| Literature DB >> 26796542 |
Sebastian Peuker1, Hanna Andersson1, Emil Gustavsson1, Kiran Sankar Maiti1, Rafal Kania1, Alavi Karim1, Stephan Niebling1, Anders Pedersen2, Mate Erdelyi1, Sebastian Westenhoff1.
Abstract
Vibrational spectra contain unique information on protein structure and dynamics. However, this information is often obscured by spectral congestion, and site-selective information is not available. In principle, sites of interest can be spectrally identified by isotope shifts, but site-specific isotope labeling of proteins is today possible only for favorable amino acids or with prohibitively low yields. Here we present an efficient cell-free expression system for the site-specific incorporation of any isotope-labeled amino acid into proteins. We synthesized 1.6 mg of green fluorescent protein with an isotope-labeled tyrosine from 100 mL of cell-free reaction extract. We unambiguously identified spectral features of the tyrosine in the fingerprint region of the time-resolved infrared absorption spectra. Kinetic analysis confirmed the existence of an intermediate state between photoexcitation and proton transfer that lives for 3 ps. Our method lifts vibrational spectroscopy of proteins to a higher level of structural specificity.Entities:
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Year: 2016 PMID: 26796542 DOI: 10.1021/jacs.5b12680
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419