Design, structure-based optimization and antiviral evaluation of potent inhibitors for the macrodomain Mac1 of SARS-CoV-2

M Maximilian Sandmann S Sahra Tajdar S Simon Sander D David Ruiz Carrillo B Benedikt Ganter C Celine Fischer M Marina Ocenas S Stefanie Etzold N Neele Pekarek J Julia Berger T Toni Luise Meister (Department for Molecular and Medical Virology, Ruhr University Bochum) B Barbara Selisko B Bruno Canard J Joanna M. Watt O Ondřej Baszczyňski B Barry VL Potter M Maria Garcia Alai T Tidow Henning P Pfefferle Susanne C Chris Meier R Ralf Fliegert

Abstract

Abstract Enzymatically active macrodomains of (+)ss-RNA viruses mediate immune evasion by countering ADP-ribosylation and are therefore promising druggable targets. Here we report testing of ADP / ADP-ribose analogues for their ability to inhibit Mac1 of SARS-CoV-2, measurement of the affinity of active compounds and characterization of their binding mode by cocrystallization, uncovering critical molecular determinants of protein-ligand interaction. Key findings of the resulting structure-activity relationship (SAR) include that inhibitory potency is improved by either replacing the distal ribose of ADP-ribose by a small alkyl group or the adenine N7 by carbon. Based on insights from the SAR, we show β-methyl-GS-441524-diphosphate as nanomolar inhibitor that exhibits >1000-fold selectivity over human MacroD1 and MacroD2. Addition of C 11 -acyloxybenzyl (AB)-masking groups yields a membrane permeable, lipophilic prodrug that inhibits SARS-CoV-2 in cell culture (EC 50 0.06 µM) while exhibiting low cytotoxicity (CC 50  > 50 µM). Replacement of the terminal methyl phosphate with an ethyl phosphonate increases stability of the prodrug with little effect on toxicity and antiviral potency (EC 50  = 0.03 µM), making it a membrane-permeable nucleotide-based prodrug against viral macrodomains.

Article Details

Volume / Issue Vol. 17, Issue 1
Published July 27, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (21)

M

Maximilian Sandmann

S

Sahra Tajdar

S

Simon Sander

D

David Ruiz Carrillo

B

Benedikt Ganter

C

Celine Fischer

M

Marina Ocenas

S

Stefanie Etzold

N

Neele Pekarek

J

Julia Berger

T

Toni Luise Meister

Department for Molecular and Medical Virology, Ruhr University Bochum

B

Barbara Selisko

B

Bruno Canard

J

Joanna M. Watt

O

Ondřej Baszczyňski

B

Barry VL Potter

M

Maria Garcia Alai

T

Tidow Henning

P

Pfefferle Susanne

C

Chris Meier

R

Ralf Fliegert