Literature DB >> 29292825

Balancing hydrophobicity and sequence pattern to influence self-assembly of amphipathic peptides.

Ria J Betush1, Jennifer M Urban2, Bradley L Nilsson2.   

Abstract

Amphipathic peptides with alternating polar and nonpolar amino acid sequences efficiently self-assemble into functional β-sheet fibrils as long as the nonpolar residues have sufficient hydrophobicity. For example, the Ac-(FKFE)2 -NH2 peptide rapidly self-assembles into β-sheet bilayer nanoribbons, while Ac-(AKAE)2 -NH2 fails to self-assemble under similar conditions due to the significantly reduced hydrophobicity and β-sheet propensity of Ala relative to Phe. Herein, we systematically explore the effect of substituting only two of the four Ala residues at various positions in the Ac-(AKAE)2 -NH2 peptide with amino acids of increasing hydrophobicity, β-sheet potential, and surface area (including Phe, 1-naphthylalanine (1-Nal), 2-naphthylalanine (2-Nal), cyclohexylalanine (Cha), and pentafluorophenylalanine (F5 -Phe)) on the self-assembly propensity of the resulting sequences. It was found that double Phe variants, regardless of the position of substitution, failed to self-assemble under the conditions used in this study. In contrast, all double 1-Nal and 2-Nal variants readily self-assembled, albeit at differing rates depending on the substitution patterns. To determine whether this was due to hydrophobicity or side chain surface area, we also prepared double Cha and F5 -Phe variant peptides (both side chain groups are more hydrophobic than Phe). Each of these variants also underwent effective self-assembly, with the aromatic F5 -Phe peptides doing so with greater efficiency. These findings provide insight into the role of amino acid hydrophobicity and sequence pattern on self-assembly proclivity of amphipathic peptides and on how targeted substitutions of nonpolar residues in these sequences can be exploited to tune the characteristics of the resulting self-assembled materials.
© 2018 Wiley Periodicals, Inc.

Entities:  

Keywords:  hydrophobicity; peptide; self-assembly

Year:  2018        PMID: 29292825     DOI: 10.1002/bip.23099

Source DB:  PubMed          Journal:  Biopolymers        ISSN: 0006-3525            Impact factor:   2.505


  3 in total

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Authors:  Andrea S Carlini; Roberto Gaetani; Rebecca L Braden; Colin Luo; Karen L Christman; Nathan C Gianneschi
Journal:  Nat Commun       Date:  2019-04-15       Impact factor: 14.919

Review 2.  Novel Vaccine Strategies and Factors to Consider in Addressing Health Disparities of HPV Infection and Cervical Cancer Development among Native American Women.

Authors:  Crystal G Morales; Nicole R Jimenez; Melissa M Herbst-Kralovetz; Naomi R Lee
Journal:  Med Sci (Basel)       Date:  2022-09-13

3.  Capacity for increased surface area in the hydrophobic core of β-sheet peptide bilayer nanoribbons.

Authors:  Christopher W Jones; Crystal G Morales; Sharon L Eltiste; Francine E Yanchik-Slade; Naomi R Lee; Bradley L Nilsson
Journal:  J Pept Sci       Date:  2021-06-20       Impact factor: 1.905

  3 in total

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