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Hydrogen Abstraction from the C15 Position of the Cholesterol Skeleton

Authors :
Universitat Politècnica de València. Departamento de Química - Departament de Química
Universitat Politècnica de València. Instituto Universitario Mixto de Tecnología Química - Institut Universitari Mixt de Tecnologia Química
Generalitat Valenciana
Ministerio de Educación
Instituto de Salud Carlos III
Palumbo, Fabrizio
Andreu Ros, María Inmaculada
Brunetti, M.
Schmallegger, Max
Gescheidt, Georg
Neshchadin, Dmytro
Miranda Alonso, Miguel Ángel
Universitat Politècnica de València. Departamento de Química - Departament de Química
Universitat Politècnica de València. Instituto Universitario Mixto de Tecnología Química - Institut Universitari Mixt de Tecnologia Química
Generalitat Valenciana
Ministerio de Educación
Instituto de Salud Carlos III
Palumbo, Fabrizio
Andreu Ros, María Inmaculada
Brunetti, M.
Schmallegger, Max
Gescheidt, Georg
Neshchadin, Dmytro
Miranda Alonso, Miguel Ángel
Publication Year :
2019

Abstract

[EN] Cholesterol (Ch) is an integral part of cell membrane, where it is prone to oxidation. In humans, oxidation of Ch is commonly linked to various pathologies like Alzheimer's disease, atherosclerosis, and even cancer, which proceed via mechanisms involving enzymatic and free radical pathways. The latter begin with hydrogen abstraction (HA) from Ch by a reactive free radical. It has been established that the most efficient HA from Ch occurs at C7, although HA from C4 by peroxyl radicals has recently been observed. Conversely, HA from Ch positions other than the thermodynamically preferred C7 or C4 has never been reported. We have designed a Ch derivative where a benzophenone moiety is linked to C7 by a covalent bond. This mirrors a specific orientation of Ch within a confined environment. Product analysis and time-resolved spectroscopic studies reveal an unprecedented HA from C15, which is a thermodynamically unfavorable position. This indicates that a specific topology of reactants is crucial for the reactivity of Ch. The relative orientation of the reactants can also be relevant in biological membranes, where Ch, polyunsaturated fatty acids, and numerous oxidizing species are confined in highly restricted and anisotropic environments.

Details

Database :
OAIster
Notes :
TEXT, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1258892624
Document Type :
Electronic Resource