肽
模块化设计
合理设计
模块化(生物学)
两亲性
肽序列
结构母题
序列(生物学)
化学
组合化学
生物物理学
材料科学
纳米技术
计算机科学
生物化学
生物
有机化学
聚合物
操作系统
基因
遗传学
共聚物
作者
Sudipta Mondal,Maxim Varenik,Daniel Nir Bloch,Yoav Atsmon‐Raz,Guy Jacoby,Lihi Adler‐Abramovich,Linda J. W. Shimon,Roy Beck,Yifat Miller,Oren Regev,Ehud Gazit
摘要
Abstract Extensive work has been invested in the design of bio-inspired peptide emulsifiers. Yet, none of the formulated surfactants were based on the utilization of the robust conformation and self-assembly tendencies presented by the hydrophobins, which exhibited highest surface activity among all known proteins. Here we show that a minimalist design scheme could be employed to fabricate rigid helical peptides to mimic the rigid conformation and the helical amphipathic organization. These designer building blocks, containing natural non-coded α-aminoisobutyric acid (Aib), form superhelical assemblies as confirmed by crystallography and microscopy. The peptide sequence is amenable to structural modularity and provides the highest stable emulsions reported so far for peptide and protein emulsifiers. Moreover, we establish the ability of short peptides to perform the dual functions of emulsifiers and thickeners, a feature that typically requires synergistic effects of surfactants and polysaccharides. This work provides a different paradigm for the molecular engineering of bioemulsifiers.
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