Novel oxylipins formed from docosahexaenoic acid by potato lipoxygenase-10(S)-hydroxydocosahexaenoic acid and 10,20-dihydroxydocosahexaenoic acid

被引:17
作者
Butovich, IA [1 ]
Hamberg, M [1 ]
Rådmark, O [1 ]
机构
[1] Karolinska Inst, Dept Med Biochem & Biophys, Div Physiol Chem 2, S-17177 Stockholm, Sweden
关键词
D O I
10.1007/s11745-005-1379-z
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
Potato tuber lipoxygenase (ptLOX) has been shown to catalyze the aerobic formation of at least four major oxygenated derivatives of DHA. Two of the products-7,1 7(S)- and 10,11 7(S)-dihydro(pero)xy-DHA [7,17- and 10,17-diH(P)DHA]were formed from soybean 15-LOX-derived 17(S)-hydro(pero)xy-DHA [17(S)-H(P)DHA], whereas two novel oxylipin compounds-10(S)-hydro(pero)xy-DHA and 10,20-dihydro(pero)xy-DHA [10(S)-H(P)DHA and 10,20-diH(P)DHA, respectively]-were the major direct products of DHA oxidation by ptLOX. The reactions proceeded relatively slowly but could be stimulated by catalytic amounts of SDS. Micromolar concentrations of 10(S)-HPDHA effectively abolished the kinetic lag period of ptLOX activation. Enzymatic activity with DHA or I 7(S)-HPDHA as substrate was about 8% of that with linoleic acid-a standard natural ptLOX substrate-whereas 1 7(S)-HDHA was converted at a rate of 1 %. The enzyme was relatively unstable and quickly inactivated during the reaction with DHA on with I 7(S)-HPDHA (first-order kinetic constant of inactivation k(in) = 1.5 +/- 0.3 min(-1)), but not with 17(S)-HDHA. Both 7,17- and 10,20-diH(P)DHA were clearly products of double oxygenation catalyzed by soybean 15-LOX and/or ptLOX. Our observation that ptLOX could convert 17-HDHA to 10,17-diH(P)DHA indicates that this dihydroxylated derivative of DHA also can be formed via a double lipoxygenation mechanism.
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页码:249 / 257
页数:9
相关论文
共 29 条
[1]   DOUBLE DIOXYGENATION OF ARACHIDONIC-ACID BY SOYBEAN LIPOXYGENASE-1 [J].
BILD, GS ;
RAMADOSS, CS ;
LIM, S ;
AXELROD, B .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1977, 74 (03) :949-954
[2]  
Butovich I. A., 1992, Biokhimiya, V57, P1472
[3]  
BUTOVICH IA, 1990, BIOORG KHIM+, V16, P270
[4]   Oxidation of linoleyl alcohol by potato tuber lipoxygenase: Possible mechanism and the role of carboxylic group in substrate binding [J].
Butovich, IA ;
Lukyanova, SM ;
Reddy, CC .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1998, 249 (02) :344-349
[5]  
BUTOVICH IA, 1991, DOKL AKAD NAUK SSSR+, V316, P1486
[6]  
BUTOVICH IA, 1989, UKR BIOKHIM ZH+, V61, P106
[7]   Oxidation of linoleyl alcohol by potato tuber lipoxygenase:: Kinetics and positional, stereo, and geometrical (cis, trans) specificity of the reaction [J].
Butovich, IA ;
Luk'yanova, SM ;
Reddy, CC .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2000, 378 (01) :65-77
[8]   Inhibition of potato lipoxygenase by linoleyl hydroxamic acid: kinetic and EPR spectral evidence for a two-step reaction [J].
Butovich, IA ;
Reddy, CC .
BIOCHEMICAL JOURNAL, 2002, 365 (365) :865-871
[9]   Enzyme-catalyzed and enzyme-triggered pathways in dioxygenation of 1-monolinoleoyl-rac-glycerol by potato tuber lipoxygenase [J].
Butovich, IA ;
Reddy, CC .
BIOCHIMICA ET BIOPHYSICA ACTA-PROTEIN STRUCTURE AND MOLECULAR ENZYMOLOGY, 2001, 1546 (02) :379-398
[10]   5(S),15(S)-Dihydroxyeicosatetraenoic acid and lipoxin generation in human polymorphonuclear cells: Dual specificity of 5-lipoxygenase towards endogenous and exogenous precursors [J].
Chavis, C ;
Vachier, I ;
Chanez, P ;
Bousquet, J ;
Godard, P .
JOURNAL OF EXPERIMENTAL MEDICINE, 1996, 183 (04) :1633-1643