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Cross-seeding and Conformational Selection between Three- and Four-repeat Human Tau Proteins

机译:三重复和四重复人类Tau蛋白之间的交叉播种和构象选择

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摘要

In Alzheimer's disease and frontotemporal dementias, the microtubule-associated protein Tau forms intracellular paired helical filaments. The filaments can form not only by the full-length human Tau protein, but also by the three repeated (K19) or four repeated (K18) Tau segments. However, of interest, experimentally, K19 can seed K18, but not vice versa. To obtain insight into the cross-seeding between K18 and K19 aggregates, here, K18 and K19 octamers with repeat 3 (R3) in U-shaped, L-shaped, and long straight line-shaped (SL-shape) conformations are assembled into different structures. The simulation results show that K18-8/K19-8 (K18 and K19 assemblies number 8) with R3 in an L shape and K18-9/K19-9 with R3 in an SL shape are highly populated and present the highest structural similarity among all simulated K18 and K19 octamers, suggesting that similar folding of K18/K19 may serve as structural core for the K18-K19 co-assembled heterogeneous filament. We demonstrate that formation of stable R2 and R3 conformations is the critical step for K18 aggregation, and R3 is critical for K19 fibrillization. The different core units in K18 and K19 may create a cross-seeding barrier for the K18 seed to trigger K19 fibril growth because R2 is not available for K19. Our study provides insights into cross-seeding involving heterogeneous structures. The polymorphic nature of protein aggregation could be magnified in the cross-seeding process. If the seeding conformations lead to too much divergence in the energy landscape, it could impede fibril formation. Such an effect could also contribute to the asymmetric barrier between K18 and K19.
机译:在阿尔茨海默氏病和额颞痴呆中,微管相关蛋白Tau形成细胞内成对的螺旋丝。这些细丝不仅可以由全长的人Tau蛋白形成,而且可以由三个重复的(K19)或四个重复的(K18)Tau片段形成。但是,有趣的是,实验上K19可以播种K18,反之则不行。为了了解K18和K19聚合体之间的交叉播种,此处将具有重复3(R3),U形,L形和长直线形(SL形)构型的K18和K19八聚体组装成不同的结构。仿真结果表明,具有R3呈L形的K18-8 / K19-8(K18和K19组件编号8)和具有R3呈SL形的K18-9 / K19-9都具有很高的填充率,并且在结构相似性方面最高所有模拟的K18和K19八聚体均表明,K18 / K19的相似折叠可充当K18-K19共组装异质丝的结构核心。我们证明形成稳定的R2和R3构象是K18聚集的关键步骤,而R3对K19的原纤维化至关重要。 K18和K19中不同的核心单元可能会为K18种子形成交叉播种障碍,从而触发K19的原纤维生长,因为R2无法用于K19。我们的研究提供了对涉及异质结构的交叉播种的见解。蛋白质聚集的多态性可以在交叉播种过程中得到放大。如果种子构象导致能量分布差异太大,则可能会阻止原纤维形成。这种效应也可能导致K18和K19之间的不对称势垒。

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