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General structural motifs of amyloid protofilaments

机译:淀粉样蛋白原丝的一般结构基序

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摘要

Human CA150, a transcriptional activator, binds to and is co-deposited with huntingtin during Huntington's disease. The second WW domain of CA150 is a three-stranded beta-sheet that folds in vitro in microseconds and forms amyloid fibers under physiological conditions. We found from exhaustive alanine scanning studies that fibrillation of this WW domain begins from its denatured conformations, and we identified a subset of residues critical for fibril formation. We used high-resolution magic-angle-spinning NMR studies on site-specific isotopically labeled fibrils to identify abundant long-range interactions between side chains. The distribution of critical residues identified by the alanine scanning and NMR spectroscopy, along with the electron microscopy data, revealed the protofilament repeat unit: a 26-residue nonnative-beta-hairpin. The structure we report has similarities to the hairpin formed by the A((1-40))(beta) protofilament, yet also contains closely packed side-chains in a "steric zipper" arrangement found in the cross-beta spine formed from small peptides from the Sup35 prion protein. Fibrillation of unrelated amyloidogenic sequences shows the common feature of zippered repeat units that act as templates for fiber elongation.
机译:人CA150是一种转录激活因子,在亨廷顿舞蹈病期间与亨廷顿蛋白结合并共同沉积。 CA150的第二个WW域是一个三链β-折叠,在体外在微秒内折叠并在生理条件下形成淀粉样纤维。我们从详尽的丙氨酸扫描研究中发现,该WW域的原纤维化始于其变性构象,并且我们鉴定了对原纤维形成至关重要的残基子集。我们对位点特异性同位素标记的原纤维进行了高分辨率的魔角旋转NMR研究,以鉴定侧链之间丰富的远距离相互作用。通过丙氨酸扫描和NMR光谱鉴定的关键残基的分布以及电子显微镜数据揭示了原丝重复单元:26个残基的非天然β-发夹。我们报告的结构与由A((1-40))β原型丝形成的发夹相似,但在由小小的形成的beta脊柱中发现的“立体拉链”排列中也包含紧密堆积的侧链Sup35 ion病毒蛋白的多肽。不相关的淀粉样蛋白生成序列的原纤化显示了拉链重复单元的共同特征,这些重复单元充当纤维伸长的模板。

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