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research article

Long-Lived States to Monitor Protein Unfolding by Proton NMR

Bornet, Aurélien  
•
Ahuja, Puneet  
•
Sarkar, Riddhiman  
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2011
ChemPhysChem

The relaxation of long-lived states (LLS) corresponds to the slow return to statistical thermal equilibrium between symmetric and antisymmetric proton spin states. This process is remarkably sensitive to the presence of external spins and can be used to obtain information about partial unfolding of proteins. We detected the appearance of a destabilized conformer of ubiquitin when urea is added to the protein in its native state. This conformer shows increased mobility in the C-terminus, which significantly extends the lifetimes of proton LLS magnetisation in Ser-65. These changes could not be detected by conventional measurements of T-1 and T-2 relaxation times of protons, and would hardly be sensed by carbon-13 or nitrogen-15 relaxation measurements. Conformers with similar dynamic and structural features, as revealed by LLS relaxation times, could be observed, in the absence of urea, in two ubiquitin mutants, L67S and L69S.

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Type
research article
DOI
10.1002/cphc.201100365
Web of Science ID

WOS:000297017600009

Author(s)
Bornet, Aurélien  
•
Ahuja, Puneet  
•
Sarkar, Riddhiman  
•
Fernandes, Laetitia
•
Hadji, Sonia
•
Lee, Shirley Y.
•
Haririnia, Aydin
•
Fushman, David
•
Bodenhausen, Geoffrey  
•
Vasos, Paul R.  
Date Issued

2011

Publisher

Wiley-Blackwell

Published in
ChemPhysChem
Volume

12

Issue

15

Start page

2729

End page

2734

Subjects

long-lived states

•

mutations

•

NMR spectroscopy

•

proteins

•

singlet states

•

Atomic-Resolution

•

Hydrophobic Core

•

Chemical-Shifts

•

Spin Systems

•

Ubiquitin

•

Spectroscopy

•

Relaxation

•

Dynamics

•

Recognition

•

Stability

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LRMB  
Available on Infoscience
November 22, 2011
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/72746
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