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  4. Proton-detected 3D N-15/H-1/H-1 isotropic/anisotropic/isotropic chemical shift correlation solid-state NMR at 70 kHz MAS
 
research article

Proton-detected 3D N-15/H-1/H-1 isotropic/anisotropic/isotropic chemical shift correlation solid-state NMR at 70 kHz MAS

Pandey, Manoj Kumar
•
Yarava, Jayasubba Reddy
•
Zhang, Rongchun
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2016
Solid State Nuclear Magnetic Resonance

Chemical shift anisotropy (CSA) tensors offer a wealth of information for structural and dynamics studies of a variety of chemical and biological systems. In particular, CSA of amide protons can provide piercing insights into hydrogen-bonding interactions that vary with the backbone conformation of a protein and dynamics. However, the narrow span of amide proton resonances makes it very difficult to measure H-1 CSAs of proteins even by using the recently proposed 2D H-1/H-1 anisotropic/isotropic chemical shift (CSA/CS) correlation technique. Such difficulties due to overlapping proton resonances can in general be overcome by utilizing the broad span of isotropic chemical shifts of low-gamma nuclei like N-15. In this context, we demonstrate a proton-detected 3D N-15/H-1/H-1 CS/CSA/CS correlation experiment at fast MAS frequency (70 kHz) to measure 1H CSA values of unresolved amide protons of N-acetyl-N-15-L-valyl-N-15-L-leucine (NAVL). (C) 2016 Elsevier Inc. All rights reserved.

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Type
research article
DOI
10.1016/j.ssnmr.2016.03.001
Web of Science ID

WOS:000377871900001

Author(s)
Pandey, Manoj Kumar
Yarava, Jayasubba Reddy
Zhang, Rongchun
Ramamoorthy, Ayyalusamy
Nishiyama, Yusuke
Date Issued

2016

Publisher

Academic Press Inc Elsevier Science

Published in
Solid State Nuclear Magnetic Resonance
Volume

76-77

Start page

1

End page

6

Subjects

Solid-state NMR

•

Ultrafast MAS

•

H-1 CSA

•

Amide proton

•

3D NMR

•

peptide

•

H-1 detection

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
ISIC  
Available on Infoscience
July 19, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/127626
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