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Bolding, J. E.

Publications and source records attributed to Bolding, J. E..

2 recordsLinked to original sources

Fluorogenic Substrates and Cyclic Peptide Inhibitors of the Oligonucleotide Activated SIRT7

The sirtuins are NAD+-dependent lysine deacylases, comprising seven isoforms (SIRT1-7) in humans, which are involved in the regulation of a plethora of biology, including gene expression and metabolism. The sirtuins share a common hydrolytic mechanism but display preferences for different {varepsilon}-N-acyllysine substrates. SIRT7 deacetylates targets in nuclei and nucleoli but remains one of the lesser studied of the seven isoforms; in part, because of a lack of chemical tools to specifically probe SIRT7 activity. Here we expressed SIRT7 and, using small-angle X-ray scattering, reveal SIRT7 to be a monomeric enzyme with low degree of globular flexibility in solution. We developed a fluorogenic assay for investigation of the substrate preferences of SIRT7 and to evaluate compounds that modulate its activity. We report several mechanism-based SIRT7 inhibitors as well as de novo cyclic peptide inhibitors selected from mRNA-display library screening that exhibit selectivity for SIRT7 over other sirtuin isoforms and stabilize SIRT7 in cells.

biochemistry↗

Class I Histone Deacetylases (HDAC1-3) are Histone Lysine Delactylases

Lysine O_SCPLOWLC_SCPLOW-lactylation [K(O_SCPLOWLC_SCPLOW-la)] is a newly discovered histone mark that can be stimulated under conditions of high glycolysis, such as the Warburg effect. K(O_SCPLOWLC_SCPLOW-la) is associated with functions that are different from the widely studied histone acetylation. While K(O_SCPLOWLC_SCPLOW-la) can be introduced by the acetyltransferase p300, histone delactylase enzymes remain unknown. Here, we report the systematic evaluation of zinc- and NAD+-dependent HDACs for their ability to cleave {varepsilon}-N-O_SCPLOWLC_SCPLOW-lactyllysine marks. Our screens identified HDACs 1-3 and SIRT1-3 as delactylases in vitro. HDACs 1-3 show robust activity toward not only K(O_SCPLOWLC_SCPLOW-la) but also K(O_SCPLOWDC_SCPLOW-la) and diverse short-chain acyl modifications. We further confirmed the de-O_SCPLOWLC_SCPLOW-lactylase activity of HDACs 1 and 3 in cells. Identification of p300 and HDAC3 as regulatory enzymes suggests that histone lactylation is installed and removed by enzymes as opposed to spontaneous chemical reactivity. Our results therefore represent an important step toward full characterization of this pathways regulatory elements.

biochemistry↗