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High-resolution MAS NMR analysis of PI3-SH3 amyloid fibrils: Backbone conformation and implications for protofilament assembly and structure

机译:pI3-sH3淀粉样蛋白原纤维的高分辨率mas NmR分析:骨架构象及其对原丝组装和结构的影响

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摘要

The SH3 domain of the PI3 kinase (PI3-SH3 or PI3K-SH3) readily aggregates into fibrils in vitro and has served as an important model system in the investigation of the molecular properties and mechanism of formation of amyloid fibrils. We describe the molecular conformation of PI3-SH3 in amyloid fibril form as revealed by magic-angle spinning (MAS) solid-state nuclear magnetic resonance (NMR) spectroscopy. The MAS NMR spectra of these fibrils display excellent resolution, with narrow [superscript 13]C and [superscript 15]N line widths, representing a high degree of structural order and the absence of extensive molecular motion for the majority of the polypeptide chain. We have identified the spin systems of 82 of the 86 residues in the protein and obtained sequential resonance assignments for 75 of them. Chemical shift analysis indicates that the protein subunits making up the fibril adopt a compact conformation consisting of four well-defined β-sheet regions and four random-coil elements with varying degrees of local dynamics or disorder. The backbone conformation of PI3-SH3 in fibril form differs significantly from that of the native state of the protein, both in secondary structure and in the location of dynamic or disordered segments. The site-specific MAS NMR analysis of PI3-SH3 fibrils we report here is compared with previously published mechanistic and structural data, resulting in a detailed interpretation of the factors that mediate fibril formation by PI3-SH3 and allowing us to propose a possible model of the core structure of the fibrils. Our results confirm the structural similarities between PI3-SH3 fibrils
机译:PI3激酶的SH3结构域(PI3-SH3或PI3K-SH3)在体外容易聚集到原纤维中,并且在淀粉样蛋白原纤维的分子性质和形成机理研究中作为重要的模型系统。我们描述了淀粉样淀粉样蛋白形式的PI3-SH3的分子构象,如魔角旋转(MAS)固态核磁共振(NMR)光谱所揭示。这些原纤维的MAS NMR光谱显示出极好的分离度,窄的[上标13] C和[上标15] N的线宽,代表了高度的结构有序性,并且对于大多数多肽链来说,没有广泛的分子运动。我们已经确定了蛋白质中86个残基中的82个残基的自旋系统,并获得了其中75个残基的顺序共振分配。化学位移分析表明,构成原纤维的蛋白亚基采用紧凑构象,由四个明确定义的β-折叠区域和四个随机螺旋元件组成,具有不同程度的局部动力学或无序性。原纤维形式的PI3-SH3的主链构象在二级结构以及动态或无序节段的位置上都与蛋白质的天然状态显着不同。我们在这里报告的PI3-SH3原纤维的位点特异性MAS NMR分析与以前发表的力学和结构数据进行了比较,从而对PI3-SH3介导原纤维形成的因素进行了详细的解释,并允许我们提出一个可能的模型。原纤维的核心结构。我们的结果证实了PI3-SH3原纤维之间的结构相似性

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