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  4. Peptide secondary structure modulates single-walled carbon nanotube fluorescence as a chaperone sensor for nitroaromatics
 
research article

Peptide secondary structure modulates single-walled carbon nanotube fluorescence as a chaperone sensor for nitroaromatics

Heller, Daniel A.
•
Pratt, George W.
•
Zhang, Jingqing
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2011
Proceedings Of The National Academy Of Sciences Of The United States Of America (PNAS)

A class of peptides from the bombolitin family, not previously identified for nitroaromatic recognition, allows near-infrared fluorescent single-walled carbon nanotubes to transduce specific changes in their conformation. In response to the binding of specific nitroaromatic species, such peptide-nanotube complexes form a virtual "chaperone sensor," which reports modulation of the peptide secondary structure via changes in single-walled carbon nanotubes, near-infrared photoluminescence. A split-channel microscope constructed to image quantized spectral wavelength shifts in real time, in response to nitroaromatic adsorption, results in the first single-nanotube imaging of solvatochromic events. The described indirect detection mechanism, as well as an additional exciton quenching-based optical nitroaromatic detection method, illustrate that functionalization of the carbon nanotube surface can result in completely unique sites for recognition, resolvable at the single-molecule level.[on SciFinder (R)]

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Type
research article
DOI
10.1073/pnas.1005512108
Author(s)
Heller, Daniel A.
Pratt, George W.
Zhang, Jingqing
Nair, Nitish
Hansborough, Adam J.
Boghossian, Ardemis A.  
Reuel, Nigel F.
Barone, Paul W.
Strano, Michael S.
Date Issued

2011

Published in
Proceedings Of The National Academy Of Sciences Of The United States Of America (PNAS)
Volume

108

Start page

8544

End page

8549

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
LNB  
Available on Infoscience
March 3, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/111840
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