4.7 Article

Amino acid conformations control the morphological and chiral features of the self-assembled peptide nanostructures: Young investigators perspective

Journal

JOURNAL OF COLLOID AND INTERFACE SCIENCE
Volume 548, Issue -, Pages 244-254

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcis.2019.04.019

Keywords

Short peptides; Designed peptides; Peptide amphiphiles; Amphiphilic peptides; Self-assembly; Nanostructures; Biomaterials; Chirality; Chiral nanomaterials

Funding

  1. National Natural Science Foundation of China [21673293, 21573287, 51574269]
  2. National Science Foundation for Distinguished Young Scholars of China [51625403]
  3. Important National Science and Technology Specific Projects of China [2016ZX05011-003]
  4. Fundamental Research Funds for the Central Universities [15CX08004A]
  5. Chinese Postdoctoral Science Foundation [2017 M620297]
  6. Natural Science Foundation of Shandong Province of China [ZR2017BEE015]
  7. EPSRC [EP/F062966/1]
  8. Innovate UK [KTP009043]
  9. Marie Curie Fellowship ITN grant under SNAL (Small nano objects for alteration of lipid-bilayers) [608184]
  10. EPSRC [EP/F062966/1] Funding Source: UKRI

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Hypothesis: A variety of nanostructures with different chiral features can be self-assembled from short peptides with highly similar sequences. We hypothesize that these supramolecular nanostructures are ruled by the constituent amino acid residues which adopt their conformations under the influence of intra-/inter-molecular interactions during peptide self-assembly. Approach: Through reviewing recent advances in the self-assembly of short peptides and focusing on the relationship between amino acid conformations, peptide secondary structures and intra-/inter-molecular interactions within the supramolecular architectures, we aim to rationalize the complex interactive processes involved in the self-assembly of short, designed peptides. Results: Given the highly complexing interactive processes, the adoption of amino acid conformations and their control over peptide self-assembly consist of 4 main steps: (1) Each amino acid residue adopts its unique conformation in a specific sequence; (2) The sequence exhibits its own main chain geometry and determines the propensity of the intermolecular alignment within the building block; (3) The structural propensity of the building block and the packing mode between them determine the self-assembled structural features such as twisting, growth and chirality; (4) In addition to intra-/inter-molecular interactions, inter-sheet and inter-building block interactions could also affect the residue conformations and nanostructures, causing structural readjustment. (C) 2019 Published by Elsevier Inc.

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