| Literature DB >> 30453736 |
Didac Martí1,2, Enric Mayans1, Ana M Gil3, Angélica Díaz1,2, Ana I Jiménez3, Ibraheem Yousef4, Ina Keridou1,2, Carlos Cativiela3, Jordi Puiggalí1,2, Carlos Alemán1,2.
Abstract
The self-assembly behavior of a diphenylalanine amphiphile blocked at the C-terminus with a 9-fluorenylmethyl ester and stabilized at the N-terminus with a trifluoroacetate (TFA) anion, TFA·FF-OFm, has been examined. At low peptide concentration (0.5 mg/mL), long amyloid-like fibrils, which come from the fusion of two or more helical ribbons and/or thinner fibrils, organized in bundles or as individual entities are detected. Microbeam synchrotron radiation infrared spectroscopy has shown that TFA·FF-OFm molecules in amyloid-like fibrils arrange, forming antiparallel β-sheets. Alteration of the experimental conditions to prioritize the thermodynamic contribution with respect to the kinetic one in the self-assembly process inhibits the organization of amyloid-like structures in favor of the formation of conventional fibrous structures. On the basis of experimental observations, a structural model where the individual antiparallel β-sheets are oriented in parallel has been proposed for TFA·FF-OFm amyloid-like fibrils.Entities:
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Year: 2018 PMID: 30453736 DOI: 10.1021/acs.langmuir.8b03378
Source DB: PubMed Journal: Langmuir ISSN: 0743-7463 Impact factor: 3.882