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Am J Physiol Gastrointest Liver Physiol 293: G1252-G1261, 2007. First published October 4, 2007; doi:10.1152/ajpgi.00369.2007
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MUCOSAL BIOLOGY

Biological role, protein expression, subcellular localization, and oxidative stress response of paraoxonase 2 in the intestine of humans and rats

Emile Levy,1 Karine Trudel,1 Moise Bendayan,2 Ernest Seidman,3 Edgard Delvin,4 Mounib Elchebly,4 Jean-Claude Lavoie,5 Louis-Philippe Precourt,1 Devendra Amre,5 and Daniel Sinnett5

Departments of 1Nutrition, 2Pathology and Cellular Biology, 4Biochemistry, and 5Pediatrics, Université de Montréal, Research Centre, CHU Sainte Justine, Montréal; and 3Research Institute, McGill University, Montréal, Québec, Canada

Submitted 13 August 2007 ; accepted in final form 29 September 2007

Oxidative stress is a cardinal manifestation of various intestinal disorders. However, very little knowledge is available on the intestine's inherent defense mechanisms against free radicals. This study was designed to determine the protein expression, subcellular localization and oxidative stress response of paraoxonase 2 (PON2), a member of a powerful antioxidant family in human and rat intestine. Biochemical and ultrastructural experiments all showed a substantial expression of PON2 in human and rat intestine. Western blot analysis disclosed higher levels of PON2 in the jejunum than in the duodenum, ileum, and colon. Cell fractionation revealed a predominant PON2 association with microsomes and lysosomes in the human jejunum, which differed from that in rats. PON2 was detected in the intestine as early as week 15 of gestation and was significantly increased by week 20. Iron ascorbate-mediated lipid peroxidation induced a marked decrease in PON2 expression in intestinal specimens coincidental to an abundant rise in malondialdehyde (MDA). On the other hand, preincubation with potent antioxidants, such as butylated hydroxytoluene, Trolox, and N-acetylcysteine, prevented iron-ascorbate-generating PON2 reduction in parallel with MDA suppression. Finally, the preincubation of permeabilized Caco-2 cells with purified PON2 led to a protection against iron-ascorbate-induced lipid peroxidation. These observations demonstrate that the human intestine is preferentially endowed with a marked PON2 expression compared with the rat intestine and this expression shows a developmental and intracellular pattern of distribution. Furthermore, our observations suggest PON2 protective effects against prooxidant stimuli in the small intestine.

subcellular organelles; antioxidants; enterocytes; Caco-2 cells



Address for reprint requests and other correspondence: E. Levy, GI-Nutrition Unit, CHU Sainte-Justine, 3175 Côte Ste-Catherine, Montreal, Quebec, Canada, H3T 1C5 (e-mail: emile.levy{at}recherche-ste-justine.qc.ca)




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[Abstract] [Full Text] [PDF]




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