Efficient -tensor determination and NH assignment of paramagnetic proteins


Autoria(s): Schmitz, C.; Johns, R.; Park, Young; Dixon, N. E.; Otting, G.; Pintacuda, G.; Huber, T L
Data(s)

01/01/2006

Resumo

Anisotropic magnetic susceptibility tensors chi of paramagnetic metal ions are manifested in pseudocontact shifts, residual dipolar couplings, and other paramagnetic observables that present valuable long-range information for structure determinations of protein-ligand complexes. A program was developed for automatic determination of the chi-tensor anisotropy parameters and amide resonance assignments in proteins labeled with paramagnetic metal ions. The program requires knowledge of the three-dimensional structure of the protein, the backbone resonance assignments of the diamagnetic protein, and a pair of 2D N-15-HSQC or 3D HNCO spectra recorded with and without paramagnetic metal ion. It allows the determination of reliable chi-tensor anisotropy parameters from 2D spectra of uniformly N-15-labeled proteins of fairly high molecular weight. Examples are shown for the 185-residue N-terminal domain of the subunit epsilon from E. coli DNA polymerase III in complex with the subunit theta and La3+ in its diamagnetic and Dy3+, Tb3+, and Er3+ in its paramagnetic form.

Identificador

http://espace.library.uq.edu.au/view/UQ:79990

Publicador

Springer

Palavras-Chave #Biochemistry & Molecular Biology #Spectroscopy #Chi-tensor Anisotropy Parameters #N-15-hsqc #Program For Chi-tensor Determination #Pseudo-contact Shift #Residual Dipolar Couplings #Nuclear-magnetic-resonance #Dna-polymerase-iii #Pseudocontact Shifts #Molecular-dynamics #Nmr-spectroscopy #Klenow Fragment #Lanthanide Ions #Weak Alignment #Cytochrome-f #C1 #250503 Characterisation of Macromolecules #780105 Biological sciences
Tipo

Journal Article