Protein resonance assignment by solid-state NMR based on H-detected C double-quantum spectroscopy at fast MAS.

J Biomol NMR

CNRS, Chemistry and Biology of Membranes and Nanoobjects (CBMN), UMR 5348, Institut Europeen de Chimie et Biologie (IECB), University of Bordeaux, 33600, Pessac, France.

Published: December 2021

Solid-state NMR spectroscopy is a powerful technique to study insoluble and non-crystalline proteins and protein complexes at atomic resolution. The development of proton (H) detection at fast magic-angle spinning (MAS) has considerably increased the analytical capabilities of the technique, enabling the acquisition of H-detected fingerprint experiments in few hours. Here an approach based on double-quantum (DQ) C spectroscopy, detected on H, is proposed for fast MAS regime (> 60 kHz) to perform the sequential assignment of insoluble proteins of small size, without any specific deuteration requirement. By combining two three-dimensional H detected experiments correlating a C DQ dimension respectively to its intra-residue and sequential  N-H pairs, a sequential walk through DQ (Ca + CO) resonance is obtained. The approach takes advantage of fast MAS to achieve an efficient sensitivity and the addition of a DQ dimension provides spectral features useful for the resonance assignment process.

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Source
http://dx.doi.org/10.1007/s10858-021-00386-6DOI Listing

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