Role of the solvent in the dynamical transitions of proteins: The case of the lysozyme-water system

Роль растворителя в динамических переходах белков: пример системы лизоцим—вода
H. Eugene Stanley, Carmelo Corsaro, Vincenza Crupi, Domenico Majolino, Valentina Venuti, Sow‐Hsin Chen, Emiliano Fratini, Piero Baglioni, Francesco Mallamace, Matteo Broccio, Chiara Vannucci
2007-07-28

NMR self-diffusion (DS)OH-stretching vibrationfragile-to-strong dynamic crossoverhydration water dynamicslysozyme-water systemprotein dynamical transitionsprotein unfoldingspin-lattice relaxation time (T1)
We study the dynamics of hydration water in the protein lysozyme in the temperature range 180 K<T<360 K using Fourier-transform-infrared and nuclear magnetic resonance (NMR) spectroscopies. By analyzing the thermal evolution of spectra of the OH-stretching vibration modes and the NMR self-diffusion (DS) and spin-lattice relaxation time (T1), we demonstrate the existence of two dynamical transitions in the protein hydration water. Below the first transition, at about 220 K, the hydration water displays an unambiguous fragile-to-strong dynamic crossover, resulting in the loss of the protein conformational flexibility. Above the second transition, at about 346 K, where the protein unfolds, the dynamics of the hydration water appears to be dominated by the non-hydrogen-bonded fraction of water molecules.
1
At about 220 K hydration water undergoes a fragile-to-strong dynamic crossover correlated with loss of protein conformational flexibility.
2
At about 346 K a second transition coincides with protein unfolding and hydration dynamics dominated by non-hydrogen-bonded water molecules.
3
Fourier-transform-infrared OH-stretch spectra and NMR self-diffusion (DS) and spin-lattice relaxation time (T1) measurements jointly reveal these temperature-dependent dynamical changes.
4
Two distinct dynamical transitions are observed in lysozyme hydration water between 180 K and 360 K.

Hydration water in the protein lysozyme (lysozyme–water system)

Temperature-dependent dynamical transitions of the hydration water: fragile-to-strong crossover near 220 K, loss of protein conformational flexibility, and high-temperature dynamics dominated by non-hydrogen-bonded water near 346 K, characterized by OH-stretching IR spectra and NMR (self-diffusion D_S and T1)

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2007-07-28
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H. Eugene Stanley
Carmelo Corsaro
Vincenza Crupi
Domenico Majolino
Valentina Venuti
Sow‐Hsin Chen
Emiliano Fratini
Piero Baglioni
Francesco Mallamace
Matteo Broccio
Chiara Vannucci
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