Cryogenic “Iodide-Tagging” Photoelectron Spectroscopy: A Sensitive Probe for Specific Binding Sites of Amino Acids
Author(s) -
Han-Hui Zhang,
Wenjin Cao,
Qinqin Yuan,
Xiaoguo Zhou,
Marat Valiev,
Steven R. Kass,
XueBin Wang
Publication year - 2020
Publication title -
the journal of physical chemistry letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.563
H-Index - 203
ISSN - 1948-7185
DOI - 10.1021/acs.jpclett.0c01099
Subject(s) - iodide , chemistry , x ray photoelectron spectroscopy , electrospray ionization , spectroscopy , cluster (spacecraft) , molecule , binding energy , ion , ionization , crystallography , inorganic chemistry , organic chemistry , nuclear magnetic resonance , atomic physics , physics , quantum mechanics , computer science , programming language
This work showcases cryogenic and temperature-dependent "iodide-tagging" photoelectron spectroscopy to probe specific binding sites of amino acids using the glycine-iodide complex (Gly·I - ) as a case study. Multiple Gly·I - isomers were generated from ambient electrospray ionization and kinetically isolated in a cryogenic ion trap. These structures were characterized with temperature-dependent "iodide-tagging" negative ion photoelectron spectroscopy (NIPES), where iodide was used as the "messenger" to interpret electronic energetics and structural information of various Gly·I - isomers. Accompanied by theoretical computations and Franck-Condon simulations, a total of five cluster structures have been identified along with their various binding motifs. This work demonstrates that "iodide-tagging" NIPES is a powerful general means for probing specific binding interactions in biological molecules of interest.
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