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Conversion of 5-(1,2-epoxy-2,6,6-trimethylcyclohexyl)-3-methylpenta-cis-2-trans-4-dienoic acid into abscisic acid in plants.植物中5-(1,2-环氧-2,6,6-三甲基环己基)-3-甲基戊-顺-2-反-4-二烯酸向脱落酸的转化
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Biosynthesis of abscisic acid by the non-mevalonate pathway in plants, and by the mevalonate pathway in fungi.植物中脱落酸通过非甲羟戊酸途径合成,而真菌中则通过甲羟戊酸途径合成。
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引用本文的文献

1
Retention of the 4-pro-R hydrogen atom of mevalonate at C-2,2' of bacterioruberin in Halobacterium halobium.嗜盐栖热菌中细菌红素C-2,2'位甲羟戊酸4-pro-R氢原子的保留。
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2
Carotenoid biosynthesis in a Flavobacterium sp.: stereochemistry of hydrogen elimination in the desaturation of phytoene to lycopene, rubixanthin and zeaxanthin.黄杆菌属细菌中的类胡萝卜素生物合成:八氢番茄红素去饱和生成番茄红素、玉红黄质和玉米黄质过程中氢消除的立体化学
Biochem J. 1973 Aug;134(4):1115-7. doi: 10.1042/bj1341115.

本文引用的文献

1
Substrate stereochemistry in squalene biosynthesis: The first Ciba medal lecture.角鲨烯生物合成中的底物立体化学:首届汽巴奖章讲座
Biochem J. 1966 Dec;101(3):553.b4-568.
2
The biosynthesis of cyclic carotenes.环状类胡萝卜素的生物合成。
Biochem J. 1967 Oct;105(1):99-105. doi: 10.1042/bj1050099.
3
Estimation of sphingomyelin.鞘磷脂的测定
Nature. 1965 May 15;206(985):715-6. doi: 10.1038/206715b0.
4
Incorporation of tritium from [(4R)-4-3H]mevalonate into abscisic acid.将[(4R)-4-³H]甲羟戊酸中的氚掺入脱落酸。
Biochem J. 1969 Aug;113(5):895-7. doi: 10.1042/bj1130895.
5
Biosynthesis of xanthophylls in higher plants: stereochemistry of hydroxylation at C-3.高等植物中叶黄素的生物合成:C-3位羟基化的立体化学
Biochem J. 1969 Apr;112(3):383-5. doi: 10.1042/bj1120383.
6
Conversion of 5-(1,2-epoxy-2,6,6-trimethylcyclohexyl)-3-methylpenta-cis-2-trans-4-dienoic acid into abscisic acid in plants.植物中5-(1,2-环氧-2,6,6-三甲基环己基)-3-甲基戊-顺-2-反-4-二烯酸向脱落酸的转化
Biochem J. 1970 Oct;119(4):727-34. doi: 10.1042/bj1190727.
7
The structure and chemical transformations of xanthoxin.黄质醛的结构与化学转化
Tetrahedron Lett. 1970 Oct(47):4071-4. doi: 10.1016/s0040-4039(01)98668-x.
8
Synthesis and configurational assay of asymmetric methyl groups.不对称甲基的合成与构型测定
Eur J Biochem. 1970 May 1;14(1):1-13. doi: 10.1111/j.1432-1033.1970.tb00254.x.
9
Optical rotatory dispersion of carotenoids.类胡萝卜素的旋光色散
J Chem Soc Perkin 1. 1969;18:2527-44. doi: 10.1039/j39690002527.
10
Sterol biosynthesis.甾醇生物合成
Biochem Soc Symp. 1970;29:45-77.

脱落酸中双键形成的立体化学方面

Stereochemical aspects of the formation of double bonds in abscisic acid.

作者信息

Milborrow B V

出版信息

Biochem J. 1972 Aug;128(5):1135-46. doi: 10.1042/bj1281135.

DOI:10.1042/bj1281135
PMID:4643698
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1174002/
Abstract

The stereochemistry of the hydrogen elimination that occurs during the formation of the Delta(4)- and Delta(2)'-double bonds of abscisic acid has been determined from the (14)C/(3)H ratios in abscisic acid biosynthesized by avocado fruit from [2-(14)C,(2R)-2-(3)H(1)]-, [2-(14)C,(2S)-2-(3)H(1)]- and [2-(14)C,(5S)-5-(3)H(1)]-mevalonate. Setting the (14)C/(3)H ratio at 3:3 for [2-(14)C,(2R)-2-(3)H(1)]mevalonate, the corresponding ratio in derived methyl abscisate was 3:2.28; the analogous ratio for methyl abscisate from [2-(14)C,(2S)-2-(3)H(1)]mevalonate was 3:1.63. Removal of the 3'-hydrogen atom of abscisic acid by base-catalysed exchange altered the ratios to 3:1.55 and 3:1.44 respectively. It was concluded that this 3'-hydrogen atom is derived from the pro-2R-hydrogen atom of mevalonate. Removal of the 4-hydrogen atom from methyl abscisate by formation of a derivative, a lactone, lacking this hydrogen atom changed the ratio to 3:1.04 for material derived from [2-(14)C,(2R)-2-(3)H(1)]-mevalonate and to 3:1.05 for [2-(14)C,(2S)-2-(3)H(1)]mevalonate, showing that this hydrogen atom also is derived from the pro-2R-hydrogen atom of mevalonate. These ratios of the lactones are consistent with their retaining one (3)H atom at the 6'-methyl position of abscisic acid from the [(2R)-2-(3)H(1)]- and [(2S)-2-(3)H(1)]-mevalonate. The presence of some label at positions 3' and 4 when [(2S)-2-(3)H(1)]mevalonate was the precursor is attributed to the action of isopentenyl pyrophosphate isomerase. The hydrogen atom at C-5 of abscisic acid is derived from the pro-5S-hydrogen atom of mevalonate.

摘要

通过鳄梨果实由[2-(14)C,(2R)-2-(3)H(1)]-、[2-(14)C,(2S)-2-(3)H(1)]-和[2-(14)C,(5S)-5-(3)H(1)]-甲羟戊酸生物合成脱落酸过程中形成的Δ(4)-和Δ(2)'-双键时发生的氢消除的立体化学,已根据脱落酸中的(14)C/(3)H比率确定。对于[2-(14)C,(2R)-2-(3)H(1)]甲羟戊酸,将(14)C/(3)H比率设定为3:3,衍生的脱落酸甲酯中的相应比率为3:2.28;来自[2-(14)C,(2S)-2-(3)H(1)]甲羟戊酸的脱落酸甲酯的类似比率为3:1.63。通过碱催化交换去除脱落酸的3'-氢原子后,比率分别变为3:1.55和3:1.44。得出结论,该3'-氢原子源自甲羟戊酸的前-2R-氢原子。通过形成缺乏该氢原子的衍生物内酯从脱落酸甲酯中去除4-氢原子,对于源自[2-(14)C,(2R)-2-(3)H(1)]-甲羟戊酸的物质,比率变为3:1.04,对于[2-(14)C,(2S)-2-(3)H(1)]甲羟戊酸,比率变为3:1.05,表明该氢原子也源自甲羟戊酸的前-2R-氢原子。这些内酯的比率与它们在脱落酸的6'-甲基位置保留一个(3)H原子一致,该(3)H原子来自[(2R)-2-(3)H(1)]-和[(2S)-2-(3)H(1)]-甲羟戊酸。当[(2S)-2-(3)H(1)]甲羟戊酸为前体时,在3'和4位存在一些标记归因于异戊烯基焦磷酸异构酶的作用。脱落酸C-5位的氢原子源自甲羟戊酸的前-5S-氢原子。