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Mass spectrometry-based profiling of single-cell histone post-translational modifications to dissect chromatin heterogeneity
by
Cutler, Ronald
, Corveleyn, Laura
, Cantlon, Joshua
, Deforce, Dieter
, Carr, Steven A.
, Dhaenens, Maarten
, Jacome, Alvaro Sebastian Vaca
, Sidoli, Simone
, Ctortecka, Claudia
, LiCausi, Francesca
, Papanastasiou, Malvina
, Vijg, Jan
in
631/114/2784
/ 631/45/475/2290
/ 82/58
/ Accuracy
/ Butyric Acid - pharmacology
/ Cells
/ Chromatin
/ Chromatin - metabolism
/ Combinatorial analysis
/ Epigenetics
/ Heterogeneity
/ Histone Code
/ Histone deacetylase
/ Histone Deacetylase Inhibitors - pharmacology
/ Histones
/ Histones - metabolism
/ Humanities and Social Sciences
/ Humans
/ Mass spectrometry
/ Mass Spectrometry - methods
/ Mass spectroscopy
/ Methods
/ multidisciplinary
/ Peptides
/ Post-translation
/ Protein Processing, Post-Translational - drug effects
/ Proteins
/ Proteomics
/ Proteomics - methods
/ Science
/ Science (multidisciplinary)
/ Scientific imaging
/ Single-Cell Analysis - methods
/ Sodium butyrate
/ Translation
2025
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Mass spectrometry-based profiling of single-cell histone post-translational modifications to dissect chromatin heterogeneity
by
Cutler, Ronald
, Corveleyn, Laura
, Cantlon, Joshua
, Deforce, Dieter
, Carr, Steven A.
, Dhaenens, Maarten
, Jacome, Alvaro Sebastian Vaca
, Sidoli, Simone
, Ctortecka, Claudia
, LiCausi, Francesca
, Papanastasiou, Malvina
, Vijg, Jan
in
631/114/2784
/ 631/45/475/2290
/ 82/58
/ Accuracy
/ Butyric Acid - pharmacology
/ Cells
/ Chromatin
/ Chromatin - metabolism
/ Combinatorial analysis
/ Epigenetics
/ Heterogeneity
/ Histone Code
/ Histone deacetylase
/ Histone Deacetylase Inhibitors - pharmacology
/ Histones
/ Histones - metabolism
/ Humanities and Social Sciences
/ Humans
/ Mass spectrometry
/ Mass Spectrometry - methods
/ Mass spectroscopy
/ Methods
/ multidisciplinary
/ Peptides
/ Post-translation
/ Protein Processing, Post-Translational - drug effects
/ Proteins
/ Proteomics
/ Proteomics - methods
/ Science
/ Science (multidisciplinary)
/ Scientific imaging
/ Single-Cell Analysis - methods
/ Sodium butyrate
/ Translation
2025
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Mass spectrometry-based profiling of single-cell histone post-translational modifications to dissect chromatin heterogeneity
by
Cutler, Ronald
, Corveleyn, Laura
, Cantlon, Joshua
, Deforce, Dieter
, Carr, Steven A.
, Dhaenens, Maarten
, Jacome, Alvaro Sebastian Vaca
, Sidoli, Simone
, Ctortecka, Claudia
, LiCausi, Francesca
, Papanastasiou, Malvina
, Vijg, Jan
in
631/114/2784
/ 631/45/475/2290
/ 82/58
/ Accuracy
/ Butyric Acid - pharmacology
/ Cells
/ Chromatin
/ Chromatin - metabolism
/ Combinatorial analysis
/ Epigenetics
/ Heterogeneity
/ Histone Code
/ Histone deacetylase
/ Histone Deacetylase Inhibitors - pharmacology
/ Histones
/ Histones - metabolism
/ Humanities and Social Sciences
/ Humans
/ Mass spectrometry
/ Mass Spectrometry - methods
/ Mass spectroscopy
/ Methods
/ multidisciplinary
/ Peptides
/ Post-translation
/ Protein Processing, Post-Translational - drug effects
/ Proteins
/ Proteomics
/ Proteomics - methods
/ Science
/ Science (multidisciplinary)
/ Scientific imaging
/ Single-Cell Analysis - methods
/ Sodium butyrate
/ Translation
2025
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Mass spectrometry-based profiling of single-cell histone post-translational modifications to dissect chromatin heterogeneity
Journal Article
Mass spectrometry-based profiling of single-cell histone post-translational modifications to dissect chromatin heterogeneity
2025
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Overview
Single-cell proteomics confidently quantifies cellular heterogeneity, however quantification of post-translational modifications, such as those deposited on histone proteins, remains elusive. Here, we develop a robust mass spectrometry-based method for the unbiased analysis of single-cell histone post-translational modifications (sc-hPTM). sc-hPTM identifies both single- and combinatorial histone post-translational modifications (67 peptidoforms in total), which includes nearly all frequently studied histone post-translational modifications with comparable reproducibility to traditional bulk experiments. As a proof of concept, we treat cells with sodium butyrate, a histone deacetylase inhibitor, and demonstrate that our method can i) distinguish between treated and untreated cells, ii) identify sub-populations of cells with heterogeneous response to the treatment, and iii) reveal differential co-regulation of histone post-translational modifications in the context of drug treatment. The sc-hPTM method enables comprehensive investigation of chromatin heterogeneity at single-cell resolution and provides a further understanding of the histone code.
Chromatin structure is regulated by chemical modifications of histone proteins, but measuring these at single-cell resolution has been challenging. Here, the authors develop a mass spectrometry-based method to profile histone modifications in individual cells, revealing chromatin heterogeneity and differential co-regulation.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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