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Amyloid Self-Assembly of Lysozyme in Self-Crowded Conditions: The Formation of a Protein Oligomer Hydrogel.
Catalini, Sara; Perinelli, Diego R; Sassi, Paola; Comez, Lucia; Palmieri, Giovanni F; Morresi, Assunta; Bonacucina, Giulia; Foggi, Paolo; Pucciarelli, Stefania; Paolantoni, Marco.
Afiliação
  • Catalini S; European Laboratory for Non-Linear Spectroscopy (LENS), University of Florence, 50019 Sesto Fiorentino, Italy.
  • Perinelli DR; School of Pharmacy, University of Camerino, 62032 Camerino, Italy.
  • Sassi P; Department of Chemistry, Biology and Biotechnology, University of Perugia, 06123 Perugia, Italy.
  • Comez L; IOM-CNR c/o Department of Physics and Geology, University of Perugia, 060123 Perugia, Italy.
  • Palmieri GF; School of Pharmacy, University of Camerino, 62032 Camerino, Italy.
  • Morresi A; Department of Chemistry, Biology and Biotechnology, University of Perugia, 06123 Perugia, Italy.
  • Bonacucina G; School of Pharmacy, University of Camerino, 62032 Camerino, Italy.
  • Foggi P; European Laboratory for Non-Linear Spectroscopy (LENS), University of Florence, 50019 Sesto Fiorentino, Italy.
  • Pucciarelli S; Department of Chemistry, Biology and Biotechnology, University of Perugia, 06123 Perugia, Italy.
  • Paolantoni M; National Metrological Research Institute (INRIM), Strada delle Cacce 91, 10135 Torino, Italy.
Biomacromolecules ; 22(3): 1147-1158, 2021 03 08.
Article em En | MEDLINE | ID: mdl-33600168
ABSTRACT
A method is designed to quickly form protein hydrogels, based on the self-assembly of highly concentrated lysozyme solutions in acidic conditions. Their properties can be easily modulated by selecting the curing temperature. Molecular insights on the gelation pathway, derived by in situ FTIR spectroscopy, are related to calorimetric and rheological results, providing a consistent picture on structure-property correlations. In these self-crowded samples, the thermal unfolding induces the rapid formation of amyloid aggregates, leading to temperature-dependent quasi-stationary levels of antiparallel cross ß-sheet links, attributed to kinetically trapped oligomers. Upon subsequent cooling, thermoreversible hydrogels develop by the formation of interoligomer contacts. Through heating/cooling cycles, the starting solutions can be largely recovered back, due to oligomer-to-monomer dissociation and refolding. Overall, transparent protein hydrogels can be easily formed in self-crowding conditions and their properties explained, considering the formation of interconnected amyloid oligomers. This type of biomaterial might be relevant in different fields, along with analogous systems of a fibrillar nature more commonly considered.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Muramidase / Hidrogéis Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Muramidase / Hidrogéis Idioma: En Ano de publicação: 2021 Tipo de documento: Article