Issue 31, 2024

Design of C2-symmetric pseudopeptides for in vivo detection of Cu(ii) through controlled supramolecular nano-assembly

Abstract

Pseudopeptides are emerging next-generation soft bioinspired materials for biological applications. Therefore, a new class of C2-symmetric L-valine-derived pseudopeptides has been designed and developed. The newly developed pseudopeptides exhibit intracellular Cu(II) ion detection in live-cell fluorescence studies on RAW264.7 cells. We find that the changes in the amino acid side chain in desired pseudopeptidic moieties lead to a drastic change in their selectivity towards different metal ions. The L-valine-derived pseudopeptides exhibit selectivity towards Cu(II) ions through turn-off fluorescence, and the L-phenylalanine-derived pseudopeptides exhibit selectivity towards Zn(II) ions through turn-on fluorescence. In addition, the L-valine-derived pseudopeptides show an increase in spherical-shaped structures upon incubation with Cu(II) ions during supramolecular nano-assembly formation. In contrast, the L-phenylalanine-derived pseudopeptides show a decrease in spherical-shaped structures upon adding Zn(II) ions. The judiciously designed L-valine-derived and L-phenylalanine-derived bioinspired pseudopeptides are promising for exploring similar effects in various peptidomimetics in advanced biological applications.

Graphical abstract: Design of C2-symmetric pseudopeptides for in vivo detection of Cu(ii) through controlled supramolecular nano-assembly

Supplementary files

Article information

Article type
Paper
Submitted
17 Jun 2024
Accepted
17 Jul 2024
First published
18 Jul 2024

Org. Biomol. Chem., 2024,22, 6409-6418

Design of C2-symmetric pseudopeptides for in vivo detection of Cu(II) through controlled supramolecular nano-assembly

A. Tamrakar, S. Asthana, P. Kumar, N. Garg and M. D. Pandey, Org. Biomol. Chem., 2024, 22, 6409 DOI: 10.1039/D4OB01011F

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