Enzymic pathway to ethyl vinyl ketone and 2-pentenal in soybean preparations

被引:48
作者
Gardner, HW
Grove, MJ
Salch, YP
机构
[1] Phytoproducts Research Unit, Natl. Ctr. for Agric. Utiliz. Res., U.S. Department of Agriculture, Peoria
关键词
lipoxygenase; 1-penten-3-ol; 2(Z)-penten-1-ol; alcohol dehydrogenase; ethyl vinyl ketone; 2-pentenal; linolenic acid; hydroperoxide; flavor;
D O I
10.1021/jf950509r
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Previous work. by this laboratory showed that under anaerobic conditions and the presence of a polyunsaturated fatty acid, soybean (Glycine max L.) lipoxygenase isoenzymes converted a lipoxygenase-catalyzed oxidation product of Linolenic acid, 13(S)-hydroperoxy-9(Z),11(E),15(Z)-octadecatrienoic acid, into 1-penten-3-ol, 2(Z)-penten-1-ol, and 13-oxo-9(Z),11(E)-tridecadienoic acid. It seemed plausible that the ''raw bean odor'', ethyl vinyl ketone, previously isolated from soybean homogenates by other workers could arise from oxidation of 1-penten-3-ol by alcohol dehydrogenase. It is shown here that both ethyl vinyl ketone and 2-pentenal are produced by a soybean preparation after anaerobic incubation with 13(S)-hydroperoxy-9(Z),11(E),15(Z)-octadecatrienoic acid and linolenic acid and that NAD(+) stimulated the formation of 2-pentenal. In the presence of NAD+, two separable isoenzymes of soybean alcohol dehydrogenase were capable of utilizing as substrates both 1-penten-3-ol and 2(Z)-penten-1-ol, as well as (2E)-hexen-1-ol. In terms of substrate preference indicated by K-m, the order was 2(E)-hexen-1-ol > 2(Z)-penten-1-ol > 1-penten 3-ol. Because ethyl vinyl ketone formed in the presence of only 13(S)-hydroperoxy-9(Z),11(E),15(Z)-octadecatrienoic acid and linolenic acid in the absence of NAD(+), another pathway also seemed possible.
引用
收藏
页码:882 / 886
页数:5
相关论文
共 12 条
[1]   CHARACTERIZATION OF ALCOHOL-DEHYDROGENASE IN YOUNG SOYBEAN SEEDLINGS [J].
BRZEZINSKI, R ;
TALBOT, BG ;
BROWN, D ;
KLIMUSZKO, D ;
BLAKELEY, SD ;
THIRION, JP .
BIOCHEMICAL GENETICS, 1986, 24 (9-10) :643-656
[2]   READILY ACCESSIBLE 12-I-5 OXIDANT FOR THE CONVERSION OF PRIMARY AND SECONDARY ALCOHOLS TO ALDEHYDES AND KETONES [J].
DESS, DB ;
MARTIN, JC .
JOURNAL OF ORGANIC CHEMISTRY, 1983, 48 (22) :4155-4156
[3]   HYDROPEROXIDE LYASE AND OTHER HYDROPEROXIDE-METABOLIZING ACTIVITY IN TISSUES OF SOYBEAN, GLYCINE-MAX [J].
GARDNER, HW ;
WEISLEDER, D ;
PLATTNER, RD .
PLANT PHYSIOLOGY, 1991, 97 (03) :1059-1072
[4]   ANAEROBIC REACTION BETWEEN LIPOXYGENASE, LINOLEIC ACID AND ITS HYDROPEROXIDES [J].
GARSSEN, GJ ;
VLIEGENTHART, JF ;
BOLDINGH, J .
BIOCHEMICAL JOURNAL, 1971, 122 (03) :327-+
[5]   DIFFERENCES IN AMOUNT AND RANGE OF VOLATILE CARBONYL-COMPOUNDS FORMED BY LIPOXYGENASE ISOENZYMES FROM SOYBEANS [J].
GROSCH, W ;
LASKAWY, G .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1975, 23 (04) :791-794
[6]   LIPOXYGENASE-MEDIATED PENTANE PRODUCTION - CHARACTERIZATION OF SYSTEM [J].
JOHNS, EB ;
PATTEE, HE ;
SINGLETO.JA .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1973, 21 (04) :570-573
[7]   ALCOHOL-DEHYDROGENASE AND PYRUVATE DECARBOXYLASE ACTIVITY IN LEAVES AND ROOTS OF EASTERN COTTONWOOD (POPULUS-DELTOIDES BARTR) AND SOYBEAN (GLYCINE-MAX L) [J].
KIMMERER, TW .
PLANT PHYSIOLOGY, 1987, 84 (04) :1210-1213
[8]   AN ENZYMATIC FORMATION OF 13-OXO-TRIDECA-9,11-DIENOIC ACID FROM 23-HYDROPEROXYLINOLENIC ACID BY A HOMOLYTIC HYDROPEROXIDE LYASE IN ELICITOR-TREATED SOYBEAN COTYLEDONS [J].
KONDO, Y ;
HASHIDOKO, Y ;
MIZUTANI, J .
BIOCHIMICA ET BIOPHYSICA ACTA-LIPIDS AND LIPID METABOLISM, 1995, 1255 (01) :9-15
[9]   N-HEXANOL FORMATION FROM N-HEXANAL BY ENZYME ACTION IN SOYBEAN EXTRACTS [J].
MATOBA, T ;
SAKURAI, A ;
TANINOKI, N ;
SAITOH, T ;
KARIYA, F ;
KUWAHATA, M ;
YUKAWA, N ;
FUJINO, S ;
HASEGAWA, K .
JOURNAL OF FOOD SCIENCE, 1989, 54 (06) :1607-1610
[10]   IDENTIFICATION OF A VOLATILE COMPONENT IN SOYBEANS THAT CONTRIBUTES TO RAW BEAN FLAVOR [J].
MATTICK, LR ;
HAND, DB .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1969, 17 (01) :15-&