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FRET Study of Membrane Proteins: Simulation-Based Fitting for Analysis of Membrane Protein Embedment and Association

机译:膜蛋白的FRET研究:基于模拟的膜蛋白嵌入和缔合分析拟合

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摘要

A new formalism for the simultaneous determination of the membrane embedment and aggregation of membrane proteins is developed. This method is based on steady-state Förster (or fluorescence) resonance energy transfer (FRET) experiments on site-directed fluorescence labeled proteins in combination with global data analysis utilizing simulation-based fitting. The simulation of FRET was validated by a comparison with a known analytical solution for energy transfer in idealized membrane systems. The applicability of the simulation-based fitting approach was verified on simulated FRET data and then applied to determine the structural properties of the well-known major coat protein from bacteriophage M13 reconstituted into unilamellar DOPC/DOPG (4:1 mol/mol) vesicles. For our purpose, the cysteine mutants Y24C, G38C, and T46C of this protein were produced and specifically labeled with the fluorescence label AEDANS. The energy transfer data from the natural tryptophan at position 26, which is used as a donor, to AEDANS were analyzed assuming a helix model for the transmembrane domain of the protein. As a result of the FRET data analysis, the topology and bilayer embedment of this domain were quantitatively characterized. The resulting tilt of the transmembrane helix of the protein is 18 ± 2°. The tryptophan is located at a distance of 8.5 ± 0.5 Å from the membrane center. No specific aggregation of the protein was found. The methodology developed here is not limited to M13 major coat protein and can be used in principle to study the bilayer embedment of any small protein with a single transmembrane domain.
机译:建立了一种同时测定膜蛋白包埋和聚集的新形式主义。该方法基于定点荧光标记蛋白的稳态Förster(或荧光)共振能量转移(FRET)实验,并结合基于模拟的拟合进行的全局数据分析。通过与理想的膜系统中能量转移的已知分析解决方案进行比较,对FRET的仿真进行了验证。在模拟的FRET数据上验证了基于模拟的拟合方法的适用性,然后将其用于确定重组为单层DOPC / DOPG(4:1 mol / mol)囊泡的噬菌体M13中著名的主要外壳蛋白的结构特性。为了我们的目的,产生了该蛋白的半胱氨酸突变体Y24C,G38C和T46C,并用荧光标记AEDANS进行了特异性标记。假定蛋白质的跨膜结构域为螺旋模型,分析了从第26位天然色氨酸(用作供体)到AEDANS的能量转移数据。 FRET数据分析的结果是,对该域的拓扑结构和双层嵌入进行了定量表征。蛋白质的跨膜螺旋的倾斜度为18±2°。色氨酸与膜中心的距离为8.5±0.5Å。没有发现蛋白质的特异性聚集。这里开发的方法不仅限于M13主要外壳蛋白,而且原则上可以用于研究具有单个跨膜结构域的任何小蛋白的双层包埋。

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