Issue 5, 2013

Highly fluorescent peptidenanoribbon impregnated with Sn-porphyrin as a potent DNA sensor

Abstract

Highly fluorescent and thermo-stable peptide nanoribbons (PNRs) were fabricated by solvothermal self-assembly of a single peptide (D,D-diphenyl alanine peptides) with Sn-porphyrin (trans-dihydroxo[5,10,15,20-tetrakis(p-tolyl)porphyrinato] Sn(IV) (SnTTP(OH)2)). The structural characterization of the as-prepared nanoribbons was performed by transmitting electron microscopy (TEM), scanning electron microscopy (SEM) and atomic force microscopy (AFM), FT-IR and Raman spectroscopy, indicating that the lipophilic Sn-porphyrins are impregnated into the porous surface formed in the process of nanoribbon formation through intermolecular hydrogen bonding of the peptide main chains. Consequently the Sn-porphyrin-impregnated peptide nanoribbons (Sn-porphyrin-PNRs) exhibited typical UV-visible absorption spectrum of the monomer porphyrin with a red shifted Q-band, and their fluorescence quantum yield was observed to be enhanced compared to that of free Sn-porphyrin. Interestingly the fluorescence intensity and lifetimes of Sn-porphyrin-PNRs were selectively affected upon interaction with nucleotide base sequences of DNA while those of free Sn-porphyrins were not affected by binding with any of the DNA studied, indicating that DNA-induced changes in the fluorescence properties of Sn-porphyrin-PNRs are due to interaction between DNA and the PNR scaffold. These results imply that Sn-porphyrin-PNR will be useful as a potent fluorescent protein analogue and as a biocompatible DNA sensor.

Graphical abstract: Highly fluorescent peptide nanoribbon impregnated with Sn-porphyrin as a potent DNA sensor

Supplementary files

Article information

Article type
Paper
Submitted
09 Oct 2012
Accepted
07 Jan 2013
First published
08 Jan 2013

Photochem. Photobiol. Sci., 2013,12, 798-804

Highly fluorescent peptide nanoribbon impregnated with Sn-porphyrin as a potent DNA sensor

S. K. Parayil, J. Lee and M. Yoon, Photochem. Photobiol. Sci., 2013, 12, 798 DOI: 10.1039/C3PP25337F

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