluate Epigenetic Drugs.

Authors:  Peter E Feist; Simone Sidoli; Xin Liu; Monica M Schroll; Sharif Rahmy; Rina Fujiwara; Benjamin A Garcia; Amanda B Hummon
Journal:  Anal Chem       Date:  2017-02-21       Impact factor: 6.986

2.  EpiProfile 2.0: A Computational Platform for Processing Epi-Proteomics Mass Spectrometry Data.

Authors:  Zuo-Fei Yuan; Simone Sidoli; Dylan M Marchione; Johayra Simithy; Kevin A Janssen; Mary R Szurgot; Benjamin A Garcia
Journal:  J Proteome Res       Date:  2018-05-30       Impact factor: 4.466

3.  Bullet points to evaluate the performance of the middle-down proteomics workflow for histone modification analysis.

Authors:  Mariel Coradin; Mariel R Mendoza; Simone Sidoli; Andrew J Alpert; Congcong Lu; Benjamin A Garcia
Journal:  Methods       Date:  2020-02-15       Impact factor: 3.608

4.  Regulation of proline-directed kinases and the trans-histone code H3K9me3/H4K20me3 during human myogenesis.

Authors:  Natarajan V Bhanu; Simone Sidoli; Zuo-Fei Yuan; Rosalynn C Molden; Benjamin A Garcia
Journal:  J Biol Chem       Date:  2019-03-14       Impact factor: 5.157

5.  Rpp29 regulates histone H3.3 chromatin assembly through transcriptional mechanisms.

Authors:  Prashanth Krishna Shastrula; Peder J Lund; Benjamin A Garcia; Susan M Janicki
Journal:  J Biol Chem       Date:  2018-06-19       Impact factor: 5.157

6.  Assessment of Quantification Precision of Histone Post-Translational Modifications by Using an Ion Trap and down To 50 000 Cells as Starting Material.

Authors:  Qi Guo; Simone Sidoli; Benjamin A Garcia; Xiaolu Zhao
Journal:  J Proteome Res       Date:  2017-11-21       Impact factor: 4.466

7.  Recognition of Histone H3K14 Acylation by MORF.

Authors:  Brianna J Klein; Johayra Simithy; Xiaolu Wang; JaeWoo Ahn; Forest H Andrews; Yi Zhang; Jacques Côté; Xiaobing Shi; Benjamin A Garcia; Tatiana G Kutateladze
Journal:  Structure       Date:  2017-03-09       Impact factor: 5.006

Review 8.  Recent Achievements in Characterizing the Histone Code and Approaches to Integrating Epigenomics and Systems Biology.

Authors:  K A Janssen; S Sidoli; B A Garcia
Journal:  Methods Enzymol       Date:  2017-01-06       Impact factor: 1.600

9.  Targeting CDK9 Reactivates Epigenetically Silenced Genes in Cancer.

Authors:  Hanghang Zhang; Somnath Pandey; Meghan Travers; Hongxing Sun; George Morton; Jozef Madzo; Woonbok Chung; Jittasak Khowsathit; Oscar Perez-Leal; Carlos A Barrero; Carmen Merali; Yasuyuki Okamoto; Takahiro Sato; Joshua Pan; Judit Garriga; Natarajan V Bhanu; Johayra Simithy; Bela Patel; Jian Huang; Noël J-M Raynal; Benjamin A Garcia; Marlene A Jacobson; Cigall Kadoch; Salim Merali; Yi Zhang; Wayne Childers; Magid Abou-Gharbia; John Karanicolas; Stephen B Baylin; Cynthia A Zahnow; Jaroslav Jelinek; Xavier Graña; Jean-Pierre J Issa
Journal:  Cell       Date:  2018-10-25       Impact factor: 41.582

10.  Multiplexed data independent acquisition (MSX-DIA) applied by high resolution mass spectrometry improves quantification quality for the analysis of histone peptides.

Authors:  Simone Sidoli; Rina Fujiwara; Benjamin A Garcia
Journal:  Proteomics       Date:  2016-06-08       Impact factor: 3.984

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