Amyloid Peptide Nanofibrils Promote Efficient Neurotransmitter Oxidation and Serve as Scaffolds for Melanin Production

I Inhye Kim (Department of Chemistry and Biochemistry Baylor University One Bear Place Waco TX 76798 USA) L Liam R. Marshall (Department of Chemistry and Biochemistry Baylor University One Bear Place Waco TX 76798 USA) S Shams Aaghaz (Department of Chemistry and Biochemistry Baylor University One Bear Place Waco TX 76798 USA) Y Yang Li H Ho Yee Joyce Fung (Department of Biophysics) I Ivan V. Korendovych (Department of Chemistry and Biochemistry Baylor University One Bear Place Waco TX 76798 USA)

Abstract

Abstract We have shown that de novo designed peptides self‐assemble in the presence of copper to create supramolecular assemblies capable of carrying out the oxidation of a range of neurotransmitters in the presence of dioxygen and hydrogen peroxide with high efficiency and in a sequence dependent manner. Moreover, these catalytic peptide assemblies are capable of templating melanin production. Guided by the structure activity relationships identified using the model systems we discovered that peptide assemblies formed by fragments of human carbonic anhydrase VII found in the brain also promote neurotransmitter degradation, supporting its role in neurodegenerative disease. Altogether, our results further support the role of metal‐promoted catalysis in neurodegenerative disease and will facilitate development of new catalyst nanomaterials capable of promoting oxidative transformation.

Article Details

Volume / Issue Vol. 64, Issue 44
Published October 27, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

I

Inhye Kim

Department of Chemistry and Biochemistry Baylor University One Bear Place Waco TX 76798 USA

L

Liam R. Marshall

Department of Chemistry and Biochemistry Baylor University One Bear Place Waco TX 76798 USA

S

Shams Aaghaz

Department of Chemistry and Biochemistry Baylor University One Bear Place Waco TX 76798 USA

Y

Yang Li

H

Ho Yee Joyce Fung

Department of Biophysics

I

Ivan V. Korendovych

Department of Chemistry and Biochemistry Baylor University One Bear Place Waco TX 76798 USA