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短杆菌肽通道肽-脂质界面处运动受限的色氨酸环境。

Motionally restricted tryptophan environments at the peptide-lipid interface of gramicidin channels.

作者信息

Mukherjee S, Chattopadhyay A

机构信息

Centre for Cellular and Molecular Biology, Hyderabad, India.

出版信息

Biochemistry. 1994 May 3;33(17):5089-97. doi: 10.1021/bi00183a012.

Abstract

The tryptophans in the gramicidin channel play a crucial role in the organization and function of the channel. The localization and dynamics of these tryptophans have been studied using fluorescence spectroscopy, especially utilizing environment-induced effects on the rates of solvent relaxation around these residues in membranes. When incorporated into model membranes of dioleoyl-sn-glycero-3-phosphocholine (DOPC), the tryptophans in the gramicidin channel exhibit a red edge excitation shift (REES) of 6 nm. In addition, fluorescence polarization shows both excitation and emission wavelength dependence. Fluorescence lifetime analysis shows a biexponential decay, corresponding to a short- and a long-lifetime component. The mean lifetime was found to be dependent on both excitation and emission wavelengths. Analysis of time-resolved emission spectra (TRES) shows a heterogeneous environment for the tryptophans consistent with the lifetime information. Taken together, these observations point out the motional restriction experienced by the tryptophans in the gramicidin channel. This is consistent with other studies in which such restrictions are thought to be imposed due to hydrogen bonding between the indole rings of the tryptophans and the neighboring lipid carbonyls. The significance of such organization in terms of functioning of the channel is brought out by the fact that substitution, photodamage, or chemical modification of these tryptophans is known to give rise to channels with conformation and reduced conductivity.

摘要

短杆菌肽通道中的色氨酸在通道的结构和功能中起着关键作用。这些色氨酸的定位和动力学已通过荧光光谱法进行了研究,特别是利用环境对膜中这些残基周围溶剂弛豫速率的影响。当掺入二油酰 - sn - 甘油 - 3 - 磷酸胆碱(DOPC)的模型膜中时,短杆菌肽通道中的色氨酸表现出6 nm的红边激发位移(REES)。此外,荧光偏振显示出激发和发射波长依赖性。荧光寿命分析显示出双指数衰减,对应于一个短寿命和一个长寿命成分。发现平均寿命取决于激发和发射波长。时间分辨发射光谱(TRES)分析表明,色氨酸所处的环境具有异质性,这与寿命信息一致。综合这些观察结果表明,短杆菌肽通道中的色氨酸受到运动限制。这与其他研究一致,在这些研究中,人们认为这种限制是由于色氨酸的吲哚环与相邻脂质羰基之间的氢键作用所致。这些色氨酸的取代、光损伤或化学修饰会导致通道构象改变和电导率降低,这一事实凸显了这种结构在通道功能方面的重要性。

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