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Resolution of Two Sub-Populations of Conformers and Their Individual Dynamics by Time Resolved Ensemble Level FRET Measurements

机译:通过时间分辨的集成水平FRET测量来解析共形者的两个子群及其个体动力学

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摘要

Most active biopolymers are dynamic structures; thus, ensembles of such molecules should be characterized by distributions of intra- or intermolecular distances and their fast fluctuations. A method of choice to determine intramolecular distances is based on Förster resonance energy transfer (FRET) measurements. Major advances in such measurements were achieved by single molecule FRET measurements. Here, we show that by global analysis of the decay of the emission of both the donor and the acceptor it is also possible to resolve two sub-populations in a mixture of two ensembles of biopolymers by time resolved FRET (trFRET) measurements at the ensemble level. We show that two individual intramolecular distance distributions can be determined and characterized in terms of their individual means, full width at half maximum (FWHM), and two corresponding diffusion coefficients which reflect the rates of fast ns fluctuations within each sub-population. An important advantage of the ensemble level trFRET measurements is the ability to use low molecular weight small-sized probes and to determine nanosecond fluctuations of the distance between the probes. The limits of the possible resolution were first tested by simulation and then by preparation of mixtures of two model peptides. The first labeled polypeptide was a relatively rigid Pro7 and the second polypeptide was a flexible molecule consisting of (Gly-Ser)7 repeats. The end to end distance distributions and the diffusion coefficients of each peptide were determined. Global analysis of trFRET measurements of a series of mixtures of polypeptides recovered two end-to-end distance distributions and associated intramolecular diffusion coefficients, which were very close to those determined from each of the pure samples. This study is a proof of concept study demonstrating the power of ensemble level trFRET based methods in resolution of subpopulations in ensembles of flexible macromolecules.
机译:大多数活性生物聚合物是动态结构。因此,此类分子的集合体应以分子内或分子间距离的分布及其快速波动为特征。确定分子内距离的一种选择方法是基于Förster共振能量转移(FRET)测量。通过单分子FRET测量实现了此类测量的重大进展。在这里,我们表明,通过整体分析供体和受体发射的衰减,还可以通过集合中的时间分辨FRET(trFRET)测量来解析生物聚合物的两个集合的混合物中的两个子种群。水平。我们表明,可以确定两个单独的分子内距离分布,并根据它们的单独平均值,半峰全宽(FWHM)和两个相应的扩散系数来表征,这两个扩散系数反映了每个子种群中快速ns波动的速率。集成水平trFRET测量的一个重要优点是能够使用低分子量小尺寸探针,并能够确定探针之间距离的纳秒波动。首先通过模拟测试,然后通过制备两种模型肽的混合物来测试可能的分辨率极限。第一个标记的多肽是相对刚性的Pro7,第二个多肽是由(Gly-Ser)7重复序列组成的柔性分子。确定每种肽的端对端距离分布和扩散系数。一系列多肽混合物的trFRET测量的全局分析恢复了两个端到端的距离分布和相关的分子内扩散系数,这与从每个纯样品中测定的非常接近。这项研究是概念研究的证明,它证明了基于集成水平trFRET的方法在解决柔性大分子集合中亚群方面的强大功能。

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