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Biochim Biophys Acta Biomembr ; 1862(2): 183135, 2020 02 01.
Artículo en Inglés | MEDLINE | ID: mdl-31738901

RESUMEN

The mechanism of action of the anti-Listeria peptide enterocin CRL35 was studied with biophysical tools by using lipid mixtures that mimicked Gram-positive plasma membranes. Langmuir monolayers and infrared spectroscopy indicated that the peptide readily interacted with phospholipid assembled in monolayers and bilayers to produce a dual effect, depending on the acyl chains. Indeed, short chain mixtures were disordered by enterocin CRL35, but the gel-phases of membranes composed by longer acyl chains were clearly stabilized by the bacteriocin. Structural and functional studies indicated that non-bilayer states were formed when liposomes were co-incubated with enterocin CRL35, whereas significant permeabilization could be detected when bilayer and non-bilayer states co-existed. Results can be explained by a two-step model in which the N-terminal of the peptide firstly docks enterocin CRL35 on the lipid surface by means of electrostatic interactions; then, C-terminal triggers membrane perturbation by insertion of hydrophobic α-helix.


Asunto(s)
Bacteriocinas/química , Lípidos de la Membrana/química , Bacteriocinas/metabolismo , Permeabilidad de la Membrana Celular , Membrana Dobles de Lípidos/química , Fluidez de la Membrana , Lípidos de la Membrana/metabolismo , Unión Proteica
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