| Literature DB >> 27897362 |
Yuichi Yoshimura1, Nur Alia Oktaviani2, Kento Yonezawa3, Hironari Kamikubo3, Frans A A Mulder1,2.
Abstract
Because arginine residues in proteins are expected to be in their protonated form almost without exception, reports demonstrating that a protein arginine residue is charge-neutral are rare and potentially controversial. Herein, we present a 13 C-detected NMR experiment for probing individual arginine residues in proteins notwithstanding the presence of chemical and conformational exchange effects. In the experiment, the 15 Nη and 15 Nϵ chemical shifts of an arginine head group are correlated with that of the directly attached 13 Cζ . In the resulting spectrum, the number of protons in the arginine head group can be obtained directly from the 15 N-1 H scalar coupling splitting pattern. We applied this method to unambiguously determine the ionization state of the R52 side chain in the photoactive yellow protein from Halorhodospira halophila. Although only three Hη atoms were previously identified by neutron crystallography, we show that R52 is predominantly protonated in solution.Entities:
Keywords: 15N-1H spin-spin coupling; NMR spectroscopy; arginine; cross polarization; photoactive yellow protein
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Year: 2016 PMID: 27897362 DOI: 10.1002/anie.201609605
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336