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17(S),18(R)-epoxyeicosatetraenoic acid generated by cytochrome P450 BM-3 from Bacillus megaterium inhibits the development of contact hypersensitivity via G-protein-coupled receptor 40-mediated neutrophil suppression.
Saika, Azusa; Nagatake, Takahiro; Kishino, Shigenobu; Park, Si-Bum; Honda, Tetsuya; Matsumoto, Naomi; Shimojou, Michiko; Morimoto, Sakiko; Tiwari, Prabha; Node, Eri; Hirata, So-Ichiro; Hosomi, Koji; Kabashima, Kenji; Ogawa, Jun; Kunisawa, Jun.
Affiliation
  • Saika A; Laboratory of Vaccine Materials Center for Vaccine and Adjuvant Research Laboratory of Gut Environmental System National Institutes of Biomedical Innovation Health and Nutrition (NIBIOHN) Osaka Japan.
  • Nagatake T; Graduate School of Pharmaceutical Sciences Osaka University Osaka Japan.
  • Kishino S; Laboratory of Vaccine Materials Center for Vaccine and Adjuvant Research Laboratory of Gut Environmental System National Institutes of Biomedical Innovation Health and Nutrition (NIBIOHN) Osaka Japan.
  • Park SB; Division of Applied Life Sciences Graduate School of Agriculture Kyoto University Kyoto Japan.
  • Honda T; Division of Applied Life Sciences Graduate School of Agriculture Kyoto University Kyoto Japan.
  • Matsumoto N; Department of Dermatology Graduate School of Medicine Kyoto University Kyoto Japan.
  • Shimojou M; Laboratory of Vaccine Materials Center for Vaccine and Adjuvant Research Laboratory of Gut Environmental System National Institutes of Biomedical Innovation Health and Nutrition (NIBIOHN) Osaka Japan.
  • Morimoto S; Laboratory of Vaccine Materials Center for Vaccine and Adjuvant Research Laboratory of Gut Environmental System National Institutes of Biomedical Innovation Health and Nutrition (NIBIOHN) Osaka Japan.
  • Tiwari P; Laboratory of Vaccine Materials Center for Vaccine and Adjuvant Research Laboratory of Gut Environmental System National Institutes of Biomedical Innovation Health and Nutrition (NIBIOHN) Osaka Japan.
  • Node E; Laboratory of Vaccine Materials Center for Vaccine and Adjuvant Research Laboratory of Gut Environmental System National Institutes of Biomedical Innovation Health and Nutrition (NIBIOHN) Osaka Japan.
  • Hirata SI; Laboratory of Vaccine Materials Center for Vaccine and Adjuvant Research Laboratory of Gut Environmental System National Institutes of Biomedical Innovation Health and Nutrition (NIBIOHN) Osaka Japan.
  • Hosomi K; Laboratory of Vaccine Materials Center for Vaccine and Adjuvant Research Laboratory of Gut Environmental System National Institutes of Biomedical Innovation Health and Nutrition (NIBIOHN) Osaka Japan.
  • Kabashima K; Graduate School of Medicine Kobe University Hyogo Japan.
  • Ogawa J; Laboratory of Vaccine Materials Center for Vaccine and Adjuvant Research Laboratory of Gut Environmental System National Institutes of Biomedical Innovation Health and Nutrition (NIBIOHN) Osaka Japan.
  • Kunisawa J; Department of Dermatology Graduate School of Medicine Kyoto University Kyoto Japan.
FASEB Bioadv ; 2(1): 59-71, 2020 Jan.
Article in En | MEDLINE | ID: mdl-32123857
Dietary intake of ω3 polyunsaturated fatty acids such as eicosapentaenoic acid and docosahexaenoic acid is beneficial for health control. We recently identified 17,18-epoxyeicosatetraenoic acid (17,18-EpETE) as a lipid metabolite endogenously generated from eicosapentaenoic acid that exhibits potent anti-allergic and anti-inflammatory properties. However, chemically synthesized 17,18-EpETE is enantiomeric due to its epoxy group-17(S),18(R)-EpETE and 17(R),18(S)-EpETE. In this study, we demonstrated stereoselective differences of 17(S),18(R)-EpETE and 17(R),18(S)-EpETE in amelioration of skin contact hypersensitivity and found that anti-inflammatory activity was detected in 17(S),18(R)-EpETE, but not in 17(R),18(S)-EpETE. In addition, we found that cytochrome P450 BM-3 derived from Bacillus megaterium stereoselectively converts EPA into 17(S),18(R)-EpETE, which effectively inhibited the development of skin contact hypersensitivity by inhibiting neutrophil migration in a G protein-coupled receptor 40-dependent manner. These results suggest the new availability of a bacterial enzyme to produce a beneficial lipid mediator, 17(S),18(R)-EpETE, in a stereoselective manner. Our findings highlight that bacterial enzymatic conversion of fatty acid is a promising strategy for mass production of bioactive lipid metabolites.
Key words

Full text: 1 Database: MEDLINE Type of study: Prognostic_studies Language: En Journal: FASEB Bioadv Year: 2020 Type: Article

Full text: 1 Database: MEDLINE Type of study: Prognostic_studies Language: En Journal: FASEB Bioadv Year: 2020 Type: Article