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1.
A method is described for the chemical synthesis of stigmasta-5,24-dien-3β-ol-[26-14C] and (24S)-24-ethylcholesta-5,25-dien-3β-ol-[26-14C] (clerosterol). 28-Isofucosterol-[7-3H2] fed to developing barley seedlings (Hordeum vulgare) was incorporated into sitosterol and stigmasterol confirming the utilisation of a 24-ethylidene sterol intermediate in 24α-ethyl sterol production in this plant. Also, the use of mevalonic acid-[2-14C(4R)-4-3H1] verified the loss of the C-25 hydrogen of 28-isofucosterol during its conversion into sitosterol and stigmasterol in agreement with the previously postulated isomerisation of the 24-ethylidene sterol to a Δ24(25)-sterol prior to reduction. However, feeding stigmasta-5,24-dien-3β-ol [26-14C] to barley seedlings gave very low incorporation into sitosterol. Attempts to trap radioactivity from mevalonic-[2-14C(4R)-4-3H1] in stigmasta-5,24-dien-3β-ol when this unlabelled sterol was administered to barley seedlings gave only a very small incorporation although both 28-isofucosterol and sitosterol were labelled.  相似文献   

2.
Clionasterol isolated from Monodus subterraneus grown in the presence of methionine-[methyl-2H3] contained four 2H atoms showing the participation of a 24-ethylidene sterol intermediate in its biosynthesis. Clionasterol isolated from M. subterraneus grown in the presence of mevalonic acid-[2-14C,(4R)-4-3H1 had a 14C:3H atomic ratio of 5:3 indicating that the 24-ethylidene sterol intermediate is reduced directly to clionasterol and not isomerized to a Δ24-sterol which is then reduced.  相似文献   

3.
[6-3H1] (24S)-24-Ethylcholesta-5,22,25-trien-3β-ol added to the growth medium of a culture of Trebouxia sp. 213/3 was efficiently taken-up by the cells and converted into (24R)-24-ethylcholesta-5,22-dien-3β-ol (poriferasterol) which is one of the major sterols of this alga. A cell-free homogenate was obtained from Trebouxia which catalysed the NADPH-dependent reduction of [6-3H1] (24S)-24-ethylcholesta-5,22,25-trien-3β-ol to yield poriferasterol. The δ25-sterol reductase was found to be mainly localized in the microsomal fraction of the homogenate.  相似文献   

4.
Obtusifoliol-[2,2,4-3H3] was synthesised and incubated with the chrysophyte alga Ochromonas malhamensis which converted it into poriferasterol. A reaction sequence applied to poriferasterol showed that the tritium retained at C-4 occupied the 4α-position. This demonstrates that biological C-4 demethylation of a 4α-methylsterol precursor by O. malhamensis results in the axial 4β-hydrogen being inverted into the equatorial 4α-position of the 4-desmethyl sterol product.  相似文献   

5.
The 4,4-dimethylsterols 4α-lanost-24-ene-3β,9α-diol-[2-3H2] and parkeol-[2-3H2] were synthesized from lanosterol and subsequently incubated with cultures of Ochromonas malhamensis. 5α-Lanost-24-ene-3β,9α-diol was converted into poriferasterol with three times the efficiency of parkeol. Clionasterol was also found to be labelled from both parkeol and 5α-lanost-24-ene-3β,9α-diol. No significant incorporation of radioactivity into sterols was obtained after feeding 5α-lanost-24-ene-3β,9α-diol to higher plants, the chlorophyte alga Trebouxia, yeast or a cell free homogenate of rat liver.  相似文献   

6.
Clerosterol-[26-14C], a 24β-ethyl-25-methylene sterol [(24S)-24-ethylcholesta-5,25-dien-3β-ol], was incorporated into clionasterol and poriferasterol by cultures of the green algae Trebouxia sp. 213/3 and Trebouxia sp. 219/2. Degradation of the labelled poriferasterol showed that the 14C retained its identity and was not incorporated as a result of metabolism of the clerosterol-[26-14C] and randomisation of label. These results are consistent with the proposed production, and subsequent reduction, of a 24β-ethyl-25-methylene intermediate in 24β-ethyl sterol biosynthesis in algae of the order Chlorococcales.  相似文献   

7.
24-Dihydrolanosterol-[2-3H] was converted to cholesterol in Chlorella ellipsoidea but ergost-5-enol, poriferasterol, clionasterol were not labelled. The absence of the necessary 24(25) double bond precursor eliminates the possibility of C28 and C29 sterol synthesis. However, it was confirmed that 24-dihydrolanosterol was metabolized by Ochromonas malhamensis to give cholesterol, brassicasterol, and poriferasterol.  相似文献   

8.
The sterols of Zea mays shoots were isolated and characterized by TLC, HPLC, GC/MS and 1H NMR techniques. In all, 22 4-demethyl sterols were identified and they included trace amounts of the Δ23-, Δ24- and Δ25-sterols, 24-methylcholesta-5,E-23-dien-3β-ol, 24-methylcholesta-5,Z-23-dien-3β-ol, 24-methylcholesta-5,25-dien-3β-ol, 24-ethylcholesta-5,25-dien-3β-ol and 24-ethylcholesta-5,24-dien-3β-ol. In the 4,4-dimethyl sterol fraction, cycloartenol and 24-methylenecycloartanol were the major sterol components but small amounts of the Δ23-compound, cyclosadol, and the Δ25-compound, cyclolaudenol, were recognized. These various Δ23- and Δ25-sterols may have some importance in alternative biosynthetic routes to the major sterols, particularly the 24β-methylcholest-5-en-3β-ol component of the C28-sterols. Radioactivity from both [2-14C]MVA and [methyl-14C]methionine was incorporated by Z. mays shoots into the sterol mixture. Although 24-methylene and 24-ethylidene sterols were relatively highly labelled, the various Δ23- and Δ25-sterols contained much lower levels of radioactivity, which is possibly indicative of their participation in alternative sterol biosynthetic routes. (24R)-24-Ethylcholest-5-en-3β-ol (sitosterol) had a significantly higher specific activity than the 24-methylcholest-5-en-3β-ol indicating that the former is synthesized at a faster rate.  相似文献   

9.
Excised barley embryos cultured on a nutrient medium containing methionine-[CD3] incorporated deuterium into the newly biosynthesized sterols. Two deuterium atoms were present in 24-methylenecycloartanol, 24-methylenelophenol and campesterol and a maximum of four deuterium atoms were incorporated into 24-ethylidenelophenol, stigmasterol and sitosterol. Mevalonic acid-[2-14C(4R)4-3H1] was utilized by the barley embryos to give 28-isofucosterol with a 3H-14C atomic ratio of 3:5 and stigmasterol and sitosterol with a 3H-14C atomic ratio of 2:5. 24-Methylenelophenol and 24-ethylidenelophenol were isolated from barley seed and 24-ethylidenelophenol-[2,4-3H3] was incorporated into sitosterol by barley seedlings. These results show that in the production of sitosterol a 24-ethylidenesterol intermediate is produced and it is suggested that this is isomerized to give a Δ24,(25) sterol prior to reduction to the saturated C29 sterol side chain.  相似文献   

10.
Two rare C30-sterols, (24E)-24-n-propylidenecholest-5-en-3β-ol and 24-n-propylcholest-5-en-3β-ol, and (24S)-24-ethylcholesta-5,22-dien- 3β-ol (stigmasterol) are the major sterols of Nematochrysopsis roscoffensis, a Chrysophyte of the Sarcinochrysidales order. This unique sterol composition is different from the sterol contents of other Chrysophytes and justifies the peculiar position of the Sarcinochrysidales, which are by some characteristics morphologically and biologically related to the Phaeophyceae. The presence of (24S)-24-methylcholesta-5,22-dien-3β-ol (24-epibrassicasterol) as a major sterol in Chrysotila lamellosa is in accordance with the few previous results obtained from other Prymnesiophyceae, although the presence of the other major sterol, (24R)-24-ethylcholesta-5,22-dien-3β-ol (poriferasterol) has never been reported in these algae.  相似文献   

11.
Ergosterol, 22-dihydroergosterol, obtusifoliol and 24-methylene-24,25-dihydrolanosterol, isolated from Mucor pusillus grown in the presence of methionine-[methyl-2H3], each contained two deuterium atoms; lanosterol, however, was unlabelled. Ergosterol and 22-dihydroergosterol, isolated from M. pusillus grown in the presence of mevalonic acid-[2-14C, (4R)-4-3H1] had 14C:3H atomic ratios of 5:3. The significance of these results in terms of sterol biosynthesis in this organism in general and alkylation at C-24 in particular is discussed.  相似文献   

12.
The release of tritium from [7-3H2]dopamine was investigated as a possible procedure for the assay for dopamine-β-hydroxylase (DβH) in rat and human serum. The release was found to have the same characteristics as those deseribed previously for DβH in serum; for example, an optimum rate of reaction at pH 5.0 or an enhancement of release with agents such as Cu2+ ions and N-ethylmaleimide which are known to inactivate endogenous inhibitors of DβH in serum. Tritium release was blocked by the DβH inhibitor fusaric acid but not by inhibitors of other dopamine-metabolizing enzymes in serum. Incubation of 14C-labeled dopamine along with [7-3H2]dopamine revealed that, under the standard assay conditions, the formation of [14C]norepinephrine was accompanied by release of one of the two tritium atoms on the 7-carbon. It was concluded that the procedure provided a simple and sensitive assay of DβH activity in serum.  相似文献   

13.
Deuterated oleates have been synthesized by semihydrogenation of acetylenic intermediates. [11-2H2]Oleate was prepared by two-carbon chain extension of the C16 alcohol obtained from [1-2H2]octyl bromide and 7-octyn-1-ol. [8-2H2] and [7-2H2]oleates were both prepared from dimethyl suberate, tetradeutero intermediate C16 alcohols were synthesized from [1,8-2H4] and [2,7-2H4]octane diols by monobromination, conversion to deuterated 9-decyn-1-ols and reaction with octyl bromide. Oxidation gave [8-2H2]-9-octadecynoate and [2,7-2H2]-9-octadecynoate, after semihydrogenation of the latter, deuterons at C-2 were removed by exchange with aqueous alkali. [6-2H2] and [5-2H2]oleates were obtained from methyl 5-tetradecynoate, semihydrogenation, deuterium exchange at C-2 and two malonate extensions gave [6-2H2]oleate; reduction with lithium aluminum deuteride, two malonate extensions and semihydrogenation gave the [5-2H2] ester. [4-2H2] and [3-2H2]oleates were both obtained from methyl 7-cis-hexadecenoate, exchange of the α protons and chain extension gave the [4-2H2] ester and reduction with lithium aluminum deuteride and chain extension gave the [3-2H2] ester.  相似文献   

14.
Sterols extracted from Xanthoria parietina with organic solvents and released by saponification of the residual lichen tissue were analysed by GC-MS. The main components of the solvent-extractable sterols were two C28 trienes and those of the more tightly bound sterols were ergost-5-en-3β-ol and two C29 compounds. The structures of the C28 compounds were shown to be ergosta-5,7,22-trien-3β-ol, Ia (ergosterol) and the previously unreported ergosta-5,8,22-trien-3β-ol, IIa, for which the name lichesterol is proposed. The main C29 sterol was identified as (24R)-24-ethylcholesta-5,22-dien-3β-ol (poriferasterol).  相似文献   

15.
Ergosterol, episterol, 4α-methyl-5α-ergosta-8,24(28)-dien-3β-ol and 24-methylene-24,25-dihydrolanosterol, isolated from Phycomyces blakesleeanus grown in the presence of methionine-[methyl-2H3], each contained two deuterium atoms; lanosterol, however, was unlabelled. The 14C:3H atomic ratio of the following sterols isolated from P. blakesleeanus grown in the presence of mevalonic acid-[2-14C,(4R)-4-3H1], was: ergosterol, 5:3; episterol, 5:4; ergosta-5,7,24(28)-trien-3β-ol, 5:3; 4α-methyl-5α-ergosta-8,24(28)-dien-3β-ol, 5:4; 24-methylene-24,25-dihydrolanosterol, 6:5; lanosterol, 6:5. The significance of these results in terms of ergosterol biosynthesis is discussed.  相似文献   

16.
Examination of the sterols of Zea mays shoots has established that the 24-ethylcholesterol is predominately the 24α-epimer, sitosterol, but the 24-methylcholesterol is a mixture of the 24α- and 24β-epimers. After incubation of Z. mays shoots with [2-14C, (4R)4-3H1]mevalonic acid the sitosterol had a 3H: 14C atomic ratio of 2.09:5 which is consistent with previous results indicating that a Δ24(25) -sterol is implicated in its biosynthesis. By contrast, the 24α- and 24β-methylcholesterol mixture had a higher 3H: 14C atomic ratio of 2.82:5. This can be explained by the operation of two routes for the elaboration of the 24-methylcholesterol side chain. One may proceed via Δ24(25)- and Δ24(25)-sterols to produce the 24α-methylcholesterol with a 3H: 14C atomic ratio of 2:5. The other route may involve reduction of either a Δ24(28)-, a Δ23- or a Δ25-sterol intermediate to give the 24β1-methylcholesterol with a 3H: 14C atomic ratio of 3:5. The proportion of these two labelled compounds in the mixture then determines the observed 3H: 14C atomic ratio (2.82:5). Some evidence for the formation of a Δ25-compound, cyclolaudenol, by Z. mays shoots was provided by incorporation studies employing either [2-14C]mevalonic acid or [Me-14C]methionine as the sterol precursor.  相似文献   

17.
Methyl [17-2H2]oleate was prepared by stepwise reduction from 17-oxooleate in 24% yield. Methyl [18-2H3], [16-2H2], [14-2H2] and [12-2H2] oleates were synthesized from appropriately deuterated octylbromides by conversion to deuterated 7-hexadecyn-1-ols and chain extention to deuterated stearolates followed by semihydrogenation; overall yields were about 17%.  相似文献   

18.
The mycobiont, Xanthoria parietina, and the phycobiont, Trebouxia decolorans, of the lichen X. parietina have been cultured separately and their sterols analysed. X. parietina contained ergosterol and lichesterol as the major constituents together with lower levels of three other C28 sterols. Culture of the mycobiont in the presence of [CD3]-methionine resulted in the incorporation of two deuterium atoms into the C-24 methyl group of these sterols demonstrating that a 24-methylene intermediate was produced as occurs in other fungi. The phycobiont, T. decolorans contained predominantly poriferasterol with lower levels of clionasterol, ergost-5-en-3β-ol, brassicasterol and cholesterol. Two other Trebouxia spp. (213/3 and 219/2) contained similar sterol mixtures.  相似文献   

19.
A method for determination of α-ketoisocaproic acid (KIC) and [4,5,5,5,6,6,6-2H7]α-ketoisocaproic acid ([2H7]KIC) in rat plasma was developed using gas chromatography–mass spectrometry-selected ion monitoring (GC–MS-SIM). [5,5,5-2H3]α-Ketoisocaproic acid ([2H3]KIC) was used as an analytical internal standard to account for losses associated with the extraction, derivatization and chromatography. The keto acids were extracted by cation-exchange chromatography using BondElut SCX cartridge and derivatized with N-phenyl-1,2-phenylenediamine to form N-phenylquinoxalinone derivatives. Quantitation was performed by SIM of the respective molecular ions at m/z 278, 281 and 285 for the derivatives of KIC, [2H3]KIC and [2H7]KIC on the electron impact method. The limit of detection was found to be 70 fmol per injection (S/N=3) and the limit of quantitation for [2H7]KIC was around 50 nM in rat plasma. Endogenous KIC concentrations in 50 μl of rat plasma were measured with relative intra- and inter-day precision of 4.0% and 3.3%, respectively. The intra- and inter-day precision for [2H7]KIC spiked to rat plasma in the range of 0.1 to 10 μM gave good reproducibility with relative standard deviation (RSD) of 6.5% and 5.4%, respectively. The intra- and inter-day relative errors (RE) for [2H7]KIC were less than 6.4% and 3.8%, respectively. The method was applied to determine the plasma concentration of [2H7]KIC after an intravenous administration of [2H7]KIC in rat.  相似文献   

20.
General syntheses of saturated and unsaturated fatty acids, specifically trideuterated at the terminal carbon or dideuterated at the penultimate carbon, from ω-hydroxy esters, have been developed. Methyl [16-2H3]hexadecanoate was synthesized from methyl 16-hydroxyhexadecanoate. The hydroxyl group was protected as the tetrahydropyranyl ether and the ester group reduced with lithium aluminum deuteride, first to an alcohol and then, by way of the derived mesylate, to a trideuteromethyl group. The new ester group was formed by oxidation of the hydroxyl group. Methyl 16-hydroxy[2-2H2]hexadecanoate was prepared, from 16-hydroxy-hexadecanoate, by exchange of the α protons and, by the reductive route above, with lithium aluminum hydride, gave methyl [15-2H2]hexadecanoate. Methyl 16-hydroxy-7-hexadecynoate was synthesized from 6-chlorohexanol and was converted, by means of the above reactions, to methyl [16-2H3]- and [15-2H2]-9-hexadecynoates. Lindlar reduction gave methyl [16-2H3]- and [15-2H2]cis-9-hexadecenoates. Overall yields ranged from 30% to 38%.  相似文献   

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