螺旋线圈
超分子化学
结晶学
肽
螺旋(腹足类)
蛋白质设计
自组装
序列(生物学)
折叠(DSP实现)
结构母题
纳米纤维
化学
材料科学
蛋白质结构
纳米技术
生物
生物化学
晶体结构
生态学
工程类
电气工程
蜗牛
作者
Sudipta Mondal,Vasantha Basavalingappa,Guy Jacoby,Linda J. W. Shimon,Roy Beck,Ehud Gazit
出处
期刊:ACS Nano
[American Chemical Society]
日期:2019-10-24
卷期号:13 (11): 12630-12637
被引量:6
标识
DOI:10.1021/acsnano.9b04148
摘要
Coiled-coil peptides represent the principal building blocks for structure-based design of bionanomaterials. The sequence-structure relationship and precise nanoscale ordering of the coiled-coil helices originate from the knob-into-hole (KIH) packing of side chains. The helical interface stabilized by the KIH interaction is known to have chain lengths ranging from 30 to 1000 residues. Yet the shortest peptide required for oligomerization through KIH assembly is still unknown. Here, we report that through atomic resolution a minimal seven-residue amphipathic helix forms a different type of KIH motif, termed "supramolecular KIH packing", which confers an exceptional stability to the helical dimers. Significantly, at a low pH, the peptide self-assembles into nanofibers with coiled-coil architecture resembling the natural fibrous proteins. Furthermore, hierarchical ordering of the nanofibers affords lyotropic liquid crystals composed of a shortest natural helical sequence. Thus, this study expands the sequence space for a coiled-coil folding manifold and provides another paradigm for designer nanomaterials from minimal helical sequences.
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