4.6 Article

Peptide and glycopeptide dendrimer apple trees as enzyme models and for biomedical applications

Journal

ORGANIC & BIOMOLECULAR CHEMISTRY
Volume 10, Issue 8, Pages 1483-1492

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c2ob06938e

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Funding

  1. University of Berne
  2. National Science Foundation
  3. European Union [FP7-ITN-238434]

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Solid phase peptide synthesis (SPPS) provides peptides with a dendritic topology when diamino acids are introduced in the sequences. Peptide dendrimers with one to three amino acids between branches can be prepared with up to 38 amino acids (MW similar to 5,000 Da). Larger peptide dendrimers (MW similar to 30,000) were obtained by a multivalent chloroacetyl cysteine (ClAc) ligation. Structural studies of peptide dendrimers by CD, FT-IR, NMR and molecular dynamics reveal molten globule states containing up to 50% of a-helix. Esterase and aldolase peptide dendrimers displaying dendritic effects and enzyme kinetics (k(cat)/k(uncat) similar to 10(5)) were designed or discovered by screening large combinatorial libraries. Strong ligands for Pseudomonas aeruginosa lectins LecA and LecB able to inhibit biofilm formation were obtained with glycopeptide dendrimers. Efficient ligands for cobalamin, cytotoxic colchicine conjugates and antimicrobial peptide dendrimers were also developed showing the versatility of dendritic peptides. Complementing the multivalency, the amino acid composition of the dendrimers strongly influenced the catalytic or biological activity obtained demonstrating the importance of the apple tree configuration for protein-like function in peptide dendrimers.

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