Saouessi_2019_J.Chem.Phys_150_161104

Reference

Title : Asymptotic analysis of quasielastic neutron scattering data from human acetylcholinesterase reveals subtle dynamical changes upon ligand binding - Saouessi_2019_J.Chem.Phys_150_161104
Author(s) : Saouessi M , Peters J , Kneller GR
Ref : J Chem Phys , 150 :161104 , 2019
Abstract :

In this paper, we show that subtle changes in the internal dynamics of human acetylcholinesterase upon ligand binding can be extracted from quasielastic neutron scattering data by employing a nonexponential relaxation model for the intermediate scattering function. The relaxation is here described by a stretched Mittag-Leffler function, which exhibits slow power law decay for long times. Our analysis reveals that binding of a Huperzine A ligand increases the atomic motional amplitudes of the enzyme and slightly slows down its internal diffusive motions. This result is interpreted within an energy landscape picture for the motion of the hydrogen atoms.

PubMedSearch : Saouessi_2019_J.Chem.Phys_150_161104
PubMedID: 31042885

Related information

Citations formats

Saouessi M, Peters J, Kneller GR (2019)
Asymptotic analysis of quasielastic neutron scattering data from human acetylcholinesterase reveals subtle dynamical changes upon ligand binding
J Chem Phys 150 :161104

Saouessi M, Peters J, Kneller GR (2019)
J Chem Phys 150 :161104