| Literature DB >> 31429292 |
Laura De Clerck1, Sander Willems1, Roberta Noberini2, Camilla Restellini2, Bart Van Puyvelde1, Simon Daled1, Tiziana Bonaldi2, Dieter Deforce1, Maarten Dhaenens1.
Abstract
Mass spectrometry (MS) has become the technique of choice for large-scale analysis of histone post-translational modifications (hPTMs) and their combinatorial patterns, especially in untargeted settings where novel discovery-driven hypotheses are being generated. However, MS-based histone analysis requires a distinct sample preparation, acquisition, and data analysis workflow when compared to traditional MS-based approaches. To this end, sequential window acquisition of all theoretical fragment ion spectra (SWATH) has great potential, as it allows for untargeted accurate identification and quantification of hPTMs. Here, we present a complete SWATH workflow specifically adapted for the untargeted study of histones (hSWATH). We assess its validity on a technical dataset of time-lapse deacetylation of a commercial histone extract using HDAC1, which contains a ground truth, i.e., acetylated substrate peptides reduce in intensity. We successfully apply this workflow in a biological setting and subsequently investigate the differential response to HDAC inhibition in different breast cancer cell lines.Entities:
Keywords: data-independent acquisition (DIA); epigenetics; histone; mass spectrometry (MS); post-translational modification (PTM); sequential window acquisition of all theoretical fragment ion spectra (SWATH)
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Year: 2019 PMID: 31429292 DOI: 10.1021/acs.jproteome.9b00214
Source DB: PubMed Journal: J Proteome Res ISSN: 1535-3893 Impact factor: 4.466