首页> 美国卫生研究院文献>Biophysical Journal >Site-specific tryptophan dynamics in class A amphipathic helical peptides at a phospholipid bilayer interface.
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Site-specific tryptophan dynamics in class A amphipathic helical peptides at a phospholipid bilayer interface.

机译:磷脂双层界面上A类两亲性螺旋肽的位点特异性色氨酸动力学。

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摘要

The amphipathic helix plays a key role in many membrane-associating peptides and proteins. The dynamics of helices on membrane surfaces might be of importance to their function. The fluorescence anisotropy decay of tryptophan is a sensitive indicator of local, segmental, and global dynamics within a peptide or protein. We describe the use of frequency domain dynamic depolarization measurements to determine the site-specific tryptophan dynamics of single tryptophan amphipathic peptides bound to a phospholipid surface. The five 18-residue peptides studied are based on a class A amphipathic peptide that is known to associate at the interface of phospholipid bilayers. The peptides contain a single tryptophan located at positions 2, 3, 7, 12, or 14 in the sequence. Association of the peptides with egg phosphatidylcholine vesicles results in complex behavior of both the tryptophan intensity decay and the anisotropy decay. The anisotropy decays were biphasic and were fitted to an associated model where each lifetime component in the intensity decay is associated with a particular rotational correlation time from the anisotropy decay. In contrast, an unassociated model where all components of the intensity decay share common rotational modes was unable to provide an adequate fit to the data. Two correlation times were resolved from the associated analysis: one whose contribution to the anisotropy decay was dependent on the exposure of the tryptophan to the aqueous phase, and the other whose contribution reflected the position of the tryptophan in the sequence. The results are compared with existing x-ray structural data and molecular dynamics simulations of membrane-incorporated peptides.
机译:两亲性螺旋在许多与膜相关的肽和蛋白质中起关键作用。膜表面螺旋的动力学对其功能可能很重要。色氨酸的荧光各向异性衰减是肽或蛋白质内局部,分段和整体动力学的敏感指示。我们描述了使用频域动态去极化测量来确定结合到磷脂表面的单个色氨酸两亲性肽的位点特异性色氨酸动力学。研究的五个18个残基肽基于已知在磷脂双层界面处缔合的A类两亲肽。肽包含位于序列中2、3、7、12或14位的单个色氨酸。肽与卵磷脂酰胆碱囊泡的缔合导致色氨酸强度衰减和各向异性衰减两者的复杂行为。各向异性衰减是双相的,并拟合到关联的模型,其中强度衰减中的每个寿命分量都与来自各向异性衰减的特定旋转相关时间关联。相比之下,强度衰减的所有分量共享相同旋转模式的非关联模型无法为数据提供足够的拟合。从关联分析中解析出两个相关时间:一个时间对各向异性衰减的贡献取决于色氨酸在水相中的暴露,另一个时间反映了色氨酸在序列中的位置。将结果与现有的X射线结构数据和膜结合肽的分子动力学模拟进行比较。

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