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Structural coalescence underlies the aggregation propensity of a β-barrel protein motif

机译:结构聚结是β-桶蛋白基序聚集倾向的基础

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摘要

A clear understanding of the structural foundations underlying protein aggregation is an elusive goal of central biomedical importance. A step toward this aim is exemplified by the β-barrel motif represented by the intestinal fatty acid binding protein (IFABP) and two abridged all-β sheet forms (Δ98Δ and Δ78Δ). At odds with the established notion that a perturbation of the native fold should necessarily favor a buildup of intermediate forms with an enhanced tendency to aggregate, the intrinsic stability (ΔG°H2O) of these proteins does not bear a straightforward correlation with their trifluoroethanol (TFE)-induced aggregation propensity. In view of this fact, we found it more insightful to delve into the connection between structure and stability under sub-aggregating conditions (10% TFE). In the absence of the co-solvent, the abridged variants display a common native-like region decorated with a disordered C-terminal stretch. Upon TFE addition, an increase in secondary structure content is observed, assimilating them to the parent protein. In this sense, TFE perturbs a common native like region while exerting a global compaction effect. Importantly, in all cases, fatty acid binding function is preserved. Interestingly, energetic as well as structural diversity in aqueous solution evolves into a common conformational ensemble more akin in stability. These facts reconcile apparent paradoxical findings related to stability and rates of aggregation. This scenario likely mimics the accrual of aggregation-prone species in the population, an early critical event for the development of fibrillation.
机译:对蛋白质聚集基础的结构基础的清楚理解是具有重要的生物医学重要性的目标。朝这个目标迈进的一步是由肠脂肪酸结合蛋白(IFABP)和两种简化的全β片状形式(Δ98Δ和Δ78Δ)代表的β-桶基序。与已经建立的观念相矛盾,即天然折叠的扰动必然会促进中间形式的形成并具有聚集的趋势,这些蛋白质的固有稳定性(ΔG°H2O)与它们的三氟乙醇(TFE)没有直接的关系。 )引起的聚集倾向。鉴于这一事实,我们发现深入研究亚聚集条件(10%TFE)下结构与稳定性之间的联系。在不存在助溶剂的情况下,经简化的变体表现出装饰有无序的C末端伸展的常见的天然样区域。加入TFE后,观察到二级结构含量增加,使它们与亲本蛋白同化。从这个意义上讲,TFE会在施加整体压实效果的同时扰动一个常见的天然样区域。重要的是,在所有情况下,脂肪酸结合功能均得以保留。有趣的是,水溶液中的能量和结构多样性演变成更类似于稳定性的常见构象集合。这些事实调和了与稳定性和聚集速率有关的明显矛盾的发现。这种情况可能模仿人口中易于聚集的物种的积累,这是原纤维形成的早期关键事件。

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