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Histone deacetylase (HDAC) 1 and 2 complexes regulate both histone acetylation and crotonylation in vivo.

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posted on 2019-07-24, 16:00 authored by RDW Kelly, A Chandru, PJ Watson, Y Song, M Blades, NS Robertson, AG Jamieson, JWR Schwabe, SM Cowley
Proteomic analysis of histones has shown that they are subject to a superabundance of acylations, which extend far beyond acetylation, to include: crotonylation, propionylation, butyrylation, malonylation, succinylation, β-hydroxybutyrylation and 2-hydroxyisobutyrylation. To date, much of the functional data has focussed on histone crotonylation which, similar to acetylation, has been associated with positive gene regulation and is added by the acyltransferase, p300. Although Sirtuins 1-3, along with HDAC3, have been shown to possess decrotonylase activity in vitro, there is relatively little known about the regulation of histone crotonylation in vivo. Here we show that Histone Deacetylase 1 and 2 (HDAC1/2), the catalytic core of numerous co-repressor complexes, are important histone decrotonylase enzymes. A ternary complex of HDAC1/CoREST1/LSD1 is able to hydrolyse both histone H3 Lys18-acetyl (H3K18ac) and H3 Lys18-crotonyl (H3K18cr) peptide substrates. Genetic deletion of HDAC1/2 in ES cells increases global levels of histone crotonylation and causes an 85% reduction in total decrotonylase activity. Furthermore, we mapped H3K18cr in cells using ChIP-seq, with and without HDAC1/2, and observed increased levels of crotonylation, which largely overlaps with H3K18ac in the vicinity of transcriptional start sites. Collectively, our data indicate that HDAC1/2 containing complexes are critical regulators of histone crotonylation in vivo.

Funding

AGJ was supported by a grant from EPSRC (EP/N034260/1). JWRS was supported by grants from the BBSRC (BB/N002954/1) and Wellcome Trust (100237). SMC was supported by a senior non-clinical fellowship from the MRC (MR/J009202/1) and BBSRC project grants (BB/N002954/1, BB/P021689/1).

History

Citation

Scientific Reports, 2018, volume 8, Article number: 14690

Author affiliation

/Organisation/COLLEGE OF LIFE SCIENCES/Biological Sciences/Molecular & Cell Biology

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  • VoR (Version of Record)

Published in

Scientific Reports

eissn

2045-2322

Acceptance date

2018-09-14

Copyright date

2018

Available date

2019-07-24

Publisher version

https://www.nature.com/articles/s41598-018-32927-9

Language

en

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