Structural and Enzymatic Basis for Impaired Deacylation of N -Acyl- N -Methyl Lysine Residues

Abstract Posttranslational lysine acetylation and methylation are generally considered mutually exclusive modifications of the ε-amino group. The recent discovery of N-acetyl-N-methyl lysine (KAcMe) on histone H4 showed that both marks can coexist on the same lysine side chain, raising the question of whether this dual modification is enzymatically reversible. Here, we synthesized model peptides containing N-acyl lysine or N-acyl-N-methyl lysine residues and tested their processing by Zn2+-dependent HDACs and NAD+-dependent sirtuins. While the corresponding unmethylated substrates were deacylated by the expected enzymes, KAcMe-containing peptides were not detectably deacetylated by either enzyme family. N-methylation also blocked HDAC8/11-mediated demyristoylation and SIRT5-mediated desuccinylation, whereas SIRT2 and SIRT6 retained weak demyristoylase activity toward N-myristoyl-N-methyl lysine. X-ray crystal structures of sirtuin–peptide complexes, supported by inhibition studies and molecular docking, reveal that N-methylation disrupts productive substrate positioning and misaligns the scissile amide bond for catalysis. These findings suggest that KAcMe is resistant to canonical lysine deacetylases and may represent a persistent chromatin-associated modification.

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Publication Details

Journal
Biochemistry
Published
2026-09-08
DOI
https://doi.org/10.1021/acs.biochem.6c00508
Primary Topic
Sirtuins and Resveratrol in Medicine
Type
article
Field-Weighted Citation Impact
0.00

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article

Structural and Enzymatic Basis for Impaired Deacylation of N -Acyl- N -Methyl Lysine Residues

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Biochemistry
Sirtuins and Resveratrol in Medicine
article

Structural and Enzymatic Basis for Impaired Deacylation of N -Acyl- N -Methyl Lysine Residues

Florian Friedrich, Manfred Jung, Cordelia Schiene‐Fischer, Clemens Steegborn, Wolfgang Sippl, Mike Schutkowski, Oliver Einsle, Marat Meleshin, Cyril Bařinka, M. Pannek, Sebastian Hilscher, Fady Baselious, Paul Horst Böttcher
article en

Abstract

Abstract Posttranslational lysine acetylation and methylation are generally considered mutually exclusive modifications of the ε-amino group. The recent discovery of N-acetyl-N-methyl lysine (KAcMe) on histone H4 showed that both marks can coexist on the same lysine side chain, raising the question of whether this dual modification is enzymatically reversible. Here, we synthesized model peptides containing N-acyl lysine or N-acyl-N-methyl lysine residues and tested their processing by Zn2+-dependent HDACs and NAD+-dependent sirtuins. While the corresponding unmethylated substrates were deacylated by the expected enzymes, KAcMe-containing peptides were not detectably deacetylated by either enzyme family. N-methylation also blocked HDAC8/11-mediated demyristoylation and SIRT5-mediated desuccinylation, whereas SIRT2 and SIRT6 retained weak demyristoylase activity toward N-myristoyl-N-methyl lysine. X-ray crystal structures of sirtuin–peptide complexes, supported by inhibition studies and molecular docking, reveal that N-methylation disrupts productive substrate positioning and misaligns the scissile amide bond for catalysis. These findings suggest that KAcMe is resistant to canonical lysine deacetylases and may represent a persistent chromatin-associated modification.

Biochemistry
University of Freiburg (DE), Luther University (KR), Czech Academy of Sciences, Institute of Biotechnology (CZ), University of Bayreuth (DE), Martin Luther University Halle-Wittenberg (DE)
Deutsche Forschungsgemeinschaft, European Synchrotron Radiation Facility, Grantová Agentura České Republiky, Albert-Ludwigs-Universität Freiburg, Akademie Věd České Republiky
Openalex Percentile: Top 14%
Sirtuins and Resveratrol in Medicine
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