AI Article Synopsis

  • Histone deacetylases (HDACs) remove acetyl groups from proteins, but their specificity has mainly been studied using peptide substrates, raising questions about how well these reflect their behavior with full-length proteins.
  • Research comparing HDAC8's action on peptides, full-length proteins, and protein-nucleic acid complexes reveals that it works much more efficiently on full-length histones than on peptides, suggesting additional interactions boost its activity.
  • However, as the size of protein complexes increases, the efficiency decreases, indicating that HDAC8 substrate selectivity relies on a blend of short- and long-range interactions with the substrates.

Article Abstract

Histone deacetylases (HDACs) catalyze deacetylation of acetyl-lysine residues within proteins. To date, HDAC substrate specificity and selectivity have been largely estimated using peptide substrates. However, it is unclear whether peptide substrates accurately reflect the substrate selectivity of HDAC8 toward full-length proteins. Here, we compare HDAC8 substrate selectivity in the context of peptides, full-length proteins, and protein-nucleic acid complexes. We demonstrate that HDAC8 catalyzes deacetylation of tetrameric histone (H3/H4) substrates with catalytic efficiencies that are 40-300-fold higher than those for corresponding peptide substrates. Thus, we conclude that additional contacts with protein substrates enhance catalytic efficiency. However, the catalytic efficiency decreases for larger multiprotein complexes. These differences in HDAC8 substrate selectivity for peptides and full-length proteins suggest that HDAC8 substrate preference is based on a combination of short- and long-range interactions. In summary, this work presents detailed kinetics for HDAC8-catalyzed deacetylation of singly-acetylated, full-length protein substrates, revealing that HDAC8 substrate selectivity is determined by multiple factors. These insights provide a foundation for understanding recognition of full-length proteins by HDACs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5766737PMC
http://dx.doi.org/10.1074/jbc.M117.811026DOI Listing

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