| Literature DB >> 23520002 |
Jan Stanek1, Saurabh Saxena, Leonhard Geist, Robert Konrat, Wiktor Koźmiński.
Abstract
An ultra-high-resolution NMR experiment for the measurement of intraresidue (1)H(i)-(15)N(i)-(13)C'(i) dipolar-chemical shift anisotropy relaxation interference is employed to extract information about local backbone geometries in intrinsically disordered proteins. The study of tumor suppressor BASP1 revealed a population shift of β-turn geometries at low pH conditions and a compaction of the BASP1 structural ensemble.Entities:
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Year: 2013 PMID: 23520002 PMCID: PMC3659411 DOI: 10.1002/anie.201210005
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336
Figure 1F1 (C′)–F2 (Cα) planes from the 4D HNCACO-CCR(C′/NHN) spectrum of cBASP1 at pH 2 (top) and pH 6 (bottom) showing JNH-resolved doublets for threonine 108 residue. Labels for interresidual cross-peaks (irrelevant here) are given in parentheses. Noteworthy is the significant difference in relative intensity of the doublet lines.
Figure 2C′ CSA–NH DD cross-correlated relaxation rates for individual residues of BASP1 at pH 2 (top) and pH 6 (bottom).