Pavone Vincenzo, Zhang Shao-Qing, Merlino Antonello, Lombardi Angela, Wu Yibing, DeGrado William F
1] Dipartimento di Scienze Chimiche Universitá di Napoli 'Federico II' Complesso Universitario Monte S. Angelo Via Cynthia, 46, 80126 Napoli, Italia [2].
1] Department of Physics and Astronomy, University of Pennsylvania, 209 South 33rd Street, Philadelphia, Pennsylvania 19104-6396, USA [2] Department of Pharmaceutical Chemistry and the Cardiovascular Research Institute, University of California, CVRI-MC Box 3122, San Francisco, California 94158-9001, USA [3].
Nat Commun. 2014 Apr 7;5:3581. doi: 10.1038/ncomms4581.
Foldamers provide an attractive medium to test the mechanisms by which biological macromolecules fold into complex three-dimensional structures, and ultimately to design novel protein-like architectures with properties unprecedented in nature. Here, we describe a large cage-like structure formed from an amphiphilic arylamide foldamer crystallized from aqueous solution. Forty-eight copies of the foldamer assemble into a 5-nm cage-like structure, an omnitruncated octahedron filled with well-ordered ice-like water molecules. The assembly is stabilized by a mix of arylamide stacking interaction, hydrogen bonding and hydrophobic forces. The omnitruncated octahedra tessellate to form a cubic crystal. These findings may provide an important step towards the design of nanostructured particles resembling spherical viruses.
折叠体为测试生物大分子折叠成复杂三维结构的机制提供了一个有吸引力的媒介,并最终用于设计具有自然界前所未有的特性的新型蛋白质样结构。在此,我们描述了一种由两亲性芳基酰胺折叠体从水溶液中结晶形成的大型笼状结构。48个折叠体拷贝组装成一个5纳米的笼状结构,即一个充满有序类冰水分子的全截角八面体。该组装体通过芳基酰胺堆积相互作用、氢键和疏水作用力的混合得以稳定。全截角八面体相互镶嵌形成立方晶体。这些发现可能是迈向设计类似球形病毒的纳米结构颗粒的重要一步。