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Structural fluctuations of a helical polypeptide traversing a lipid bilayer.

机译:穿越脂质双层的螺旋多肽的结构波动。

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摘要

Time-resolved fluorescence anisotropy (FA) measurements are reported for five helical bilayer-spanning henicosapeptides, each containing one tryptophan at sequence position 1, 6, 11, 16, or 21. The FA decay reflects two molecular processes in all cases: local internal fluctuations of the tryptophan side chain with a relaxation time of 200-500 ps, and motions of the whole polypeptide molecule with a relaxation time of 9-10 ns. The amplitudes of the fast fluctuation are largest at the helix ends and decrease toward the center of the helix. A similar observation was made for the helical polypeptides dissolved in organic solvents showing that the mobility gradient along the polypeptide sequence is an inherent property of the polypeptide helix and not due to the lipid bilayer. However, the amplitudes of the fast fluctuations can be modulated by the physical state of the lipid bilayer. With decreasing temperature, the internal mobility of the tryptophan in all positions decreases with an abrupt change at the lipid-phase transition. Concomitant molecular dynamics calculations indicate a correlation between the fast FA decay and conformational fluctuations within the helix. According to the simulation, the conformation of the polypeptide is on average predominantly helical, but actually the molecule can fluctuate between a variety of different substructures. The conformational fluctuations are largest at the helix ends and provide the free space required for rotation of the indole ring around the tryptophan side chain bonds.
机译:报告了时间分辨的荧光各向异性(FA)测量结果,涉及五个螺旋跨层的半肽,每个肽在序列位置1、6、11、16或21处包含一个色氨酸。在所有情况下,FA衰减都反映了两个分子过程:局部内部色氨酸侧链的波动具有200-500 ps的松弛时间,整个多肽分子的运动具有9-10 ns的松弛时间。快速波动的幅度在螺旋末端最大,并向螺旋中心减小。对于溶解在有机溶剂中的螺旋多肽进行了类似的观察,表明沿着多肽序列的迁移率梯度是多肽螺旋的固有特性,而不是由于脂质双层所致。但是,快速波动的幅度可以通过脂质双层的物理状态来调节。随着温度的降低,色氨酸在所有位置的内部迁移率均在脂质相变处发生突然变化而降低。伴随的分子动力学计算表明快速FA衰变和螺旋内构象波动之间存在相关性。根据模拟,多肽的构型平均主要是螺旋的,但是实际上分子可以在多种不同的亚结构之间波动。构象波动在螺旋末端最大,并提供吲哚环绕色氨酸侧链键旋转所需的自由空间。

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