Collective THz dynamics in living Escherichia coli cells

被引:15
作者
Sebastiani, F. [1 ,2 ]
Orecchini, A. [1 ,2 ,3 ]
Paciaroni, A. [1 ,2 ]
Jasnin, M. [4 ]
Zaccai, G. [3 ]
Moulin, M. [5 ]
Haertlein, M. [5 ]
De Francesco, A. [6 ]
Petrillo, C. [1 ,2 ]
Sacchetti, F. [1 ,2 ]
机构
[1] Univ Perugia, Dipartimento Fis, I-06123 Perugia, Italy
[2] Univ Perugia, Dipartimento Fis, CNR, Ist Officina Mat,Unita Perugia, I-06123 Perugia, Italy
[3] Inst Max Von Laue Paul Langevin, F-38042 Grenoble, France
[4] Max Planck Inst Biochem, D-82152 Martinsried, Germany
[5] Inst Max Von Laue Paul Langevin, Deuterat Lab, F-38042 Grenoble, France
[6] Inst Max Von Laue Paul Langevin, Unita Grenoble, CNR, Ist Officina Mat, F-38042 Grenoble, France
关键词
In vivo biomolecular dynamics; Picosecond collective density fluctuations; Brillouin neutron scattering; IN-VIVO; NMR-SPECTROSCOPY; HYDRATION; SCATTERING; WATER; STABILITY; SOUND; SPECTROMETER; TRANSITION; DIFFUSION;
D O I
10.1016/j.chemphys.2013.06.020
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We have employed neutron Brillouin spectroscopy to study coherent collective density fluctuations in the biological macromolecular components of living Escherichia coli cells. To highlight the contribution of the macromolecular material alone, a suitably prepared mixture of light and heavy water was exploited to cancel the scattering length of intracellular water. The present results indicate that the cellular biomaterial sustains THz coherent density fluctuations, characterised by a propagating mode travelling at about 3600 m/s and by a localised mode at energies between 4 and 7 meV. A comparison with both hydration water and simpler biomolecules, such as proteins or DNA, brings further support to the idea that the dynamical coupling between biomolecular structures and biological water provides the delicate dynamical adaptation needed to achieve a full biological functionality. Finally, the behaviour of the damping factors of the observed collective modes strengthens the dynamical similarity of biological systems with glass-forming materials. (C) 2013 Elsevier B. V. All rights reserved.
引用
收藏
页码:84 / 88
页数:5
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