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cc-by-nc-nd (c) Sanmartí, 2015
Si us plau utilitzeu sempre aquest identificador per citar o enllaçar aquest document: https://hdl.handle.net/2445/99221

Mechanical folding and unfolding of the redox protein Flavodoxin

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We investigate the unfolding and folding processes of redox protein Flavodoxin under the action of mechanical forces at the single molecule level using force spectroscopy methods with optical tweezers. Previous bulk studies have provided valuable information about the structure of the folded and unfolded states, and pointed out the existence intermediate states along the unfolding and folding pathways. However direct evidence about the existence of such kinetic intermediates and their lifetimes is still missing. Here we pull molecular constructs of the protein Flavodoxin flanked by double stranded DNA linkers tethered to micron-sized beads with optical tweezers to mechanically unfold the protein. The distributions of rupture forces have been characterized and intermediate states have been found along the unfolding and folding pathways. Moreover, the molecular free energy landscape of the protein has been characterized from the unfolding kinetics using the Bell-Evans model and an estimate of the free energy of formation of the protein has been extracted using the Crooks fluctuation theorem

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Màster Oficial en Física Avançada. Facultat de Física, Universitat de Barcelona, Curs: 2015, Tutors: Felix Ritort i Anna Alemany

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SANMARTÍ, Enric. Mechanical folding and unfolding of the redox protein Flavodoxin. [consulta: 29 de novembre de 2025]. [Disponible a: https://hdl.handle.net/2445/99221]

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