Literature DB >> 11278348

Modified phosphatidylethanolamine as the active component of oxidized low density lipoprotein promoting platelet prothrombinase activity.

S Zieseniss1, S Zahler, I Muller, A Hermetter, B Engelmann.   

Abstract

We analyzed the influence of the atherogenic oxidized low density lipoproteins (LDL) on the activity of the platelet prothrombinase complex, a major contributor to overall thrombin formation in vivo. Platelet dependent thrombin generation was found to be strongly stimulated by in vitro oxidized LDL. The enhancement was additive to that observed with the platelet agonist thrombin. Oxidized LDL increased the platelet binding of annexin-V, suggesting that the augmented surface exposure of aminophospholipids promoted the prothrombinase activity. All of the stimulatory activity of the oxidized LDL could be recovered in the microemulsions prepared from the lipid portion of the modified particles. Phospholipid vesicles were prepared containing the total lipids of the oxidized LDL but lacking specifically in one lipid component. Following the selective removal of the ethanolamine phospholipids (PE) from the LDL lipids, the platelet-dependent thrombin formation was markedly reduced. Vesicles enriched with the isolated PE fraction alone enhanced the thrombin generation. Analyses with autoxidized phospholipids indicated that oxidation products of unsaturated diacyl-PE were mainly responsible for the increased prothrombinase activity. Oxidized LDL and its PE fraction lost their stimulatory activity after treatment with NaCNBH(3), a chemical reductant of Schiff base adducts. Phospholipid vesicles supplemented with synthetic aldehyde-PE adducts largely reproduced the stimulation of the thrombin generation. We conclude that the oxidized LDL particles elicit a pronounced prothrombotic response by increasing the activity of the platelet prothrombinase complex. Specific oxidative modifications of the LDL-associated ethanolamine phospholipids are mainly responsible for this stimulation.

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Year:  2001        PMID: 11278348     DOI: 10.1074/jbc.M007506200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  15 in total

1.  Identification of novel bioactive aldehyde-modified phosphatidylethanolamines formed by lipid peroxidation.

Authors:  Lilu Guo; Zhongyi Chen; Venkataraman Amarnath; Sean S Davies
Journal:  Free Radic Biol Med       Date:  2012-08-04       Impact factor: 7.376

2.  Modulation of prothrombinase assembly and activity by phosphatidylethanolamine.

Authors:  Rinku Majumder; Xiaoe Liang; Mary Ann Quinn-Allen; William H Kane; Barry R Lentz
Journal:  J Biol Chem       Date:  2011-08-22       Impact factor: 5.157

3.  Increased BMI and Blood Lipids Are Associated With a Hypercoagulable State in the Moli-sani Cohort.

Authors:  Romy de Laat-Kremers; Augusto Di Castelnuovo; Lisa van der Vorm; Simona Costanzo; Marisa Ninivaggi; Chiara Cerletti; Dana Huskens; Amalia De Curtis; Alessandro Gialluisi; Cuicui Bai; Giovanni de Gaetano; Dongmei Yin; Maria Benedetta Donati; Bas de Laat; Licia Iacoviello
Journal:  Front Cardiovasc Med       Date:  2022-06-16

4.  Phospholipids and oxophospholipids in atherosclerotic plaques at different stages of plaque development.

Authors:  Amir Ravandi; Saeid Babaei; Ramsey Leung; Juan Carlos Monge; George Hoppe; Henry Hoff; Hiroshi Kamido; Arnis Kuksis
Journal:  Lipids       Date:  2004-02       Impact factor: 1.880

5.  Isolevuglandins covalently modify phosphatidylethanolamines in vivo: detection and quantitative analysis of hydroxylactam adducts.

Authors:  Wei Li; James M Laird; Liang Lu; Sanjoy Roychowdhury; Laura E Nagy; Rong Zhou; John W Crabb; Robert G Salomon
Journal:  Free Radic Biol Med       Date:  2009-09-12       Impact factor: 7.376

6.  Characterization of acrolein-glycerophosphoethanolamine lipid adducts using electrospray mass spectrometry.

Authors:  Karin A Zemski Berry; Robert C Murphy
Journal:  Chem Res Toxicol       Date:  2007-07-18       Impact factor: 3.739

Review 7.  Lipid peroxidation generates biologically active phospholipids including oxidatively N-modified phospholipids.

Authors:  Sean S Davies; Lilu Guo
Journal:  Chem Phys Lipids       Date:  2014-04-02       Impact factor: 3.329

Review 8.  Protein modification by aldehydophospholipids and its functional consequences.

Authors:  Ute Stemmer; Albin Hermetter
Journal:  Biochim Biophys Acta       Date:  2012-03-16

9.  Non-enzymatic modification of aminophospholipids by carbonyl-amine reactions.

Authors:  Alba Naudí; Mariona Jové; Victòria Ayala; Rosanna Cabré; Manuel Portero-Otín; Reinald Pamplona
Journal:  Int J Mol Sci       Date:  2013-02-05       Impact factor: 5.923

10.  Phosphatidylethanolamine critically supports internalization of cell-penetrating protein C inhibitor.

Authors:  Petra Baumgärtner; Margarethe Geiger; Susanne Zieseniss; Julia Malleier; James A Huntington; Karin Hochrainer; Edith Bielek; Mechthild Stoeckelhuber; Kirsten Lauber; Dag Scherfeld; Petra Schwille; Katja Wäldele; Klaus Beyer; Bernd Engelmann
Journal:  J Cell Biol       Date:  2007-11-19       Impact factor: 10.539

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