Macrocyclic Peptide Probes for Immunomodulatory Protein CD59: Potent Modulators of Bacterial Toxin Activity and Antibody‐Dependent Cytotoxicity

J Jasmine K. Bickel (Department of Chemistry, Molecular Sciences Research Hub Imperial College London London W12 0BZ UK) A Ammar. I. S. Ahmed (Department of Chemistry, Molecular Sciences Research Hub Imperial College London London W12 0BZ UK) A Aidan B. Pidd R Rhodri M. Morgan (Department of Life Sciences, Sir Ernst Chain Building Imperial College London London SW7 2AZ UK) T Tom E. McAllister (Chemistry–School of Natural and Environmental Sciences Newcastle University Newcastle upon Tyne Newcastle NE1 7RU UK) S Sam Horrell E Emma C. Couves H Hemavathi Nagaraj E Edward J. Bartlett (Department of Chemistry, Molecular Sciences Research Hub Imperial College London London W12 0BZ UK) K Kamel el Omari A Akane Kawamura (Chemistry–School of Natural and Environmental Sciences Newcastle University Newcastle upon Tyne Newcastle NE1 7RU UK) D Doryen Bubeck E Edward W. Tate

Abstract

Abstract CD59 is an immunomodulatory cell surface receptor associated with human disease. Despite its importance in complement regulation and bacterial pathogenesis, CD59 remains a challenging therapeutic target. Research to date has focused on antibody or protein‐based strategies. Here we present a new approach to target CD59 using macrocyclic peptides with low nanomolar affinity for CD59. Through X‐ray crystallographic studies and structure‐activity relationship (SAR) studies, we identify key interactions that are essential for binding and activity. We find that the macrocyclic peptide CP‐06 adopts a beta‐hairpin structure and binds CD59 through an intermolecular beta‐sheet, mimicking protein–protein interactions of biologically relevant CD59 interaction partners. We create dimeric and lipidated macrocyclic peptide conjugates as enhanced cell‐active CD59 inhibitors and show that these probes can be used to modulate both complement‐mediated killing of human cells and lytic activity of bacterial virulence factors. Together, our data provide a starting point for future development of macrocyclic peptides to target CD59 activity in diverse cellular contexts.

Article Details

Volume / Issue Vol. 64, Issue 27
Published July 01, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (13)

J

Jasmine K. Bickel

Department of Chemistry, Molecular Sciences Research Hub Imperial College London London W12 0BZ UK

A

Ammar. I. S. Ahmed

Department of Chemistry, Molecular Sciences Research Hub Imperial College London London W12 0BZ UK

A

Aidan B. Pidd

R

Rhodri M. Morgan

Department of Life Sciences, Sir Ernst Chain Building Imperial College London London SW7 2AZ UK

T

Tom E. McAllister

Chemistry–School of Natural and Environmental Sciences Newcastle University Newcastle upon Tyne Newcastle NE1 7RU UK

S

Sam Horrell

E

Emma C. Couves

H

Hemavathi Nagaraj

E

Edward J. Bartlett

Department of Chemistry, Molecular Sciences Research Hub Imperial College London London W12 0BZ UK

K

Kamel el Omari

A

Akane Kawamura

Chemistry–School of Natural and Environmental Sciences Newcastle University Newcastle upon Tyne Newcastle NE1 7RU UK

D

Doryen Bubeck

E

Edward W. Tate