化学
纤维
生物物理学
蛋白质聚集
铁蛋白
圆二色性
手性(物理)
淀粉样蛋白(真菌学)
生物化学
生物
夸克
Nambu–Jona Lasinio模型
手征对称破缺
量子力学
物理
无机化学
作者
Rocío Jurado,Jozef Adamčík,Miguel López‐Haro,Juan A. González‐Vera,Alvaro Ruiz‐Arias,Antoni Sánchez‐Ferrer,Rafael Cuesta,José M. Domínguez‐Vera,José J. Calvino,Ángel Orte,Raffaele Mezzenga,Natividad Gálvez
摘要
Ferritin, a soluble and highly robust protein with subunits packed into well-defined helices, is a key component of the iron regulatory system in the brain and thus is widely recognized as a crucial protein for iron metabolism, but may also bear possible implications in some neurodegenerative disorders. Here, we present evidence of how human recombinant apoferritin can convert into an unusual structure from its folded native state; that is, amyloid fibrils analogue to those found in pathological disorders such as Alzheimer's and Parkinson's diseases. An extensive combination of advanced microscopy, spectroscopy and scattering techniques concur to reveal that apoferritin fibrils possess a common double stranded twisted ribbon structure which can result in a mesoscopic right-handed chirality. We highlight a direct connection between the chirality and morphology of the resulting amyloid fibrils, and the initial protein subunits composition, advancing our understanding on the possible role of misfolding in some ferritin-related pathologies and posing new bases for the design of chiral 1D functional nanostructures.
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