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Efficiency of Resonance Energy Transfer in Homo-Oligomeric Complexes of Proteins

机译:蛋白质同源寡聚复合物中共振能量转移的效率

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摘要

A theoretical model is proposed for the apparent efficiency of fluorescence (F?rster) resonance energy transfer (FRET) in mixtures of free monomers and homo-oligomeric protein complexes of uniform size. The model takes into account possible pathways for transfer of optical excitations from single donors to multiple acceptors and from multiple donors (non-simultaneously) to single acceptors. This necessary departure from the standard theory has been suggested in the literature, but it has only been successfully implemented for a few particular cases, such as for particular geometries of the oligomers. The predictions of the present theoretical model differ significantly from those of the standard theory, with the exception of the case of dimers, for which agreement is observed. This model therefore provides new insights into the FRET behavior of oligomers comprising more than two monomers, and also suggests means for determining the size of oligomeric protein complexes as well as the proportion of associated and unassociated monomers.
机译:提出了一种理论模型,用于在游离单体和均一大小的均聚低聚蛋白复合物的混合物中,荧光(弗斯特)共振能量转移(FRET)的表观效率。该模型考虑了将光激发从单个供体转移到多个受体以及从多个供体(非同时)转移到单个受体的可能途径。在文献中已经提出了与标准理论的这种必要偏离,但是仅在一些特定情况下,例如对于低聚物的特定几何形状,才成功地实现了该偏离。当前的理论模型的预测与标准理论的预测有很大不同,除了二聚体的情况除外,对此可以观察到一致。因此,该模型为包含两种以上单体的寡聚物的FRET行为提供了新的见解,并提出了确定寡聚蛋白复合物大小以及缔合和非缔合单体比例的手段。

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