Department of Chemical Sciences & Centre for Advanced Functional Materials, Indian Institute of Science Education and Research (IISER), Kolkata, Mohanpur, West Bengal, 741246, India.
Angew Chem Int Ed Engl. 2020 Aug 3;59(32):13506-13510. doi: 10.1002/anie.202003721. Epub 2020 May 26.
Hydrophobic collapse plays crucial roles in protein functions, from accessing the complex three-dimensional structures of native enzymes to the dynamic polymerization of non-equilibrium microtubules. However, hydrophobic collapse can also lead to the thermodynamically downhill aggregation of aberrant proteins, which has interestingly led to the development of a unique class of soft nanomaterials. There remain critical gaps in the understanding of the mechanisms of how hydrophobic collapse can regulate such aggregation. Demonstrated herein is a methodology for non-equilibrium amyloid polymerization through mutations of the core sequence of Aβ peptides by a thermodynamically activated moiety. An out of equilibrium state is realized because of the negative feedback from the transiently formed cross-β amyloid networks. Such non-equilibrium amyloid nanostructures were utilized to access temporal control over its electronic properties.
疏水塌陷在蛋白质功能中起着至关重要的作用,从访问天然酶的复杂三维结构到非平衡微管的动态聚合。然而,疏水塌陷也会导致异常蛋白质的热力学下坡聚集,这有趣地导致了一类独特的软纳料的发展。对于疏水塌陷如何调节这种聚集的机制的理解仍然存在关键的差距。本文展示了一种通过热力学激活部分突变 Aβ 肽核心序列来进行非平衡淀粉样蛋白聚合的方法。由于瞬态形成的交叉-β淀粉样蛋白网络的负反馈,实现了非平衡状态。这种非平衡淀粉样纳米结构被用来控制其电子性质的时间。