A substrate serves as a hydrogen atom donor in the enzyme-initiated catalytic mechanism of dual positional specific maize lipoxygenase-1

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dc.contributor.authorT Huon-
dc.contributor.authorS Jang-
dc.contributor.authorK Cho-
dc.contributor.authorR Rakwal-
dc.contributor.authorJ C Woo-
dc.contributor.authorI Kim-
dc.contributor.authorSeung-Wook Chi-
dc.contributor.authorO Han-
dc.date.accessioned2017-04-19T09:15:09Z-
dc.date.available2017-04-19T09:15:09Z-
dc.date.issued2009-
dc.identifier.issn0253-2964-
dc.identifier.uri10.5012/bkcs.2009.30.4.917ko
dc.identifier.urihttps://oak.kribb.re.kr/handle/201005/9178-
dc.description.abstractThe maize lipoxgyenase-1 is a non-traditional dual positional specific enzyme and the reaction proceeds via enzyme-initiated catalysis. Bioinformatic analysis indicated that the maize lipoxygenase-1 is structurally more similar to soybean LOX1 than pea LOXN2 in that it has an additional external loop (residues 318-351) in the carboxy-terminal catalytic domain. We analyzed the dependence of product distribution on concentration of linoleic acid and monitored the formation of hydroperoxyoctadecadienoic acid as a function of enzyme concentration. Product distribution was strongly influenced by substrate concentration, such that kinetically-controlled regioisomers were enriched and thermodynamically-controlled regioisomers were depleted at high substrate concentration. Kinetic studies indicated that the formation of hydroperoxyoctadecadienoic acid saturated rapidly in an enzyme concentration-dependent manner, which implied that reactivation by reoxidation of inactive Fe(II) failed to occur. Our results support the previously proposed enzyme-initiated catalytic mechanism of the maize lipoxgyenase-1 and reveals that a substrate molecule serves as a hydrogen atom donor in its enzyme-initiated catalysis.-
dc.publisherWiley-
dc.titleA substrate serves as a hydrogen atom donor in the enzyme-initiated catalytic mechanism of dual positional specific maize lipoxygenase-1-
dc.title.alternativeA substrate serves as a hydrogen atom donor in the enzyme-initiated catalytic mechanism of dual positional specific maize lipoxygenase-1-
dc.typeArticle-
dc.citation.titleBulletin of Korean Chemical Society-
dc.citation.number4-
dc.citation.endPage923-
dc.citation.startPage917-
dc.citation.volume30-
dc.contributor.affiliatedAuthorSeung-Wook Chi-
dc.contributor.alternativeNameHuon-
dc.contributor.alternativeName장성국-
dc.contributor.alternativeName조경원-
dc.contributor.alternativeNameRakwal-
dc.contributor.alternativeName우제창-
dc.contributor.alternativeName김일철-
dc.contributor.alternativeName지승욱-
dc.contributor.alternativeName한옥수-
dc.identifier.bibliographicCitationBulletin of Korean Chemical Society, vol. 30, no. 4, pp. 917-923-
dc.identifier.doi10.5012/bkcs.2009.30.4.917-
dc.subject.keywordDual positional lipoxygenase-
dc.subject.keywordEnzyme-initiated mechanism-
dc.subject.keywordKinetic control-
dc.subject.keywordRadical mechanism-
dc.subject.keywordThermodynamic control-
dc.subject.localDual positional lipoxygenase-
dc.subject.localEnzyme-initiated mechanism-
dc.subject.localKinetic control-
dc.subject.localRadical mechanism-
dc.subject.localThermodynamic control-
dc.description.journalClassY-
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Division of A.I. & Biomedical Research > 1. Journal Articles
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