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Chirality Effects in Peptide Assembly Structures

Yongfang Zheng, Kejing Mao, Shixian Chen, Hu Zhu

2021Frontiers in Bioengineering and Biotechnology43 citationsDOIOpen Access PDF

Abstract

Peptide assembly structures have been widely exploited in fabricating biomaterials that are promising for medical applications. Peptides can self-organize into various highly ordered supramolecular architectures, such as nanofibril, nanobelt, nanotube, nanowire, and vesicle. Detailed studies of the molecular mechanism by which these versatile building blocks assemble can guide the design of peptide architectures with desired structure and functionality. It has been revealed that peptide assembly structures are highly sequence-dependent and sensitive to amino acid composition, the chirality of peptide and amino acid residues, and external factors, such as solvent, pH, and temperature. This mini-review focuses on the regulatory effects of chirality alteration on the structure and bioactivity of linear and cyclic peptide assemblies. In addition, chiral self-sorting and co-assembly of racemic peptide mixtures were discussed.

Topics & Concepts

Chirality (physics)PeptideSupramolecular chemistrySupramolecular chiralityNanotechnologySelf-assemblyAmino acidPeptide sequenceMaterials scienceChemistryCombinatorial chemistryBiochemistryCrystallographyCrystal structurePhysicsNambu–Jona-Lasinio modelChiral symmetry breakingQuarkGeneQuantum mechanicsSupramolecular Self-Assembly in MaterialsChemical Synthesis and AnalysisPolydiacetylene-based materials and applications
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