Fast Structure-Based Assignment of 15N HSQC Spectra of Selectively 15N-Labeled Paramagnetic Proteins


Autoria(s): Pintacuda, Guido; Keniry, Max A.; Huber, Thomas; Park, Ah Young; Dixon, Nicholas E.; Otting, Gottfried
Contribuinte(s)

P. Stang

Data(s)

13/02/2004

Resumo

A novel strategy for fast NMR resonance assignment of N-15 HSQC spectra of proteins is presented. It requires the structure coordinates of the protein, a paramagnetic center, and one or more residue-selectively N-15-labeled samples. Comparison of sensitive undecoupled N-15 HSQC spectra recorded of paramagnetic and diamagnetic samples yields data for every cross-peak on pseudocontact shift, paramagnetic relaxation enhancement, cross-correlation between Curie-spin and dipole-dipole relaxation, and residual dipolar coupling. Comparison of these four different paramagnetic quantities with predictions from the three-dimensional structure simultaneously yields the resonance assignment and the anisotropy of the susceptibility tensor of the paramagnetic center. The method is demonstrated with the 30 kDa complex between the N-terminal domain of the epsilon subunit and the theta subunit of Escherichia Coll DNA polymerase III. The program PLATYPUS was developed to perform the assignment, provide a measure of reliability of the assignment, and determine the susceptibility tensor anisotropy.

Identificador

http://espace.library.uq.edu.au/view/UQ:23655

Idioma(s)

eng

Publicador

American Chemical Society

Palavras-Chave #NMR resonance #DNA-polymerase-III #Chemistry, Multidisciplinary #Residual Dipolar Couplings #Escherichia-coli #Pseudocontact Shifts #Cross-correlation #Molecular-dynamics #Alignment Tensors #Nmr-spectroscopy #Epsilon-subunit #250303 Physical Organic Chemistry #250699 Theoretical and Computational Chemistry not elsewhere classified #250502 Physical Chemistry of Macromolecules #250503 Characterisation of Macromolecules
Tipo

Journal Article