Publication Date:
2009
abstract:
By a detailed experimental study of THz dynamics in the ribonuclease protein, we could detect
the propagation of coherent collective density fluctuations within the protein hydration shell. The emerging
picture indicates the presence of both a dispersing mode, traveling with a speed greater than 3000 m/s,
and a nondispersing one, characterized by an almost constant energy of 6-7 meV. In agreement with
molecular dynamics simulations [Phys. Rev. Lett. 2002, 89, 275501], the features of the dispersion curves
closely resemble those observed in pure liquid water [Phys. Rev. E: Stat. Phys., Plasmas, Fluids, Relat.
Interdiscip. Top. 2004, 69, 061203]. On the contrary, the observed damping factors are much larger than
in bulk water, with the dispersing mode becoming overdamped at Q ) 0.6 Å-1 already. Such novel
experimental findings are discussed as a dynamic signature of the disordering effect induced by the protein
surface on the local structure of water.
Iris type:
01.01 Articolo in rivista
List of contributors:
Sacchetti, Francesco; Petrillo, Caterina; DE FRANCESCO, Alessio
Published in: