Novel pathways of oleic and cis-vaccenic acid biosynthesis by an enzymatic double-bond shifting reaction in higher plants

The novel pathways of oleic acid formation from cis-vaccenic ( cis-11-octadecenoic) acid and of cis-vaccenic acid formation from oleic acid by enzymatic positional isomerization have been proposed in higher plants, based on stable-isotope experiments using[2,2- 2H 2] cis-vaccenate or [2,2- 2H 2]olea...

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Veröffentlicht in:FEBS letters 1990-05, Vol.264 (2), p.228-230
Hauptverfasser: Shibahara, Akira, Yamamoto, Kohei, Takeoka, Mariko, Kinoshita, Akemi, Kajimoto, Goro, Nakayama, Takao, Noda, Manjiro
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Sprache:eng
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Zusammenfassung:The novel pathways of oleic acid formation from cis-vaccenic ( cis-11-octadecenoic) acid and of cis-vaccenic acid formation from oleic acid by enzymatic positional isomerization have been proposed in higher plants, based on stable-isotope experiments using[2,2- 2H 2] cis-vaccenate or [2,2- 2H 2]oleate as an immediate precursor. A pulp homogenate and also pulp slices prepared from developing kaki ( Diospyros kaki) fruit could catalyze these hitherto unknown isomerizations. This suggests the presence of a new type of isomerase responsible for the double-bond shifting reaction without cis- trans isomerization in the middle of fatty acid carbon chains.
ISSN:0014-5793
1873-3468
DOI:10.1016/0014-5793(90)80254-G