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1.
Biochim Biophys Acta Mol Cell Biol Lipids ; 1864(11): 1580-1590, 2019 11.
Artículo en Inglés | MEDLINE | ID: mdl-31330195

RESUMEN

Enzymes of CYP74 family widespread in higher plants control the metabolism of fatty acid hydroperoxides to numerous bioactive oxylipins. Hydroperoxide lyases (HPLs, synonym: hemiacetal synthases) of CYP74B subfamily belong to the most common CYP74 enzymes. HPLs isomerize the hydroperoxides to the short-lived hemiacetals, which are spontaneously decomposed to aldehydes and aldoacids. All CYP74Bs studied yet except the CYP74B16 (flax divinyl ether synthase, LuDES) possessed the 13-HPL activity. Present work reports the cloning of the expressed CYP74B33 gene of carrot (Daucus carota L.) and studies of catalytic properties of the recombinant CYP74B33 protein. In contrast to all CYP74B proteins studied yet, CYP74B33 behaved differently in few respects. Firstly, the preferred substrates of CYP74B33 are 9-hydroperoxides. Secondly and most importantly, CYP74B33 exhibits the 9-allene oxide synthase (AOS) activity. For example, the 9(S)-hydroperoxide of linoleic acid (9-HPOD) underwent the conversion to α-ketol via the short-lived allene oxide. Uncommonly, the 9-HPOD conversion affords a minority of cis-10-oxo-11-phytoenoic acid, which is also produced by CYP74C but not the CYP74A AOSs. The similar product patterns were observed upon the incubations of CYP74B33 with 9(S)-hydroperoxide of α-linolenic acid. The enzyme possessed a mixed HPL, AOS, and the epoxyalcohol synthase activity toward the 13-hydroperoxides, but the total activity was much lower than toward 9-hydroperoxides. Thus, the obtained results show that CYP74B33 is an unprecedented 9-AOS within the CYP74B subfamily.


Asunto(s)
Sistema Enzimático del Citocromo P-450/metabolismo , Daucus carota/metabolismo , Oxidorreductasas Intramoleculares/metabolismo , Proteínas de Plantas/metabolismo , Secuencia de Aminoácidos , Sistema Enzimático del Citocromo P-450/química , Sistema Enzimático del Citocromo P-450/genética , Daucus carota/química , Daucus carota/genética , Oxidorreductasas Intramoleculares/química , Oxidorreductasas Intramoleculares/genética , Filogenia , Proteínas de Plantas/química , Proteínas de Plantas/genética , Alineación de Secuencia , Especificidad por Sustrato
2.
ChemistryOpen ; 7(5): 336-343, 2018 May.
Artículo en Inglés | MEDLINE | ID: mdl-29744285

RESUMEN

Young roots of wheat, barley, and sorghum, as well as methyl jasmonate pretreated rice seedlings, undergo an unprecedented allene oxide synthase pathway targeted to previously unknown oxylipins 1-3. These Favorskii-type products, (4Z)-2-pentyl-4-tridecene-1,13-dioic acid (1), (2'Z)-2-(2'-octenyl)-decane-1,10-dioic acid (2), and (2'Z,5'Z)-2-(2',5'-octadienyl)-decane-1,10-dioic acid (3), have a carboxy function at the side chain, as revealed by their MS and NMR spectral data. Compounds 1-3 were the major oxylipins detected, along with the related α-ketols. Products 1-3 were biosynthesized from (9Z,11E,13S)-13-hydroperoxy-9,11-octadecadienoic acid, (9S,10E,12Z)-9-hydroperoxy-10,12-octadecadienoic acid (9-HPOD), and (9S,10E,12Z,15Z)-9-hydroperoxy-10,12,15-octadecatrienoic acid, respectively, via the corresponding allene oxides and cyclopropanones. The data indicate that conversion of the allene oxide into the cyclopropanone is controlled by soluble cyclase. The short-lived cyclopropanones are hydrolyzed to products 1-3. The collective name "graminoxins" has been ascribed to oxylipins 1-3.

3.
Biochim Biophys Acta Mol Cell Biol Lipids ; 1862(10 Pt A): 1099-1109, 2017 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-28774820

RESUMEN

The CYP74 clan enzymes are responsible for the biosynthesis of numerous bioactive oxylipins in higher plants, some Proteobacteria, brown and green algae, and Metazoa. A novel putative CYP74 clan gene CYP443D1 of the starlet sea anemone (Nematostella vectensis, Cnidaria) has been cloned, and the properties of the corresponding recombinant protein have been studied in the present work. The recombinant CYP443D1 was incubated with the 9- and 13-hydroperoxides of linoleic and α-linolenic acids (9-HPOD, 13-HPOD, 9-HPOT, and 13-HPOT, respectively), as well as with the 9-hydroperoxide of γ-linolenic acid (γ-9-HPOT) and 15-hydroperoxide of eicosapentaenoic acid (15-HPEPE). The enzyme was active towards all C18-hydroperoxides with some preference to 9-HPOD. In contrast, 15-HPEPE was a poor substrate. The CYP443D1 specifically converted 9-HPOD into the oxiranyl carbinol 1, (9S,10R,11S,12Z)-9,10-epoxy-11-hydroxy-12-octadecenoic acid. Both 18O atoms from [18O2-hydroperoxy]9-HPOD were virtually quantitatively incorporated into product 1. Thus, the CYP443D1 exhibited epoxyalcohol synthase (EAS) activity. The 18O labelling data demonstrated that the reaction mechanism included three sequential steps: (1) hydroperoxyl homolysis, (2) oxy radical rearrangement into epoxyallylic radical, (3) hydroxyl rebound, resulting in oxiranyl carbinol formation. The 9-HPOT and γ-9-HPOT were also specifically converted into the oxiranyl carbinols, 15,16- and 6,7-dehydro analogues of compound 1, respectively. The 13-HPOD was converted into erythro- and threo-isomers of oxiranyl carbinol, as well as oxiranyl vinyl carbinols. The obtained results allow assignment of the name "N. vectensis EAS" (NvEAS) to CYP443D1. The NvEAS is a first EAS detected in Cnidaria.


Asunto(s)
Sistema Enzimático del Citocromo P-450 , Anémonas de Mar , Animales , Catálisis , Clonación Molecular , Sistema Enzimático del Citocromo P-450/química , Sistema Enzimático del Citocromo P-450/genética , Ácido Eicosapentaenoico/análogos & derivados , Ácido Eicosapentaenoico/química , Ácidos Linoleicos/química , Peróxidos Lipídicos/química , Anémonas de Mar/enzimología , Anémonas de Mar/genética , Especificidad por Sustrato/fisiología
4.
Phytochemistry ; 118: 42-50, 2015 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-26277770

RESUMEN

Green tissues of spikemoss Selaginella martensii Spring possessed the complex oxylipins patterns. Major oxylipins were the products of linoleic and α-linolenic acids metabolism via the sequential action of 13-lipoxygenase and divinyl ether synthase (DES) or allene oxide synthase (AOS). AOS products were represented by 12-oxophytodienoic acid (12-oxo-PDA) isomers. Exceptionally, S. martensii possesses high level of 12-oxo-9(13),15-PDA, which is very uncommon in flowering plants. Separate divinyl ethers were purified after micro-preparative incubations of linoleic or α-linolenic acids with homogenate of S. martensii aerial parts. The NMR data allowed us to identify all geometric isomers of divinyl ethers. Linoleic acid was converted to divinyl ethers etheroleic acid, (11Z)-etheroleic acid and a minority of (ω5Z)-etheroleic acid. With α-linolenate precursor, the specificity of divinyl ether biosynthesis was distinct. Etherolenic and (ω5Z)-etherolenic acids were the prevailing products while (11Z)-etherolenic acid was a minor one. Divinyl ethers are detected first time in non-flowering land plant. These are the first observations of fatty acid metabolism through the lipoxygenase pathway in spikemosses (Lycopodiophyta).


Asunto(s)
Ciclopentanos/análisis , Ácidos Grasos Insaturados/análisis , Oxilipinas , Selaginellaceae/química , Sistema Enzimático del Citocromo P-450/metabolismo , Ácidos Grasos Insaturados/química , Oxidorreductasas Intramoleculares/metabolismo , Ácido Linoleico/análisis , Lipooxigenasa , Resonancia Magnética Nuclear Biomolecular , Oxilipinas/análisis , Oxilipinas/química , Oxilipinas/metabolismo , Proteínas de Plantas/metabolismo , Selaginellaceae/metabolismo , Compuestos de Vinilo/análisis , Ácido alfa-Linolénico/metabolismo
5.
Biochim Biophys Acta ; 1851(9): 1262-70, 2015 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-26008579

RESUMEN

Profiling of oxylipins from young maize roots revealed complex patterns of products mainly originating from the combined actions of 9- and 13-lipoxygenases and allene oxide synthase (AOS). A distinctive feature was the high content of the cyclopentenone 10-oxo-11-phytoenoic acid (10-oxo-PEA). Incubations with [1-14C]linoleic acid led to the formation of the α-ketols 13-hydroxy-12-oxo-9-octadecenoic acid and 9-hydroxy-10-oxo-12-octadecenoic acid as well as the cyclopentenones 12-oxo-10-phytoenoic acid (12-oxo-PEA) and 10-oxo-PEA in a ratio of 10:2:1:3. Chiral phase radio-HPLC showed that the labeled 10-oxo-PEA was mainly (93%) due to the 9S,13S-enantiomer, whereas 12-oxo-PEA was racemic. Recombinant maize AOS CYP74A19 (ZmAOS2) converted linoleic acid 9(S)-hydroperoxide (9-HPOD) into an allene oxide, 9,10-epoxy-10,12-octadecadienoic acid (9,10-EOD), which did not undergo cyclization but was solely hydrolyzed into the α-ketol. A cyclase activity promoting the conversion of 9,10-EOD into (9S,13S)-10-oxo-PEA was detected in the 10(5)×g supernatant prepared by differential centrifugation of the maize root homogenate. The data obtained suggested the existence of a new type of allene oxide cyclase, which is active towards an allene oxide formed from a 9-lipoxygenase-derived hydroperoxide.


Asunto(s)
Ciclopentanos/metabolismo , Regulación de la Expresión Génica de las Plantas , Oxidorreductasas Intramoleculares/metabolismo , Proteínas de Plantas/metabolismo , Raíces de Plantas/metabolismo , Zea mays/metabolismo , Cromatografía Líquida de Alta Presión , Ácidos Grasos Insaturados/metabolismo , Regulación del Desarrollo de la Expresión Génica , Oxidorreductasas Intramoleculares/genética , Isoenzimas/genética , Isoenzimas/metabolismo , Ácidos Linoleicos/metabolismo , Metabolismo de los Lípidos , Peróxidos Lipídicos/metabolismo , Lipooxigenasa/genética , Lipooxigenasa/metabolismo , Proteínas de Plantas/genética , Raíces de Plantas/genética , Estereoisomerismo , Zea mays/genética
6.
FEBS J ; 281(8): 2051-60, 2014 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-24612537

RESUMEN

The dependence of membrane function on its sterol component has been intensively studied with model lipids and isolated animal membranes, but to a much lesser extent with plant membranes. Depleting membrane sterols could be predicted to have a strong effect on membrane activity and have harmful physiological consequences. In this study, we characterized membrane lipid composition, membrane permeability for ions, some physiological parameters, such as H2O2 accumulation, formation of autophagosomal vacuoles, and expression of peroxidase and autophagic genes, and cell viability in the roots of wheat (Triticum aestivum L.) seedlings in the presence of two agents that specifically bind to endogenous sterols. The polyene antibiotic nystatin binds to endogenous sterols, forming so-called 'nystatin pores' or 'channels' in the membrane, and methyl-ß-cyclodextrin has the capacity to sequester sterols in its hydrophobic core. Unexpectedly, although application of both methyl-ß-cyclodextrin and nystatin reduced the sterol content, their effects on membrane permeability, oxidative status and autophagosome formation in roots differed dramatically. For comparison, we also tested the effects of the antibiotic gramicidin S, which does not bind to sterols but forms nonspecific channels in the membrane. Gramicidin S considerably increased membrane permeability, caused oxidative stress, and reduced cell viability. Our results suggest that a decrease in the sterol content is, in itself, not sufficient to have deleterious effects on a cell. The disturbance of membrane integrity, rather than the decrease in the sterol content, is responsible for the toxicity of sterol-binding compounds.


Asunto(s)
Nistatina/metabolismo , Fitosteroles/metabolismo , beta-Ciclodextrinas/metabolismo , Raíces de Plantas/química , Triticum/química
7.
Phytochemistry ; 96: 110-6, 2013 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-24042063

RESUMEN

Two complex oxylipins (linolipins C and D) were isolated from the leaves of flax plants inoculated with phytopathogenic bacteria Pectobacterium atrosepticum. Their structures were elucidated based on UV, MS and NMR spectroscopic data. Both oxylipins were identified as digalactosyldiacylglycerol (DGDG) molecular species. Linolipin C contains one residue of divinyl ether (ω5Z)-etherolenic acid and one α-linolenate residue at sn-1 and sn-2 positions, respectively. Linolipin D possesses two (ω5Z)-etherolenic acid residues at both sn-1 and sn-2 positions. The rapid formation (2-30min) of linolipins C and D alongside with linolipins A and B occurred in the flax leaves upon their damage by freezing-thawing.


Asunto(s)
Lino/química , Oxilipinas/aislamiento & purificación , Cromatografía Líquida de Alta Presión , Sistema Enzimático del Citocromo P-450/metabolismo , Lino/metabolismo , Lino/microbiología , Galactolípidos/química , Lipasa/metabolismo , Modelos Moleculares , Estructura Molecular , Resonancia Magnética Nuclear Biomolecular , Oxilipinas/química , Pectobacterium/metabolismo , Hojas de la Planta/química , Hojas de la Planta/microbiología , Proteínas de Plantas/análisis , Proteínas de Plantas/metabolismo , Estereoisomerismo , Ácido alfa-Linolénico/análisis
8.
Chem Phys Lipids ; 175-176: 92-8, 2013.
Artículo en Inglés | MEDLINE | ID: mdl-23999011

RESUMEN

The trimethylsilyl (TMS) peroxides of linoleic acid 9(S)-hydroperoxide (TMS or Me esters) were subjected to gas chromatography-mass spectrometry (GC-MS) analyses. The cyclopentenones, trans- and cis-10-oxo-11-phytoenoic acid (10-oxo-PEA, Me or TMS esters) were first time detected as the products of TMS-peroxide thermal conversions. The major products were ketodienes, epoxyalcohols, hemiacetals and decadienals. For further study of thermal cyclopentenone formation, 9(S)- or 13(S)-hydroperoxides of linoleic acid (Me esters) were sealed in ampoules and heated at 230 °C for 15 or 30 min. The products were separated by HPLC. The cyclopentenone fractions were collected and analyzed by GC-MS. Trans-10-oxo-PEA (Me) and 10-oxo-9(13)-PEA (Me) were formed during the thermal conversion of 9-hydroperoxide (Me ester). Similarly, the cyclopentenones trans-12-oxo-PEA (Me) and 12-oxo-9(13)-PEA (Me) were detected after the heating of 13-hydroperoxide (Me ester). Thermal formation of cyclopentenones can be considered as a biomimetic model of AOS pathway, providing new insights into the mechanisms of allene oxide formation and cyclization.


Asunto(s)
Ciclopentanos/química , Ácidos Grasos/química , Oxidorreductasas Intramoleculares/química , Peróxidos/química , Alcadienos/química , Animales , Antozoos/enzimología , Biomimética , Ciclización , Cromatografía de Gases y Espectrometría de Masas , Óxidos/química , Plantas/enzimología , Temperatura
9.
Carbohydr Polym ; 87(1): 853-861, 2012 Jan 04.
Artículo en Inglés | MEDLINE | ID: mdl-34663046

RESUMEN

Details of the backbone and side chain structure of pectic ß-(1→4)-galactan from the secondary cell walls of flax phloem fibres were characterised by NMR and mass spectrometry of the fragments obtained after partial hydrolysis with specific endogalactanase and rhamnogalacturonan hydrolase. The proportions of branched and linear rhamnose in the backbone of the polymer equalled 72% and 28%, respectively. Rhamnose branched with a single galactose residue comprised 47% of the total rhamnose; thus, in the bulk of the polymer backbone, rhamnose had 0-1 galactose residues. Within the backbone, residues of rhamnose branched with long galactose chains alternated with linear rhamnose and rhamnose with a single galactose. Oligomeric galactose chains averaged 14 monomers in length. Alternative glycosidic bonds of galactosyl residues were present. The established structural details of cell wall galactan are compared to those of nascent galactan before incorporation into the fibre cell wall, and galactan modifications in muro are discussed.

10.
Phytochemistry ; 72(4-5): 356-64, 2011 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-21315390

RESUMEN

The profiles of non-volatile oxylipins of pea (Pisum sativum) seedlings were examined by gas chromatography-mass spectrometry after invitro incubation with α-linolenic acid. The 13-lipoxygenase/hydroperoxide lyase (HPL) products were predominant in the leaves, while the roots possess both 13- and 9-HPL products. Allene oxide synthase (AOS) and divinyl ether synthase (DES) products were not detected in the leaves or in the roots of any age. The HPL cascade produces a diversity of oxylipins, including the compounds (2E)-4-hydroxy-traumatic, (10E)-9,12-dihydroxy-10-dodecenoic and 9,12-dihydroxydodecanoic acids, as well as (2E)-4-hydroxy-2-nonenoic acid, which has not yet been detected in plants. Oxylipin patterns were altered by infection, water deficit, as well as by plant age. Infection caused the specific strong accumulation of azelaic (nonane-1,9-dioic) acid in the leaves. The azelaic acid content in the aged (14 and 18day-old) leaves was significantly higher than in the younger leaves. Water deficit induced the accumulation of (2E)-4-hydroxy-2-nonenoic acid and (2E)-traumatic acid in the roots. Results demonstrate that: (1) the HPL cascade is the predominant branch of the lipoxygenase pathway in pea seedlings; (2) the HPL products may have the regulatory role both in growth control and adaptation.


Asunto(s)
Aldehído-Liasas/metabolismo , Sistema Enzimático del Citocromo P-450/metabolismo , Lipooxigenasas/metabolismo , Oxilipinas/metabolismo , Pisum sativum/enzimología , Plantones/enzimología , Cromatografía de Gases y Espectrometría de Masas , Humanos , Oxidorreductasas Intramoleculares/metabolismo , Estructura Molecular , Oxilipinas/química , Proteínas de Plantas/metabolismo
11.
FEBS J ; 276(16): 4463-72, 2009 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-19645727

RESUMEN

Oxylipins constitute a large family of bioregulators, biosynthesized via unsaturated fatty acid oxidation. This study reports the detection of an unprecedented family of complex oxylipins from flax leaves. Two major members of this family, compounds 1 and 2, were isolated and purified. Their structures were evaluated using NMR and MS analyses. Both compounds were identified as monogalactosyldiacylglycerol species. Compound 1 contains one alpha-linolenoyl residue and one residue of (9Z,11E,1'Z,3'Z)-12-(1',3'-hexadienyloxy)-9,11-dodecadienoic, (omega5Z)-etherolenic acid at positions sn-1 and sn-2, respectively. Compound 2 possesses (omega5Z)-etherolenic acid residues at both position sn-1 and position sn-2. We suggest the trivial names linolipin A and linolipin B for compounds 1 and 2, respectively, and the collective name linolipins for this new family of complex oxylipins. The linolipin content of flax leaves increased significantly in response to pathogenesis. Thus, accumulation of esterified antimicrobial divinyl ethers may be of relevance to plant defense.


Asunto(s)
Lino/química , Galactolípidos/química , Galactolípidos/fisiología , Oxilipinas/química , Hojas de la Planta/química , Antibacterianos , Galactolípidos/aislamiento & purificación , Espectroscopía de Resonancia Magnética , Espectrometría de Masas , Estructura Molecular , Oxilipinas/aislamiento & purificación , Plantas/inmunología
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