首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Interactions of Tyrosine in Leu-Enkephalin at a Membrane-Water Interface: An Ultrafast Two-Dimensional Infrared Study Combined with Density Functional Calculations and Molecular Dynamics Simulations
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Interactions of Tyrosine in Leu-Enkephalin at a Membrane-Water Interface: An Ultrafast Two-Dimensional Infrared Study Combined with Density Functional Calculations and Molecular Dynamics Simulations

机译:膜-水界面中亮氨酸脑啡肽中酪氨酸的相互作用:结合密度泛函计算和分子动力学模拟的超快速二维红外研究

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The interactions of neuropeptides and membranes play an important role in peptide hormone function. Our current understanding of peptide-membrane interactions remains limited due to the paucity of experimental techniques capable of probing such interactions. In this work, we study the nature of opioid peptide-membrane interactions using ultrafast two-dimensional infrared (2D IR) spectroscopy. The high temporal resolution of 2D IR is particularly suited for studying highly flexible opioid peptides. We investigate the location of the tyrosine (Tyr) side chain of leucine-enkephalin (Lenk) in lipid bilayer membranes by measuring spectral diffusion of the phenolic ring vibrational mode in three different systems: Lenk in lipid bilayer membranes (bicelles), Lenk in deuterated water, and p-cresol in deuterated water. Frequency-frequency correlation functions obtained from waiting-time-dependent 2D IR spectra reveal an ultrafast decaying component with an ~1 ps time constant that is common for all three systems. On the basis of density functional theory calculations and molecular dynamics simulations, this spectral diffusion component is attributed to hydrogen-bond dynamics of the phenolic hydroxyl group interacting with bulk water. Unlike p-cresol in water, both Lenk systems exhibit static spectral inhomogeneity, which can be attributed to conformational distributions of Lenk that do not interconvert within 4 ps. Our results suggest that the Tyr side chain of Lenk in bicelles is located at the water-abundant region at the merabrane-water interface and not embedded into the hydrophobic core.
机译:神经肽和膜的相互作用在肽激素功能中起重要作用。由于缺乏能够探测这种相互作用的实验技术,我们目前对肽-膜相互作用的理解仍然受到限制。在这项工作中,我们使用超快速二维红外(2D IR)光谱研究了阿片类肽-膜相互作用的性质。 2D IR的高时间分辨率特别适合于研究高度柔性的阿片肽。我们通过测量三种不同系统中酚环振动模式的光谱扩散来研究亮氨酸-脑啡肽(Lenk)酪氨酸(Tyr)侧链在脂质双层膜中的位置:脂质双层膜(Bicelles)中的Lenk,氘代的Lenk水和对甲酚在重水中。从依赖于等待时间的2D红外光谱获得的频率-频率相关函数揭示了一个超快的衰减成分,其时间常数为〜1 ps,这对于所有三个系统都是相同的。根据密度泛函理论计算和分子动力学模拟,该光谱扩散成分归因于与大量水相互作用的酚羟基的氢键动力学。与水中的对甲酚不同,两种Lenk系统均表现出静态光谱不均匀性,这可以归因于Lenk的构象分布,该构象分布在4 ps内不相互转换。我们的结果表明,Link在单体中的Tyr侧链位于膜-水界面的富水区域,而不是嵌入疏水核中。

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