首页> 外文期刊>Journal of Molecular Biology >Transthyretin fibrillogenesis entails the assembly of monomers: a molecular model for in vitro assembled transthyretin amyloid-like fibrils.
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Transthyretin fibrillogenesis entails the assembly of monomers: a molecular model for in vitro assembled transthyretin amyloid-like fibrils.

机译:运甲状腺素蛋白原纤维形成需要单体的组装:体外组装的运甲状腺素蛋白淀粉样样原纤维的分子模型。

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摘要

Extracellular accumulation of transthyretin (TTR) variants in the form of fibrillar amyloid deposits is the pathological hallmark of familial amyloidotic polyneuropathy (FAP). The TTR Leu55Pro variant occurs in the most aggressive forms of this disease. Inhibition of TTR wild-type (WT) and particularly TTR Leu55Pro fibril formation is of interest as a potential therapeutic strategy and requires a thorough understanding of the fibril assembly mechanism. To this end, we report on the in vitro assembly properties as observed by transmission electron microscopy (TEM), atomic force microscopy (AFM) and quantitative scanning transmission electron microscopy (STEM) for both TTR WT fibrils produced by acidification, and TTR Leu55Pro fibrils assembled at physiological pH. The morphological features and dimensions of TTR WT and TTR Leu55Pro fibrils were similar, with up to 300 nm long, 8 nm wide fibrils being the most prominent species in both cases. Other species were evident; 4-5 nm wide fibrils, 9-10 nm wide fibrils and oligomers of various sizes. STEM mass-per-length (MPL) measurements revealed discrete fibril types with masses of 9.5 and 14.0(+/-1.4) KDam for TTR WT fibrils and 13.7, 18.5 and 23.2(+/-1.5) kDam for TTR Leu55Pro fibrils. These MPL values are consistent with a model in which fibrillar TTR structures are composed of two, three, four or five elementary protofilaments, with each protofilament being a vertical stack of structurally modified TTR monomers assembled with the 2.9 nm axial monomer-monomer spacing indicated by X-ray fibre diffraction data. Ex vivo TTR amyloid fibrils were examined. From their morphological appearance compared to these, the in vitro assembled TTR WT and Leu55Pro fibrils examined may represent immature fibrillar species. The in vitro system operating at physiological pH for TTR Leu55Pro and the model presented for the molecular arrangement of TTR monomers within fibrils may, therefore, describe early fibril assembly events in vivo.
机译:甲状腺素原性淀粉样变性多发性神经病(FAP)的病理标志是甲状腺素原纤维蛋白沉积形式的运甲状腺素蛋白(TTR)变体的细胞外积累。 TTR Leu55Pro变体以该疾病的最具攻击性形式出现。抑制TTR野生型(WT),特别是抑制TTR Leu55Pro原纤维形成是潜在的治疗策略,需要彻底了解原纤维组装机制。为此,我们报告了通过透射电子显微镜(TEM),原子力显微镜(AFM)和定量扫描透射电子显微镜(STEM)对酸化产生的TTR WT原纤维和TTR Leu55Pro原纤维观察到的体外组装性能。在生理pH下组装。 TTR WT和TTR Leu55Pro原纤维的形态特征和尺寸相似,两种情况中最突出的物种是最长300 nm,8 nm宽的原纤维。其他种类也很明显。 4-5 nm宽的原纤维,9-10 nm宽的原纤维和各种尺寸的低聚物。 STEM的每长度质量(MPL)测量显示离散的原纤维类型,对于TTR WT为9.5和14.0(+/- 1.4)KDa / nm,对于TTR为13.7、18.5和23.2(+/- 1.5)kDa / nm Leu55Pro原纤维。这些MPL值与其中原纤维TTR结构由两个,三个,四个或五个基本原丝组成的模型一致,每个原丝是垂直堆叠的结构修饰TTR单体,其组装的2.9 nm轴向单体间距为X射线纤维衍射数据。检查了离体TTR淀粉样蛋白原纤维。从与之相比的形态学外观来看,体外组装的TTR WT和Leu55Pro原纤维可能代表了未成熟的原纤维种。因此,在TTR Leu55Pro的生理pH值下运行的体外系统和原纤维中TTR单体分子排列的模型可以描述体内的早期原纤维组装事件。

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