Your browser doesn't support javascript.
loading
Solution NMR and racemic crystallography provide insights into a novel structural class of cyclic plant peptides.
Payne, Colton D; Vadlamani, Grishma; Hajiaghaalipour, Fatemeh; Muhammad, Taj; Fisher, Mark F; Andersson, Håkan S; Göransson, Ulf; Clark, Richard J; Bond, Charles S; Mylne, Joshua S; Rosengren, K Johan.
Afiliação
  • Payne CD; The University of Queensland, School of Biomedical Sciences Brisbane QLD 4072 Australia j.rosengren@uq.edu.au.
  • Vadlamani G; Curtin University, Centre for Crop and Disease Management, School of Molecular and Life Sciences Bentley WA 6102 Australia.
  • Hajiaghaalipour F; The University of Western Australia, School of Molecular Sciences Crawley WA 6009 Australia.
  • Muhammad T; The University of Western Australia, ARC Centre of Excellence in Plant Energy Biology, School of Molecular Sciences Crawley WA 6009 Australia.
  • Fisher MF; The University of Queensland, School of Biomedical Sciences Brisbane QLD 4072 Australia j.rosengren@uq.edu.au.
  • Andersson HS; Uppsala University, Division of Pharmacognosy, Department of Pharmaceutical Biosciences 75124 Uppsala Sweden.
  • Göransson U; Curtin University, Centre for Crop and Disease Management, School of Molecular and Life Sciences Bentley WA 6102 Australia.
  • Clark RJ; The University of Western Australia, School of Molecular Sciences Crawley WA 6009 Australia.
  • Bond CS; The University of Western Australia, ARC Centre of Excellence in Plant Energy Biology, School of Molecular Sciences Crawley WA 6009 Australia.
  • Mylne JS; Uppsala University, Division of Pharmacognosy, Department of Pharmaceutical Biosciences 75124 Uppsala Sweden.
  • Rosengren KJ; Karolinska Institute, Department of Medical Biochemistry and Biophysics 17177 Stockholm Sweden.
RSC Chem Biol ; 2(6): 1682-1691, 2021 Dec 02.
Article em En | MEDLINE | ID: mdl-34977583
ABSTRACT
Head-to-tail cyclic and disulfide-rich peptides are natural products with applications in drug design. Among these are the PawS-Derived Peptides (PDPs) produced in seeds of the daisy plant family. PDP-23 is a unique member of this class in that it is twice the typical size and adopts two ß-hairpins separated by a hinge region. The ß-hairpins, both stabilised by a single disulfide bond, fold together into a V-shaped tertiary structure creating a hydrophobic core. In water two PDP-23 molecules merge their hydrophobic cores to form a square prism quaternary structure. Here, we synthesised PDP-23 and its enantiomer comprising d-amino acids and achiral glycine, which allowed us to confirm these solution NMR structural data by racemic crystallography. Furthermore, we discovered the related PDP-24. NMR analysis showed that PDP-24 does not form a dimeric structure and it has poor water solubility, but in less polar solvents adopts near identical secondary and tertiary structure to PDP-23. The natural role of these peptides in plants remains enigmatic, as we did not observe any antimicrobial or insecticidal activity. However, the plasticity of these larger PDPs and their ability to change structure under different conditions make them appealing peptide drug scaffolds.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article