High-resolution methyl edited GFT NMR experiments for protein resonance assignments and structure determination

Jaipuria, Garima ; Thakur, Anushikha ; D’Silva, Patrick ; Atreya, Hanudatta S. (2010) High-resolution methyl edited GFT NMR experiments for protein resonance assignments and structure determination Journal of Biomolecular NMR, 48 (3). pp. 137-145. ISSN 0925-2738

Full text not available from this repository.

Official URL: http://doi.org/10.1007/s10858-010-9444-6

Related URL: http://dx.doi.org/10.1007/s10858-010-9444-6

Abstract

Three-dimensional (3D) structure determination of proteins is benefitted by long-range distance constraints comprising the methyl groups, which constitute the hydrophobic core of proteins. However, in methyl groups (of Ala, Ile, Leu, Met, Thr and Val) there is a significant overlap of 13C and 1H chemical shifts. Such overlap can be resolved using the recently proposed (3,2)D HCCH-COSY, a G-matrix Fourier transform (GFT) NMR based experiment, which facilitates editing of methyl groups into distinct spectral regions by combining their 13C chemical shifts with that of the neighboring, directly attached, 13C nucleus. Using this principle, we present three GFT experiments: (a) (4,3)D NOESY-HCCH, (b) (4,3)D1H-TOCSY-HCCH and (c) (4,3)D13C-TOCSY-HCCH. These experiments provide unique 4D spectral information rapidly with high sensitivity and resolution for side-chain resonance assignments and NOE analysis of methyl groups. This is exemplified by (4,3)D NOESY-HCCH data acquired for 17.9 kDa non-deuterated cytosolic human J-protein co-chaperone, which provided crucial long-range distance constraints for its 3D structure determination.

Item Type:Article
Source:Copyright of this article belongs to Springer-Verlag.
ID Code:137017
Deposited On:10 Sep 2025 12:21
Last Modified:10 Sep 2025 12:21

Repository Staff Only: item control page