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蛋白质-脂类-水体系动力学剖析:用标记 BADAN 在特定膜深研究模型膜蛋白的时间分辨荧光研究。

Profiling of dynamics in protein-lipid-water systems: a time-resolved fluorescence study of a model membrane protein with the label BADAN at specific membrane depths.

机构信息

Laboratory of Biophysics, Wageningen University, 6703 HA Wageningen, The Netherlands.

出版信息

Eur Biophys J. 2010 Mar;39(4):647-56. doi: 10.1007/s00249-009-0538-6. Epub 2009 Sep 16.

Abstract

Profiles of lipid-water bilayer dynamics were determined from picosecond time-resolved fluorescence spectra of membrane-embedded BADAN-labeled M13 coat protein. For this purpose, the protein was labeled at seven key positions. This places the label at well-defined locations from the water phase to the center of the hydrophobic acyl chain region of a phospholipid model membrane, providing us with a nanoscale ruler to map membranes. Analysis of the time-resolved fluorescence spectroscopic data provides the characteristic time constant for the twisting motion of the BADAN label, which is sensitive to the local flexibility of the protein-lipid environment. In addition, we obtain information about the mobility of water molecules at the membrane-water interface. The results provide an unprecedented nanoscale profiling of the dynamics and distribution of water in membrane systems. This information gives clear evidence that the actual barrier of membranes for ions and aqueous solvents is located at the region of carbonyl groups of the acyl chains.

摘要

从嵌入脂质双层的 BADAN 标记 M13 衣壳蛋白的皮秒时间分辨荧光光谱中确定了脂质-水双层的动态特性。为此,在七个关键位置对该蛋白进行了标记。这将标记放置在磷脂模型膜的水相到疏水性酰基链区域中心的明确定义的位置,为我们提供了一个纳米级的标尺来绘制膜。对时间分辨荧光光谱数据的分析提供了 BADAN 标记扭转运动的特征时间常数,该常数对蛋白-脂质环境的局部灵活性敏感。此外,我们还获得了关于膜-水界面处水分子迁移率的信息。研究结果提供了膜系统中水分子动态和分布的空前的纳米级剖析。该信息清楚地表明,对于离子和水溶剂,膜的实际屏障位于酰基链的羰基区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ab8/2841254/2432c695ed8b/249_2009_538_Fig1_HTML.jpg

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