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Facial Symmetry in Protein Self-Assembly

机译:蛋白质自组装的面部对称

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Amyloids are self-assembled protein architectures implicated in dozens of misfolding diseases. These assemblies appear to emerge through a "selection" of specific conformational "strains" which nucleate and propagate within cells to cause disease. The short Aβ(16-22) peptide, which includes the central core of the Alzheimer's disease Aβ peptide, generates an amyloid fiber which is morphologically indistinguishable from the full-length peptide fiber, but it can also form other morphologies under distinct conditions. Here we combine spectroscopic and microscopy analyses that reveal the subtle atomic-level differences that dictate assembly of two conformationally pure Aβ(16-22) assemblies, amyloid fibers and nanotubes, and define the minimal repeating unit for each assembly.
机译:淀粉样蛋白是自组装的蛋白质结构,涉及许多错误折叠的疾病。这些组装物似乎是通过特定构象“菌株”的“选择”而出现的,所述特定构象“菌株”在细胞内成核并传播以引起疾病。短的Aβ(16-22)肽(包括阿尔茨海默氏病Aβ肽的核心部分)产生了一种淀粉样蛋白纤维,该蛋白在形态上与全长肽纤维没有区别,但在不同条件下也可以形成其他形态。在这里,我们将光谱和显微镜分析相结合,揭示出细微的原子水平差异,这些差异决定了两个构象纯的Aβ(16-22)组装体,淀粉样蛋白纤维和纳米管的组装,并为每个组装定义了最小重复单元。

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