| Literature DB >> 27431976 |
Xibei Dang1, Amar Singh2, Brian D Spetman3, Krystal D Nolan4, Jennifer S Isaacs4, Jonathan H Dennis3, Stephen Dalton2, Alan G Marshall1,5, Nicolas L Young5,6.
Abstract
Histone variants are known to play a central role in genome regulation and maintenance. However, many variants are inaccessible by antibody-based methods or bottom-up tandem mass spectrometry due to their highly similar sequences. For many, the only tractable approach is with intact protein top-down tandem mass spectrometry. Here, ultra-high-resolution FT-ICR MS and MS/MS yield quantitative relative abundances of all detected HeLa H2A and H2B isobaric and isomeric variants with a label-free approach. We extend the analysis to identify and relatively quantitate 16 proteoforms from 12 sequence variants of histone H2A and 10 proteoforms of histone H2B from three other cell lines: human embryonic stem cells (WA09), U937, and a prostate cancer cell line LaZ. The top-down MS/MS approach provides a path forward for more extensive elucidation of the biological role of many previously unstudied histone variants and post-translational modifications.Entities:
Keywords: FT-ICR; FTMS; histone; post-translational modification; proteoform; sequence variants
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Year: 2016 PMID: 27431976 PMCID: PMC6261780 DOI: 10.1021/acs.jproteome.6b00414
Source DB: PubMed Journal: J Proteome Res ISSN: 1535-3893 Impact factor: 4.466