淀粉样纤维
纤维
血清白蛋白
反演(地质)
化学
淀粉样β
计算生物学
生物物理学
材料科学
白蛋白
生物化学
结晶学
生物
医学
病理
疾病
古生物学
构造盆地
作者
Ivan Usov,Jozef Adamčík,Raffaele Mezzenga
出处
期刊:ACS Nano
[American Chemical Society]
日期:2013-10-30
卷期号:7 (12): 10465-10474
被引量:120
摘要
Protein-based amyloid fibrils can show a great variety of polymorphic structures within the same protein precursor, although the origins of these structural homologues remain poorly understood. In this work we investigate the fibrillation of bovine serum albumin--a model globular protein--and we follow the polymorphic evolution by a statistical analysis of high-resolution atomic force microscopy images, complemented, at larger length scales, by concepts based on polymer physics formalism. We identify six distinct classes of coexisting amyloid fibrils, including flexible left-handed twisted ribbons, rigid right-handed helical ribbons and nanotubes. We show that the rigid fibrils originate from flexible fibrils through two diverse polymorphic transitions, first, via a single-fibril transformation when the flexible left-handed twisted ribbons turn into the helical left-handed ribbons, to finally evolve into nanotube-like structures, and second, via a double-fibril transformation when two flexible left-handed twisted ribbons wind together resulting in a right-handed twisted ribbon, followed by a rigid right-handed helical ribbon polymorphic conformation. Hence, the change in handedness occurs with an increase in the level of the fibril's structural organization.
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