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The effects of viscosity on gramicidin tryptophan rotational motion.

机译:粘度对短杆菌肽色氨酸旋转运动的影响。

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摘要

The rotational amplitude of gramicidin tryptophans was investigated as a function of temperature and viscosity in a variety of solvents using fluorescence spectroscopy. In 80% glycerol-ethanol, gramicidin behavior was similar to that of alpha helical globular proteins. In dioleoyl-phosphatidylcholine (DOPC) and egg-phosphatidylcholine bilayers, the rotational amplitude of the tryptophans remained constant from 5 degrees to 40 degrees C due to the large number of tryptophans participating in intermolecular aromatic ring stacking. In gel phase dimyristoyl-phosphatidylcholine (DMPC), the tryptophan rotations likewise do not respond to temperature and viscosity changes, presumably because of a combination of Trp 9 and 15 stacking and the high viscosity of the membrane. In fluid phase DMPC, stacking becomes disrupted as the temperature increases causing the change in tryptophan amplitude with temperature to be greater than allowed by the membrane. In n-octylglucoside micelles, ring interactions are also broken with heat. We conclude that membrane viscosity regulates both inter- and intramolecular gramicidin interactions but not in a straightforward manner.
机译:在多种溶剂中,使用荧光光谱法研究了短杆菌肽色氨酸的旋转幅度与温度和粘度的关系。在80%的甘油-乙醇中,短杆菌肽的行为类似于α螺旋球蛋白。在二油酰基磷脂酰胆碱(DOPC)和蛋磷脂酰胆碱双层中,由于大量色氨酸参与分子间芳香环堆叠,因此色氨酸的旋转幅度在5摄氏度至40摄氏度之间保持恒定。在凝胶相中,二豆蔻酰磷脂酰胆碱(DMPC)的色氨酸旋转同样不响应温度和粘度变化,这可能是由于Trp 9和15堆积以及膜的高粘度共同造成的。在液相DMPC中,随着温度的升高,堆叠变得混乱,色氨酸振幅随温度的变化大于膜所允许的变化。在正辛基葡萄糖苷胶束中,环的相互作用也会因加热而断裂。我们得出的结论是,膜粘度调节分子间和分子内的短杆菌肽相互作用,但不是直接的方式。

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