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首页> 外文期刊>Prostaglandins, Leukotrienes, and Essential Fatty Acids >Insights from biophysical studies on the role of polyunsaturated fatty acids for function of G-protein coupled membrane receptors.
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Insights from biophysical studies on the role of polyunsaturated fatty acids for function of G-protein coupled membrane receptors.

机译:生物物理研究对多不饱和脂肪酸对G蛋白偶联膜受体功能的作用的见解。

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摘要

The composition of the lipid matrix is critical for function of membrane proteins. Perhaps one of the best studied examples is the function of the G-protein-coupled membrane receptor (GPCR) rhodopsin which is located in membranes with high content of phospholipids with polyunsaturated docosahexaenoic acid chains (DHA, 22:6n-3). Technological advances enabled a more detailed study of structure and dynamics of DHA chains and their interaction with rhodopsin. It was established that polyunsaturated DHA differs from saturated and monounsaturated hydrocarbon chains by far more rapid structural conversions. Furthermore, DHA chains tend to have higher density near the lipid/water interface while density of saturated chains is higher in the bilayer center. The interface of rhodopsin has a small number of sites for tighter interaction with DHA. Polyunsaturated phosphatidylethanolamines accumulate preferentially near the protein. Surprisingly, the high conformational freedom of most DHA chains is not measurably reduced upon interaction with rhodopsin. While some observations point at an involvement of continuum elastic properties of membranes in modulation of rhodopsin function, there is growing evidence for a role of weakly specific DHA-rhodopsin interactions.
机译:脂质基质的组成对于膜蛋白的功能至关重要。也许研究得最好的例子之一是G蛋白偶联膜受体(GPCR)视紫红质的功能,该视紫红质位于具有多不饱和二十二碳六烯酸链的高磷脂含量的膜中(DHA,22:6n-3)。技术的进步使人们对DHA链的结构和动力学及其与视紫红质的相互作用进行了更详细的研究。已经确定,多不饱和DHA与饱和和单不饱和烃链的区别在于其结构转化要快得多。此外,DHA链往往在脂质/水界面附近具有较高的密度,而在双层中心,饱和链的密度较高。视紫红质的界面上有少量位点与DHA相互作用更紧密。多不饱和磷脂酰乙醇胺优先聚集在蛋白质附近。令人惊讶地,与视紫红质相互作用时,大多数DHA链的高构象自由度没有被测量到降低。尽管一些观察结果表明膜的连续弹性特性参与视紫红质功能的调节,但越来越多的证据表明弱特异性DHA-视紫红质相互作用的作用。

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