Photoswitchable Peptides as Molecular Tools to Encode Structural Order and Disorder in Intracellular Assemblies

J Julian Link (Max Planck Institute for Polymer Research Ackermannweg 10 55128 Mainz Germany) L Luca Burg (Center for Soft Nanoscience Universität Münster Busso‐Peus‐Strasse 10 48149 Münster Germany) S Sarah Chagri (Max Planck Institute for Polymer Research Ackermannweg 10 55128 Mainz Germany) H Ha‐Chi Nguyen (Max Planck Institute for Polymer Research Ackermannweg 10 55128 Mainz Germany) D David Y.W. Ng (Max Planck Institute for Polymer Research Ackermannweg 10 D‐55128 Mainz Germany) B Bart Jan Ravoo T Tanja Weil

Abstract

Abstract Understanding how self‐assembled structure formation affects cells remains a central challenge in supramolecular chemistry. However, chemical tools that allow access to both ordered and disordered intracellular assemblies from a single molecular scaffold are rare due to design complexity. Here, we present a photoswitchable isotripeptide incorporating an arylazopyrazole (AAP) unit, which undergoes intracellular cleavage to yield a self‐assembling monomer. Upon photoisomerization, the planar trans ‐isomer forms β ‐sheet‐rich nanofibers with strong aromatic interactions, while the non‐planar cis ‐isomer assembles into disordered, random‐coil aggregates lacking aromatic contribution. The structural dynamics of the assemblies are demonstrated by repeated photoswitching between the two states in buffered conditions. Notably, A549 cancer cell viability correlates with the isomer‐dependent assembly behavior and critical aggregation concentrations (CACs): the trans ‐isomer, with higher aggregation propensity, exhibits greater cytotoxicity. This photoswitchable peptide system thus provides a powerful platform with fast, reversible and robust switching kinetics, long isomer half‐lives, and high photostability to probe the intracellular consequences of supramolecular order and disorder using a single molecular scaffold.

Article Details

Volume / Issue Vol. 65, Issue 3
Published January 16, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (7)

J

Julian Link

Max Planck Institute for Polymer Research Ackermannweg 10 55128 Mainz Germany

L

Luca Burg

Center for Soft Nanoscience Universität Münster Busso‐Peus‐Strasse 10 48149 Münster Germany

S

Sarah Chagri

Max Planck Institute for Polymer Research Ackermannweg 10 55128 Mainz Germany

H

Ha‐Chi Nguyen

Max Planck Institute for Polymer Research Ackermannweg 10 55128 Mainz Germany

D

David Y.W. Ng

Max Planck Institute for Polymer Research Ackermannweg 10 D‐55128 Mainz Germany

B

Bart Jan Ravoo

T

Tanja Weil