化学
螺旋线圈
超分子化学
结晶学
螺旋(腹足类)
纳米管
自组装
螺旋束
分子
肽
纳米技术
蛋白质结构
晶体结构
材料科学
碳纳米管
蜗牛
有机化学
生物
生物化学
生态学
作者
Chunfu Xu,Rui Liu,Anil Mehta,Ricardo Guerrero-Ferreira,Elizabeth Wright,Stanisław Dunin-Horkawicz,Kyle L. Morris,Louise C. Serpell,Xiaobing Zuo,Joseph S. Wall,Vincent P. Conticello
摘要
Design of a structurally defined helical assembly is described that involves recoding of the amino acid sequence of peptide GCN4-pAA. In solution and the crystalline state, GCN4-pAA adopts a 7-helix bundle structure that resembles a supramolecular lock washer. Structurally informed mutagenesis of the sequence of GCN4-pAA afforded peptide 7HSAP1, which undergoes self-association into a nanotube via noncovalent interactions between complementary interfaces of the coiled-coil lock-washer structures. Biophysical measurements conducted in solution and the solid state over multiple length scales of structural hierarchy are consistent with self-assembly of nanotube structures derived from 7-helix bundle subunits. The dimensions of the supramolecular assemblies are similar to those observed in the crystal structure of GCN4-pAA. Fluorescence studies of the interaction of 7HSAP1 with the solvatochromic fluorophore PRODAN indicated that the nanotubes could encapsulate shape-appropriate small molecules with high binding affinity.
科研通智能强力驱动
Strongly Powered by AbleSci AI