Published February 24, 2021 | Version v1
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The regulatory enzymes and protein substrates for the lysine β-hydroxybutyrylation pathway

  • 1. Chinese Academy of Sciences
  • 2. University of Chicago
  • 3. The Rockefeller University
  • 4. Harvard University

Description

Metabolism-mediated epigenetic changes represent an adapted mechanism for cellular signaling, in which lysine acetylation and methylation have been the historical focus of interest. We recently discovered a β-hydroxybutyrate-mediated epigenetic pathway that couples metabolism to gene expression. However, its regulatory enzymes and substrate proteins remain unknown, hindering its functional study. Here, we report that the acyltransferase p300 can catalyze the enzymatic addition of β-hydroxybutyrate to lysine (Kbhb), while histone deacetylase 1 (HDAC1) and HDAC2 enzymatically remove Kbhb. We demonstrate that p300-dependent histone Kbhb can directly mediate in vitro transcription. Moreover, a comprehensive analysis of Kbhb substrates in mammalian cells has identified 3248 Kbhb sites on 1397 substrate proteins. The dependence of histone Kbhb on p300 argues that enzyme-catalyzed acylation is the major mechanism for nuclear Kbhb. Our study thus reveals key regulatory elements for the Kbhb pathway, laying a foundation for studying its roles in diverse cellular processes.

Data availability

All data needed to evaluate the conclusions in the paper are present in the paper and/or the Supplementary Materials. Additional data related to this paper may be requested from the authors. The mass spectrometry proteomics data have been deposited to the ProteomeXchange Consortium via the PRIDE partner repository with the dataset identifier PXD012328.

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Additional details

Identifiers

DOI
10.1126/sciadv.abe2771
Other
oai:uchicago.tind.io:11022

Funding

National Institutes of Health
R01GM135504
National Institutes of Health
R01DK118266
National Institutes of Health
GM62437
National Institutes of Health
DK071900
National Institutes of Health
CA129325
National Natural Science Foundation of China
81973164
Shanghai Pujiang Program
19PJ1411200

UChicago Information

Division(s)
Biological Sciences Division
Department(s)
Ben May Department for Cancer Research