Hydroperoxy-arachidonic acid mediated n-hexanal and (Z)-3- and (E)-2-nonenal formation in Laminaria angustata

被引:41
作者
Boonprab, K
Matsui, K
Akakabe, Y
Yotsukura, N
Kajiwara, T [1 ]
机构
[1] Yamaguchi Univ, Fac Agr, Dept Biol Chem, Yamaguchi 7538515, Japan
[2] Hokkaido Univ, Fac Sci, Inst Algolog Res, Sapporo, Hokkaido 0510003, Japan
关键词
Laminaria angustata; Laminariaceae; brown algae; lipoxygenase-hydroperoxide lyase pathway; (S)-12-hydroperoxy arachidonic acid; (S)-15-hydroperoxy arachidonic acid; n-hexanal; nonenal;
D O I
10.1016/S0031-9422(03)00026-8
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In higher plants, C6 and C9 aldehydes are formed from C18 fatty acids, such as linoleic or linolenic acid, through formation of 13- and 9-hydroperoxides, followed by their stereospecific cleavage by fatty acid hydroperoxide lyases (HPL). Some marine algae can also form C6 and C9 aldehydes, but their precise biosynthetic pathway has not been elucidated fully. In this study, we show that Laminaria angustata, a brown alga, formed C6 and C9 aldehydes enzymatically. The alga forms C9 aldehydes exclusively from the C20 fatty acid, arachidonic acid, while C6 aldehydes are derived either from C18 or from C20 fatty acid. The intermediates in the biosynthetic pathway were trapped by using a glutathione/glutathione peroxidase system, and subjected to structural analyses. Formation of (S)-12-, and (S)-15-hydroperoxy arachidonic acids [12(S)HPETE and 15(S)HPETE] from arachidonic acid was confirmed by chiral HPLC analyses. These account respectively for C9 aldehyde and C6 aldehyde formation, respectively. The HPL that catalyzes formation of C9 aldehydes from 12(S)HPETE seems highly specific for hydroperoxides of C20 fatty acids. (C) 2003 Elsevier Ltd. All rights reserved.
引用
收藏
页码:669 / 678
页数:10
相关论文
共 39 条
[31]  
2-U
[32]   Involvement of lipoxygenase-dependent production of fatty acid hydroperoxides in the development of the hypersensitive cell death induced by cryptogein on tobacco leaves [J].
Rustérucci, C ;
Montillet, JL ;
Agnel, JP ;
Battesti, C ;
Alonso, B ;
Knoll, A ;
Bessoule, JJ ;
Etienne, P ;
Suty, L ;
Blein, JP ;
Triantaphylidès, C .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (51) :36446-36455
[33]  
Schnurr K, 1996, J BIOL CHEM, V271, P4653
[34]  
SEKIYA J, 1984, PLANT CELL PHYSIOL, V25, P269
[35]   Evidence for the presence of phospholipid hydroperoxide glutathione peroxidase in human platelets: implications for its involvement in the regulatory network of the 12-lipoxygenase pathway of arachidonic acid metabolism [J].
Sutherland, M ;
Shankaranarayanan, R ;
Schewe, T ;
Nigam, S .
BIOCHEMICAL JOURNAL, 2001, 353 :91-100
[36]  
WEITZEL F, 1993, J BIOL CHEM, V268, P6288
[37]   ENZYMATIC OXIDATION OF LINOLENIC ACID TO 1,Z-5-OCTADIEN-3-OL, Z-2,Z-5-OCTADIEN-1-OL AND 10-OXO-E-8-DECENOIC ACID BY A PROTEIN-FRACTION FROM MUSHROOMS (PSALLIOTA-BISPORA) [J].
WURZENBERGER, M ;
GROSCH, W .
LIPIDS, 1986, 21 (04) :261-266
[38]   THE FORMATION OF 1-OCTEN-3-OL FROM THE 10-HYDROPEROXIDE ISOMER OF LINOLEIC-ACID BY A HYDROPEROXIDE LYASE IN MUSHROOMS (PSALLIOTA-BISPORA) [J].
WURZENBERGER, M ;
GROSCH, W .
BIOCHIMICA ET BIOPHYSICA ACTA, 1984, 794 (01) :25-30
[39]   ORIGIN OF THE OXYGEN IN THE PRODUCTS OF THE ENZYMATIC CLEAVAGE REACTION OF LINOLEIC-ACID TO 1-OCTEN-3-OL AND 10-OXO-TRANS-8-DECENOIC ACID IN MUSHROOMS (PSALLIOTA-BISPORA) [J].
WURZENBERGER, M ;
GROSCH, W .
BIOCHIMICA ET BIOPHYSICA ACTA, 1984, 794 (01) :18-24