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Single-molecule fluorescence spectroscopy maps the folding landscape of a large protein

机译:单分子荧光光谱图绘制了大蛋白的折叠图

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Proteins attain their function only after folding into a highly organized three-dimensional structure. Much remains to be learned about the mechanisms of folding of large multidomain proteins, which may populate metastable intermediate states on their energy landscapes. Here we introduce a novel method, based on high-throughput single-molecule fluorescence experiments, which is specifically geared towards tracing the dynamics of folding in the presence of a plethora of intermediates. We employ this method to characterize the folding reaction of a three-domain protein, adenylate kinase. Using thousands of single-molecule trajectories and hidden Markov modelling, we identify six metastable states on adenylate kinase's folding landscape. Remarkably, the connectivity of the intermediates depends on denaturant concentration; at low concentration, multiple intersecting folding pathways co-exist. We anticipate that the methodology introduced here will find broad applicability in the study of folding of large proteins, and will provide a more realistic scenario of their conformational dynamics.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:蛋白质只有折叠成高度组织的三维结构后才能发挥其功能。关于大的多域蛋白折叠的机制,仍有许多知识要学习,这些折叠机制可能会在其能量分布中构成亚稳态的中间状态。在这里,我们介绍一种基于高通量单分子荧光实验的新颖方法,该方法专门用于在存在大量中间体的情况下跟踪折叠的动力学。我们采用这种方法来表征三域蛋白腺苷酸激酶的折叠反应。使用成千上万的单分子轨迹和隐式马尔可夫模型,我们在腺苷酸激酶的折叠态中确定了六个亚稳态。值得注意的是,中间体的连通性取决于变性剂的浓度。在低浓度下,多个相交的折叠途径共存。我们预计,这里介绍的方法将在大蛋白折叠的研究中找到广泛的适用性,并将为它们的构象动力学提供更现实的方案。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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