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Low-energy dynamics and biological function

机译:低能量动力学和生物功能

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Results from QENS experiments using a resolution of 93 mu eV on a biological system are reported. The photocycle of the proton pump bacteriorhodopsin (BR) is known to slow down with decreasing temperature and humidity, a behaviour related to the 'dynamic transition'. We have achieved a separation of the pure thermal activation effect involving the plasticizing action of hydration water, from effects due to the variation of the hydration level on the dynamics of purple membrane (PM) with its integral protein BR, and have correlated this with its ability to function. This demonstrates that the biological function of BR requires molecular dynamics in the ps range. (c) 2006 Elsevier B.V. All rights reserved.
机译:报告了在生物系统上使用93μeV分辨率的QENS实验结果。已知质子泵细菌视紫红质(BR)的光循环会随着温度和湿度的降低而减慢,这与“动态转变”有关。我们已经将纯水活化作用与纯水BR的相互作用与纯水BR对紫色膜(PM)动力学及其完整蛋白BR的影响进行了分离,并将纯水活化作用与纯水活化作用分开功能能力。这表明BR的生物学功能需要在ps范围内的分子动力学。 (c)2006 Elsevier B.V.保留所有权利。

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