High-resolution quasielastic neutron scattering spectroscopy was used to measure H(2)O and D(2)O hydrated RNA samples. The contribution of scattering from RNA was subtracted out by taking the difference of the signals between the two samples. The measurements were made at a series of temperatures from 270 K down to 180 K. The relaxing-cage model was used to analyze the difference quasielastic spectra. We observed clear evidence of a fragile-to-strong dynamic crossover (FSC) at T(L)=220 K in RNA hydration water. We further show that the mean-square displacements of the hydrogen atoms in both RNA and its hydration water exhibit a sharp change in slope at approximately the same temperature 220 K. This latter fact suggests that the dynamic transition in RNA is triggered by the abrupt change of mobility of the hydration water at its FSC temperature. Selected by Virtual Journal of Biological Physics Research. http://www.vjbio.org/ (1 Febbrary 2008)
Observation of a Dynamic Crossover in RNA Hydration Water which Triggers the Dynamic Transition in the Biopolymer / X. CHU; E. FRATINI; P. BAGLIONI; A. FARAONE; S.-H. CHEN. - In: PHYSICAL REVIEW E, STATISTICAL, NONLINEAR, AND SOFT MATTER PHYSICS. - ISSN 1539-3755. - STAMPA. - 77:(2008), pp. 011908-1-011908-6. [10.1103/PhysRevE.77.011908]
Observation of a Dynamic Crossover in RNA Hydration Water which Triggers the Dynamic Transition in the Biopolymer
FRATINI, EMILIANO;BAGLIONI, PIERO;
2008
Abstract
High-resolution quasielastic neutron scattering spectroscopy was used to measure H(2)O and D(2)O hydrated RNA samples. The contribution of scattering from RNA was subtracted out by taking the difference of the signals between the two samples. The measurements were made at a series of temperatures from 270 K down to 180 K. The relaxing-cage model was used to analyze the difference quasielastic spectra. We observed clear evidence of a fragile-to-strong dynamic crossover (FSC) at T(L)=220 K in RNA hydration water. We further show that the mean-square displacements of the hydrogen atoms in both RNA and its hydration water exhibit a sharp change in slope at approximately the same temperature 220 K. This latter fact suggests that the dynamic transition in RNA is triggered by the abrupt change of mobility of the hydration water at its FSC temperature. Selected by Virtual Journal of Biological Physics Research. http://www.vjbio.org/ (1 Febbrary 2008)I documenti in FLORE sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.



