波形蛋白
中间灯丝
拉伤
细胞骨架
纳米尺度
刚度
材料科学
生物物理学
可塑性
纳米技术
化学
细胞
复合材料
生物
解剖
生物化学
免疫组织化学
免疫学
作者
Johanna Block,Julia Kraxner,Hannes Witt,Andreas Janshoff,Sarah Köster
出处
期刊:Nano Letters
[American Chemical Society]
日期:2019-09-06
卷期号:19 (10): 7349-7356
被引量:51
标识
DOI:10.1021/acs.nanolett.9b02972
摘要
Intermediate filaments (IFs) are part of the cytoskeleton of eukaryotic cells and, therefore, are largely responsible for the cell's mechanical properties. IFs are characterized by a pronounced extensibility and remarkable resilience that enable them to support cells in extreme situations. Previous experiments showed that, under strain, α-helices in vimentin IFs might unfold to β-sheets. Upon repeated stretching, the filaments soften; however, the remaining plastic strain is negligible. Here, we observe that vimentin IFs do not recover their original stiffness on reasonable time scales, and we explain these seemingly contradicting results by introducing a third, less well-defined conformational state. Reversibility on the nanoscale can be fully rescued by introducing cross-linkers that prevent transition to the β-sheet. Our results classify IFs as a nanomaterial with intriguing mechanical properties, which is likely to play a major role for the cell's local adaption to external stimuli.
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