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Nanoscale Assembly of Functional Peptides with Divergent Programming Elements.
Garcia, Ana M; Melchionna, Michele; Bellotto, Ottavia; Kralj, Slavko; Semeraro, Sabrina; Parisi, Evelina; Iglesias, Daniel; D'Andrea, Paola; De Zorzi, Rita; Vargiu, Attilio V; Marchesan, Silvia.
Affiliation
  • Garcia AM; Chemical and Pharmaceutical Sciences Department, University of Trieste, Via Giorgieri 1, 34127 Trieste, Italy.
  • Melchionna M; Chemical and Pharmaceutical Sciences Department, University of Trieste, Via Giorgieri 1, 34127 Trieste, Italy.
  • Bellotto O; INSTM, University of Trieste, Via Giorgieri 1, 34127 Trieste, Italy.
  • Kralj S; Chemical and Pharmaceutical Sciences Department, University of Trieste, Via Giorgieri 1, 34127 Trieste, Italy.
  • Semeraro S; Chemical and Pharmaceutical Sciences Department, University of Trieste, Via Giorgieri 1, 34127 Trieste, Italy.
  • Parisi E; Materials Synthesis Department, Jozef Stefan Institute, Jamova 39, 1000 Ljubljana, Slovenia.
  • Iglesias D; Chemical and Pharmaceutical Sciences Department, University of Trieste, Via Giorgieri 1, 34127 Trieste, Italy.
  • D'Andrea P; Chemical and Pharmaceutical Sciences Department, University of Trieste, Via Giorgieri 1, 34127 Trieste, Italy.
  • De Zorzi R; Chemical and Pharmaceutical Sciences Department, University of Trieste, Via Giorgieri 1, 34127 Trieste, Italy.
  • Vargiu AV; Life Sciences Department, University of Trieste, Via Giorgieri 1, 34127 Trieste, Italy.
  • Marchesan S; Chemical and Pharmaceutical Sciences Department, University of Trieste, Via Giorgieri 1, 34127 Trieste, Italy.
ACS Nano ; 15(2): 3015-3025, 2021 02 23.
Article de En | MEDLINE | ID: mdl-33576622
ABSTRACT
Self-assembling peptides are being applied both in the biomedical area and as building blocks in nanotechnology. Their applications are closely linked to their modes of self-assembly, which determine the functional nanostructures that they form. This work brings together two structural elements that direct nanoscale self-association in divergent directions proline as a ß-breaker and the ß-structure-associated diphenylalanine motif, into a single tripeptide sequence. Amino acid chirality was found to resolve the tension inherent to these conflicting self-assembly instructions. Stereoconfiguration determined the ability of each of the eight possible Pro-Phe-Phe stereoisomers to self-associate into diverse nanostructures, including nanoparticles, nanotapes, or fibrils, which yielded hydrogels with gel-to-sol transition at a physiologically relevant temperature. Three single-crystal structures and all-atom molecular dynamics simulations elucidated the ability of each peptide to establish key interactions to form long-range assemblies (i,e., stacks leading to gelling fibrils), medium-range assemblies (i.e., stacks yielding nanotapes), or short-range assemblies (i.e., dimers or trimers that further associated into nanoparticles). Importantly, diphenylalanine is known to serve as a binding site for pathological amyloids, potentially allowing these heterochiral systems to influence the fibrillization of other biologically relevant peptides. To probe this hypothesis, all eight Pro-Phe-Phe stereoisomers were tested in vitro on the Alzheimer's disease-associated Aß(1-42) peptide. Indeed, one nonfibril-forming stereoisomer effectively inhibited Aß fibrillization through multivalent binding between diphenylalanine motifs. This work thus defined heterochirality as a useful feature to strategically develop future therapeutics to interfere with pathological processes, with the additional value of resistance to protease-mediated degradation and biocompatibility.
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Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Peptides / Nanostructures Langue: En Journal: ACS Nano Année: 2021 Type de document: Article Pays d'affiliation: Italie

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Peptides / Nanostructures Langue: En Journal: ACS Nano Année: 2021 Type de document: Article Pays d'affiliation: Italie