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Párování biologicky relevantních iontů ve vodných roztocích / Pairing of biologically relevant ions in aqueous solutions

Not accounting for the electronic polarizability due to divalent ions such as Ca2+ introduces a significant artifacts to force field-based molecular dynamic simulations of biological systems. Two newly developed parameter refinements were used to compute the free energy profile of the Ca2+ -Cl- ion dissociation in aqueous solutions, to be compared with a free energy profile obtained from ab-intio molecular dynamics and to data from neutron scattering. Next, the computational evidence for the existence of a local free energy min- imum representing a guanidinium-guanidinium contact ion pair in aqueous solu- tions is provided suggesting a global preference for a contact ion pair. Finally, the passive membrane penetration mechanism of oligoarginines was investigated on a cell membrane model systems - lipid vesicles - by fluorescent spectroscopy. In this study, a mechanistic link between membrane penetration and vesicle aggregation and fusion was found. 1

Identiferoai:union.ndltd.org:nusl.cz/oai:invenio.nusl.cz:388513
Date January 2018
CreatorsBaxová, Katarína
ContributorsJungwirth, Pavel, Předota, Milan
Source SetsCzech ETDs
LanguageEnglish
Detected LanguageEnglish
Typeinfo:eu-repo/semantics/masterThesis
Rightsinfo:eu-repo/semantics/restrictedAccess

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