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Conformational modulation and polymerization-induced folding of proteomimetic peptide brush polymers.
Oktawiec, Julia; Ebrahim, Omar M; Chen, Yu; Su, Kaylen; Sharpe, Christopher; Rosenmann, Nathan D; Barbut, Clara; Weigand, Steven J; Thompson, Matthew P; Byrnes, James; Qiao, Baofu; Gianneschi, Nathan C.
Affiliation
  • Oktawiec J; Department of Chemistry, Northwestern University Evanston IL 60208 USA nathan.gianneschi@northwestern.edu.
  • Ebrahim OM; Department of Chemistry, Northwestern University Evanston IL 60208 USA nathan.gianneschi@northwestern.edu.
  • Chen Y; Department of Materials Science and Engineering, Northwestern University Evanston IL 60208 USA.
  • Su K; Department of Natural Sciences, Baruch College, City University of New York New York NY 10010 USA.
  • Sharpe C; Department of Materials Science and Engineering, Northwestern University Evanston IL 60208 USA.
  • Rosenmann ND; Department of Materials Science and Engineering, Northwestern University Evanston IL 60208 USA.
  • Barbut C; Department of Chemistry, Northwestern University Evanston IL 60208 USA nathan.gianneschi@northwestern.edu.
  • Weigand SJ; DuPont-Northwestern-Dow Collaborative Access Team (DND-CAT) Synchrotron Research Center, Northwestern University Argonne IL 60208 USA.
  • Thompson MP; Department of Chemistry, Northwestern University Evanston IL 60208 USA nathan.gianneschi@northwestern.edu.
  • Byrnes J; Beamline 16ID, NSLS-II, Brookhaven National Laboratory Upton NY 11973 USA.
  • Qiao B; Department of Natural Sciences, Baruch College, City University of New York New York NY 10010 USA.
  • Gianneschi NC; Department of Chemistry, Northwestern University Evanston IL 60208 USA nathan.gianneschi@northwestern.edu.
Chem Sci ; 2024 Jul 29.
Article in En | MEDLINE | ID: mdl-39129772
ABSTRACT
Peptide-brush polymers generated by graft-through living polymerization of peptide-modified monomers exhibit high proteolytic stability, therapeutic efficacy, and potential as functional tandem repeat protein mimetics. Prior work has focused on polymers generated from structurally disordered peptides that lack defined conformations. To obtain insight into how the structure of these polymers is influenced by the folding of their peptide sidechains, a set of polymers with varying degrees of polymerization was prepared from peptide monomers that adopt α-helical secondary structure for comparison to those having random coil structures. Circular dichroism and nuclear magnetic resonance spectroscopy confirm the maintenance of the secondary structure of the constituent peptide when polymerized. Small-angle X-ray scattering (SAXS) studies reveal the solution-phase conformation of PLPs in different solvent environments. In particular, X-ray scattering shows that modulation of solvent hydrophobicity, as well as hydrogen bonding patterns of the peptide sidechain, plays an important role in the degree of globularity and conformation of the overall polymer, with polymers of helical peptide brushes showing less spherical compaction in conditions where greater helicity is observed. These structural insights into peptide brush folding and polymer conformation inform the design of these proteomimetic materials with promise for controlling and predicting their artificial fold and morphology.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Chem Sci Year: 2024 Document type: Article Country of publication: Reino Unido

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Chem Sci Year: 2024 Document type: Article Country of publication: Reino Unido