Dynamical Transition of Collective Motions in Dry Proteins.
Author | |
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Abstract | :
Water is widely assumed to be essential for protein dynamics and function. In particular, the well-documented "dynamical" transition at ∼200 K, at which the protein changes from a rigid, nonfunctional form to a flexible, functional state, as detected in hydrogenated protein by incoherent neutron scattering, requires hydration. Here, we report on coherent neutron scattering experiments on perdeuterated proteins and reveal that a transition occurs in dry proteins at the same temperature resulting primarily from the collective heavy-atom motions. The dynamical transition discovered is intrinsic to the energy landscape of dry proteins. |
Year of Publication | :
2017
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Journal | :
Physical review letters
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Volume | :
119
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Issue | :
4
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Number of Pages | :
048101
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Date Published | :
2017
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ISSN Number | :
0031-9007
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URL | :
http://link.aps.org/abstract/PRL/v119/p048101
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DOI | :
10.1103/PhysRevLett.119.048101
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Short Title | :
Phys Rev Lett
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