Literature DB >> 15912886

Cyclooxygenase-dependent lipid-modification of brain proteins.

Olivier Boutaud1, Katrin I Andreasson, Irène Zagol-Ikapitte, John A Oates.   

Abstract

Substantial evidence indicates that both beta-amyloid and cyclooxygenase activity contribute to the pathogenesis of Alzheimer disease. The immediate product of the cyclooxygenases, prostaglandin H2, rapidly rearranges in aqueous solution, with approximately 20% being converted to levuglandins E2 and D2. These gamma-ketoaldehydes are highly reactive and rapidly adduct to accessible amine groups on macromolecules, particularly the epsilon-amine of lysine residues on proteins. The immediate LG-lysine adducts are themselves reactive, and can covalently crosslink proteins. PGH2, acting via LGs, accelerates the formation of the type of oligomers of amyloid beta that has been associated with neurotoxicity. In this review, we discuss the cyclooxygenase-dependent lipid-modification of proteins by levuglandins in vitro, in cells in culture and in vivo in transgenic mice over-expressing COX in the brain.

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Year:  2005        PMID: 15912886     DOI: 10.1111/j.1750-3639.2005.tb00510.x

Source DB:  PubMed          Journal:  Brain Pathol        ISSN: 1015-6305            Impact factor:   6.508


  15 in total

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8.  Cyclooxygenase inhibition targets neurons to prevent early behavioural decline in Alzheimer's disease model mice.

Authors:  Nathaniel S Woodling; Damien Colas; Qian Wang; Paras Minhas; Maharshi Panchal; Xibin Liang; Siddhita D Mhatre; Holden Brown; Novie Ko; Irene Zagol-Ikapitte; Marieke van der Hart; Taline V Khroyan; Bayarsaikhan Chuluun; Prachi G Priyam; Ginger L Milne; Arash Rassoulpour; Olivier Boutaud; Amy B Manning-Boğ; H Craig Heller; Katrin I Andreasson
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9.  Amyloid Plaque-Associated Oxidative Degradation of Uniformly Radiolabeled Arachidonic Acid.

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10.  Characterization of scavengers of gamma-ketoaldehydes that do not inhibit prostaglandin biosynthesis.

Authors:  Irene Zagol-Ikapitte; Venkataraman Amarnath; Manju Bala; L Jackson Roberts; John A Oates; Olivier Boutaud
Journal:  Chem Res Toxicol       Date:  2010-01       Impact factor: 3.739

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