Cargando…

New covalent modifications of phosphatidylethanolamine by alkanals: mass spectrometry based structural characterization and biological effects

The pathophysiology of numerous human disorders, such as atherosclerosis, diabetes, obesity and Alzheimer's disease, is accompanied by increased production of reactive oxygen species (ROS). ROS can oxidatively damage nearly all biomolecules, including lipids, proteins and nucleic acids. In part...

Descripción completa

Detalles Bibliográficos
Autores principales: Annibal, Andrea, Schubert, Kristin, Wagner, Ulf, Hoffmann, Ralf, Schiller, Jürgen, Fedorova, Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4207196/
https://www.ncbi.nlm.nih.gov/pubmed/25044840
http://dx.doi.org/10.1002/jms.3373
_version_ 1782340935497023488
author Annibal, Andrea
Schubert, Kristin
Wagner, Ulf
Hoffmann, Ralf
Schiller, Jürgen
Fedorova, Maria
author_facet Annibal, Andrea
Schubert, Kristin
Wagner, Ulf
Hoffmann, Ralf
Schiller, Jürgen
Fedorova, Maria
author_sort Annibal, Andrea
collection PubMed
description The pathophysiology of numerous human disorders, such as atherosclerosis, diabetes, obesity and Alzheimer's disease, is accompanied by increased production of reactive oxygen species (ROS). ROS can oxidatively damage nearly all biomolecules, including lipids, proteins and nucleic acids. In particular, (poly)unsaturated fatty acids within the phospholipid (PL) structure are easily oxidized by ROS to lipid peroxidation products (LPP) carrying reactive carbonyl groups. Carbonylated LPP are characterized by high in vivo toxicity due to their reactivity with nucleophilic substrates (Lys-, Cys-and His-residues in proteins or amino groups of phosphatidylethanolamines [PE]). Adducts of unsaturated LPP with PE amino groups have been reported before, whereas less is known about the reactivity of saturated alkanals – which are significantly increased in vivo under oxidative stress conditions – towards nucleophilic groups of PLs. Here, we present a study of new alkanal-dipalmitoyl-phosphatidylethanolamine (DPPE) adducts by MS-based approaches, using consecutive fragmentation (MS(n)) and multiple reaction monitoring techniques. At least eight different DPPE–hexanal adducts were identified, including Schiff base and amide adducts, six of which have not been reported before. The structures of these new compounds were determined by their fragmentation patterns using MS(n) experiments. The new PE-hexanal adducts contained dimeric and trimeric hexanal conjugates, including cyclic adducts. A new pyridine ring containing adduct of DPPE and hexanal was purified by HPLC, and its biological effects were investigated. Incubation of peripheral blood mononuclear cells and monocytes with modified DPPE did not result in increased production of TNF-α as one selected inflammation marker. However, incorporation of modified DPPE into 1,2-dipalmitoleoyl-sn-phosphatidylethanolamine multilamellar vesicles resulted in a negative shift of the transition temperature, indicating a possible role of alkanal-derived modifications in changes of membrane structure. © 2014 The Authors. Journal of Mass Spectrometry published by John Wiley & Sons, Ltd.
format Online
Article
Text
id pubmed-4207196
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Blackwell Publishing Ltd
record_format MEDLINE/PubMed
spelling pubmed-42071962014-11-13 New covalent modifications of phosphatidylethanolamine by alkanals: mass spectrometry based structural characterization and biological effects Annibal, Andrea Schubert, Kristin Wagner, Ulf Hoffmann, Ralf Schiller, Jürgen Fedorova, Maria J Mass Spectrom Research Articles The pathophysiology of numerous human disorders, such as atherosclerosis, diabetes, obesity and Alzheimer's disease, is accompanied by increased production of reactive oxygen species (ROS). ROS can oxidatively damage nearly all biomolecules, including lipids, proteins and nucleic acids. In particular, (poly)unsaturated fatty acids within the phospholipid (PL) structure are easily oxidized by ROS to lipid peroxidation products (LPP) carrying reactive carbonyl groups. Carbonylated LPP are characterized by high in vivo toxicity due to their reactivity with nucleophilic substrates (Lys-, Cys-and His-residues in proteins or amino groups of phosphatidylethanolamines [PE]). Adducts of unsaturated LPP with PE amino groups have been reported before, whereas less is known about the reactivity of saturated alkanals – which are significantly increased in vivo under oxidative stress conditions – towards nucleophilic groups of PLs. Here, we present a study of new alkanal-dipalmitoyl-phosphatidylethanolamine (DPPE) adducts by MS-based approaches, using consecutive fragmentation (MS(n)) and multiple reaction monitoring techniques. At least eight different DPPE–hexanal adducts were identified, including Schiff base and amide adducts, six of which have not been reported before. The structures of these new compounds were determined by their fragmentation patterns using MS(n) experiments. The new PE-hexanal adducts contained dimeric and trimeric hexanal conjugates, including cyclic adducts. A new pyridine ring containing adduct of DPPE and hexanal was purified by HPLC, and its biological effects were investigated. Incubation of peripheral blood mononuclear cells and monocytes with modified DPPE did not result in increased production of TNF-α as one selected inflammation marker. However, incorporation of modified DPPE into 1,2-dipalmitoleoyl-sn-phosphatidylethanolamine multilamellar vesicles resulted in a negative shift of the transition temperature, indicating a possible role of alkanal-derived modifications in changes of membrane structure. © 2014 The Authors. Journal of Mass Spectrometry published by John Wiley & Sons, Ltd. Blackwell Publishing Ltd 2014-07 2014-06-24 /pmc/articles/PMC4207196/ /pubmed/25044840 http://dx.doi.org/10.1002/jms.3373 Text en © 2014 The Authors. Journal of Mass Spectrometry published by John Wiley & Sons, Ltd. http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Annibal, Andrea
Schubert, Kristin
Wagner, Ulf
Hoffmann, Ralf
Schiller, Jürgen
Fedorova, Maria
New covalent modifications of phosphatidylethanolamine by alkanals: mass spectrometry based structural characterization and biological effects
title New covalent modifications of phosphatidylethanolamine by alkanals: mass spectrometry based structural characterization and biological effects
title_full New covalent modifications of phosphatidylethanolamine by alkanals: mass spectrometry based structural characterization and biological effects
title_fullStr New covalent modifications of phosphatidylethanolamine by alkanals: mass spectrometry based structural characterization and biological effects
title_full_unstemmed New covalent modifications of phosphatidylethanolamine by alkanals: mass spectrometry based structural characterization and biological effects
title_short New covalent modifications of phosphatidylethanolamine by alkanals: mass spectrometry based structural characterization and biological effects
title_sort new covalent modifications of phosphatidylethanolamine by alkanals: mass spectrometry based structural characterization and biological effects
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4207196/
https://www.ncbi.nlm.nih.gov/pubmed/25044840
http://dx.doi.org/10.1002/jms.3373
work_keys_str_mv AT annibalandrea newcovalentmodificationsofphosphatidylethanolaminebyalkanalsmassspectrometrybasedstructuralcharacterizationandbiologicaleffects
AT schubertkristin newcovalentmodificationsofphosphatidylethanolaminebyalkanalsmassspectrometrybasedstructuralcharacterizationandbiologicaleffects
AT wagnerulf newcovalentmodificationsofphosphatidylethanolaminebyalkanalsmassspectrometrybasedstructuralcharacterizationandbiologicaleffects
AT hoffmannralf newcovalentmodificationsofphosphatidylethanolaminebyalkanalsmassspectrometrybasedstructuralcharacterizationandbiologicaleffects
AT schillerjurgen newcovalentmodificationsofphosphatidylethanolaminebyalkanalsmassspectrometrybasedstructuralcharacterizationandbiologicaleffects
AT fedorovamaria newcovalentmodificationsofphosphatidylethanolaminebyalkanalsmassspectrometrybasedstructuralcharacterizationandbiologicaleffects