A Well‐Coupled Supramolecular System Accelerates Photophosphorylation.
Published In: Angewandte Chemie, 2025, v. 137, n. 5. P. 1 1 of 3
Database: Academic Search Ultimate 2 of 3
Authored By: Li, Zibo; Yu, Fanchen; Wang, Shuhao; Cai, Yuyang; Xu, Yang; Li, Yue; Fei, Jinbo; Li, Junbai 3 of 3
Abstract
Supramolecular assembly allows multiple chemical/bio‐components integrated as one system for cascade biochemical reactions. Herein the graphitic carbon nitrides (g‐C3N4) as photocatalyst trapped in a dipeptide hydrogel covering adenosine triphosphate (ATP) synthase accelerates the photophosphorylation through ATP synthesis. Self‐assembled N‐fluorenylmethoxycarbonyl diphenylalanine (Fmoc‐FF) as nanofibrils to allow g‐C3N4 nanosheets are embedded as a complex Fmoc‐FF/g‐C3N4 hydrogel. Fmoc‐FF gel exhibits good electronic coupling with g‐C3N4, which enables a photo‐induced proton generation. The transmembrane proton gradient can be established by ATP synthase‐lipid reconstituted on the surface of the Fmoc‐FF/g‐C3N4 hydrogel to enhance the ATP synthesis. It indicates that the Fmoc‐FF/g‐C3N4/ATP synthase‐lipid film can possess a longer‐term ATP production capability and allow repeated immersion for sustained ATP production. Such a hydrogel‐supported ATP synthesis platform is achieved by a procedure at a larger scale. [ABSTRACT FROM AUTHOR]
Additional Information
- Source:Angewandte Chemie. 2025/01, Vol. 137, Issue 5, p1
- Document Type:Article
- Subject Area:Biology
- Publication Date:2025
- ISSN:0044-8249
- DOI:10.1002/ange.202417474
- Accession Number:183755506
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