Proton momentum distribution in a protein hydration shell

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Abstract

The momentum distribution of protons in the hydration shell of a globular protein has been measured through deep inelastic neutron scattering at 180 and 290 K, below and above the crossover temperature Tc=1.23Tg, where Tg=219K is the glass transition temperature. It is found that the mean kinetic energy of the water hydrogens shows no temperature dependence, but the measurements are accurate enough to indicate a sensible change of momentum distribution and effective potential felt by protons, compatible with the transition from a single to a double potential well. This could support the presence of tunneling effects even at room temperature, playing an important role in biological function. © 2007 The American Physical Society.

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Senesi, R., Pietropaolo, A., Bocedi, A., Pagnotta, S. E., & Bruni, F. (2007). Proton momentum distribution in a protein hydration shell. Physical Review Letters, 98(13). https://doi.org/10.1103/PhysRevLett.98.138102

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