| Literature DB >> 23190348 |
Jose-Enrique Herbert-Pucheta1, Monique Chan-Huot, Luminita Duma, Daniel Abergel, Geoffrey Bodenhausen, Liliane Assairi, Yves Blouquit, Jean-Baptiste Charbonnier, Piotr Tekely.
Abstract
Insight into structural and motional features of the C-terminal part of the Human Centrin 2 in complex with the peptide P17-XPC was obtained by using complementary solid-state NMR methods. We demonstrate that the experimental conditions and procedures of sample crystallization determine the quality of solid-state NMR spectra and the internal mobility of the protein. Two-dimensional (2D) (13)C-(13)C and (15)N-(15)N correlation spectra reveal intra- and inter-residue dipolar connectivities and provide partial, site-specific assignments of (13)C and (15)N resonance signals. The secondary structure of the C-ter HsCen2/P17-XPC complex in a microcrystalline state appears similar to that found in solution. Conformational flexibility is probed through relaxation-compensated measurements of dipolar order parameters that exploit the dynamics of cross-polarization in multidimensional experiments. The extracted dipolar coupling constants and relevant order parameters reveal increased backbone flexibility of the loops except for residues involved in coordination with the Ca(2+) cation that stabilizes the hydrophobic pocket containing the peptide P17-XPC.Entities:
Mesh:
Substances:
Year: 2012 PMID: 23190348 DOI: 10.1021/jp3099472
Source DB: PubMed Journal: J Phys Chem B ISSN: 1520-5207 Impact factor: 2.991