Influence of Enantiomeric Inhibitors on the Dynamics of Acetylcholinesterase Measured by Elastic Incoherent Neutron Scattering

The scattering of neutrons can be used to provide information on the structure and dynamics of biological systems on multiple length and time scales. Pursuant to a National Science Foundation-funded workshop in February 2018, recent developments in this field are reviewed here, as well as future pro...

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Veröffentlicht in:The journal of physical chemistry. B 2018-09, Vol.122 (36), p.8516-8525
Hauptverfasser: Ashkar, Rana, Bilheux, Hassina, Bordallo, Heliosa, Briber, Robert, Callaway, David, Cheng, Xiaolin, Chu, Xiang-Qiang, Curtis, Joseph, Dadmun, Mark, Fenimore, Paul, Fushman, David, Gabel, Frank, Gupta, Kushol, Herberle, Frederick, Heinrich, Frank, Hong, Liang, Katsaras, John, Kelman, Zvi, Kharlampieva, Eugenia, Kneller, Gerald, Kovalevsky, Andrey, Krueger, Susan, Langan, Paul, Lieberman, Raquel, Liu, Yun, Losche, Mathias, Lyman, Edward, Mao, Yimin, Marino, John, Mattos, Carla, Meilleur, Flora, Moody, Peter, Nickels, Jonathan, O'Dell, William, O'Neill, Hugh, Perez-Salas, Ursula, Peters, Judith, Petridis, Loukas, Sokolov, Alexei, Stanley, Christopher, Wagner, Norman, Weinrich, Michael, Weiss, Kevin, Wymore, Troy, Zhang, Yang, Smith, Jeremy
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Sprache:eng
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Zusammenfassung:The scattering of neutrons can be used to provide information on the structure and dynamics of biological systems on multiple length and time scales. Pursuant to a National Science Foundation-funded workshop in February 2018, recent developments in this field are reviewed here, as well as future prospects that can be expected given recent advances in sources, instrumentation and computational power and methods. Crystallography, solution scattering, dynamics, membranes, labeling and imaging are examined. For the extraction of maximum information, the incorporation of judicious specific deuterium labeling, the integration of several types of experiment, and interpretation using high-performance computer simulation models are often found to be particularly powerful.
ISSN:1520-6106
1520-5207
DOI:10.1021/acs.jpcb.8b05485