From Pharmacophore to Warhead: NAD <sup>+</sup> ‐Targeting Triazoles as Mechanism‐Based Sirtuin Inhibitors

F Florian Friedrich (Institute of Pharmaceutical Sciences University of Freiburg Albertstr. 25 79104 Freiburg Germany) M Marat Meleshin (Department of Enzymology Charles Tanford Protein Center Institute of Biochemistry and Biotechnology Martin‐Luther‐University of Halle‐Wittenberg Kurt‐Mothes‐Straße 3a 06120 Halle Germany) N Niklas Papenkordt (Institute of Pharmaceutical Sciences University of Freiburg Albertstr. 25 79104 Freiburg Germany) L Lena Gaitzsch (Institute of Pharmaceutical Sciences University of Freiburg Albertstr. 25 79104 Freiburg Germany) I Isabel Prucker M Marco Borso (Biomedical Center, Medizinische Fakultät Ludwigs‐Maximilians Universität Großhaderner Str. 9 Plangegg‐Martinsried 82152 Germany) J Jan Ruprecht (Institute of Pharmaceutical Sciences University of Freiburg Albertstr. 25 79104 Freiburg Germany) C Christopher Vorreiter (Department of Medicinal Chemistry Institute of Pharmacy Martin‐Luther‐University of Halle‐Wittenberg 06120 Halle Germany) S Sabrina Rast (Institute of Pharmaceutical Sciences University of Freiburg Albertstr. 25 79104 Freiburg Germany) L Lin Zhang M Matthias Schiedel (Institute of Medicinal and Pharmaceutical Chemistry Technische Universität Braunschweig Beethovenstraße 55 38106 Braunschweig Germany) W Wolfgang Sippl A Axel Imhof H Henning J. Jessen O Oliver Einsle M Mike Schutkowski M Manfred Jung (Institute of Pharmaceutical Sciences University of Freiburg Albertstr. 25 79104 Freiburg Germany)

Abstract

Abstract Sirtuins (SIRTs) are nicotinamide adenine dinucleotide (NAD + )‐dependent lysine deacylases linked to key physiological and disease processes. Here, we report a new class of mechanism‐based 1,2,3‐triazole inhibitors that hijack SIRT catalysis by forming stalled triazolium– or triazole–ADP‐ribose (ADPR) adducts derived from the cofactor NAD + . These trapped adducts inhibit the enzyme without covalent protein modification, prompting us to term the compounds “Sirtuin Trapping Ligands” (SirTraps). X‐ray crystallography and kinetics, together with mass spectrometry confirming adduct formation both in vitro and in cellulo, reveal that the triazole N3 of peptide‐ and small‐molecule‐based SirTraps triggers nucleophilic attack at C1’ of the nicotinamide riboside moiety of NAD⁺, mimicking the first deacylation step. Adduct formation critically depends on precise triazole positioning within the acyl‐lysine channel and can be tuned through scaffold design, enabling potent and isoform‐selective inhibition. Unlike thiocarbonyl‐based NAD⁺‐targeting SIRT inhibitors, which may suffer from instability and off‐target effects, SirTraps combine high stability, synthetic accessibility, and structural tunability, while demonstrating nanomolar cellular target engagement confirmed by NanoBRET assays. Beyond SIRTs, this inhibition strategy may extend to other NAD⁺‐dependent enzymes, including ADP‐ribosyltransferases, opening new avenues for mechanism‐driven drug discovery.

Article Details

Volume / Issue Vol. 64, Issue 52
Published December 22, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (17)

F

Florian Friedrich

Institute of Pharmaceutical Sciences University of Freiburg Albertstr. 25 79104 Freiburg Germany

M

Marat Meleshin

Department of Enzymology Charles Tanford Protein Center Institute of Biochemistry and Biotechnology Martin‐Luther‐University of Halle‐Wittenberg Kurt‐Mothes‐Straße 3a 06120 Halle Germany

N

Niklas Papenkordt

Institute of Pharmaceutical Sciences University of Freiburg Albertstr. 25 79104 Freiburg Germany

L

Lena Gaitzsch

Institute of Pharmaceutical Sciences University of Freiburg Albertstr. 25 79104 Freiburg Germany

I

Isabel Prucker

M

Marco Borso

Biomedical Center, Medizinische Fakultät Ludwigs‐Maximilians Universität Großhaderner Str. 9 Plangegg‐Martinsried 82152 Germany

J

Jan Ruprecht

Institute of Pharmaceutical Sciences University of Freiburg Albertstr. 25 79104 Freiburg Germany

C

Christopher Vorreiter

Department of Medicinal Chemistry Institute of Pharmacy Martin‐Luther‐University of Halle‐Wittenberg 06120 Halle Germany

S

Sabrina Rast

Institute of Pharmaceutical Sciences University of Freiburg Albertstr. 25 79104 Freiburg Germany

L

Lin Zhang

M

Matthias Schiedel

Institute of Medicinal and Pharmaceutical Chemistry Technische Universität Braunschweig Beethovenstraße 55 38106 Braunschweig Germany

W

Wolfgang Sippl

A

Axel Imhof

H

Henning J. Jessen

O

Oliver Einsle

M

Mike Schutkowski

M

Manfred Jung

Institute of Pharmaceutical Sciences University of Freiburg Albertstr. 25 79104 Freiburg Germany