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Gas chromatographic and gas chromatographic/tandem mass spectrometric characterization of precursors on the sesterterpene pathway for steroid biosynthesis.

An increasing amount of evidence is accumulating to support the proposal that steroidogenesis can occur by a sesterterpene pathway as well as the cholesterol pathway. Key intermediates on the sesterterpene pathway are 23,24-dinor-5-cholen-3 beta-ol (guneribol) and some of its metabolites, e.g. 23,24-dinor-4-cholen-3-one (guneribone). It has been reported that these intermediates are biosynthesized and converted to steroid hormones by a range of endocrine tissues in vitro. Monitoring the pentafluorobenzyloxime derivatives by negative ion chemical ionization mass spectrometry in the electron capture mode provided evidence for the presence of guneribone in extracts of bovine testicular and human adrenal tumour tissue. Complementary evidence was obtained from gas chromatographic/tandem mass spectrometric data generated on a triple-quadrupole instrument by monitoring daughter ions (in the multiple ion detection, MID mode) of the molecular anion of derivatized guneribone in both standards and tissue extracts. The present findings that sesterterpene pathway intermediates are present as endogenous compounds in tissue extracts, together with the previously reported radiochemical data, give further support to the sesterterpene pathway hypothesis.

Adrenal Gland Neoplasms↗

Antitubercular sesterterpenes from the Thai sponge Brachiaster sp.

A new scalarane-type sesterterpene, 12-deacetoxyscalarin 19-acetate (2), and two naturally new derivatives of manoalide-type sesterterpenes, (E)- and (Z)-neomanoalide 24,25-diacetates (3 and 4), were isolated from the Thai sponge Brachiaster sp., along with five other known sesterterpenes: heteronemin (1), heteronemin acetate (5), 12-epi-19-deoxyscalarin (6), 12-deacetyl-12-epi-19-deoxyscalarin (7), and manoalide 25-acetate (8). The antitubercular and cytotoxic activities of all eight compounds were evaluated to reveal the potent activity of compounds 1, 2, 5, and 8. Among these, compound 2 showed an interesting bioactivity profile, in possessing potent antitubercular activity and being practically inactive in the cytotoxicity bioassay.

Animals↗

Sesterterpenes from a common marine sponge, Hyrtios erecta.

Eleven sesterterpenes have been characterized from the biotoxic extracts of Hyrtios erecta. Their structures and stereochemistry were established by spectral properties or results from chemical interconversions. Especially valuable for establishing stereochemical features were 13C-nmr methyl shift correlations and analysis of 1H-nmr couplings and chemical shifts. The new scalarane sesterterpenes included 2, 3, 7, 9, and 10a (but 9 and 10a might be artifacts), and they were accompanied by five previously described scalaranes, 1, 4, 5a, 6, and 8, along with hyrtial (11), a novel norsesterterpene. Many of these sesterterpenes exhibited interesting biological activity.

Animals↗

Salmahyrtisol A, a novel cytotoxic sesterterpene from the Red Sea sponge Hyrtios erecta.

The lipophilic partition of a methanol extract of the Red Sea sponge Hyrtios erecta yielded a novel pentacyclic sesterterpene ester salmahyrtisol A (1), three new scalarane-type sesterterpenes, 3-acetyl sesterstatin 1 (3), 19-acetyl sesterstatin 3 (4), and salmahyrtisol B (5), together with the previously reported sesterterpenes hyrtiosal (2), scalarolide (6), and salmahyrtisol C (7). The structure determination was based on extensive NMR studies and high-resolution mass spectral measurements. In addition, salmahyrtisol A has a previously unknown pentacyclic carbon skeleton. The new compounds show significant cytotoxicity to murine leukemia (P-388), human lung carcinoma (A-549), and human colon carcinoma (HT-29). A biosynthetic relationship between 1 and 2 is briefly discussed.

Animals↗

Differentiation in chronic myelogenous leukemia cell K562 by spongean sesterterpene.

Scalarane-type sesterterpenes, PHC-1-PHC-7, which have been isolated from a marine sponge, increased hemoglobin production in human chronic myelogenous leukemia cell line K562 at the concentration of 0.1-5 microg/ml. PHC-1, the major constituent, induced the expression of glycophorin A and the enucleation for K562 cells. These sesterterpenes were found to induce erythroid differentiation in K562 cells. In addition, PHC-1 induced G1 arrest of the cell cycle of K562 cells.

Animals↗

Biosynthesis of adrenal corticosteroids by the sesterterpene pathway via 23,24-dinor-4-cholen-3-one.

Rat adrenal gland preparations were incubated with 23,24-dinor-5-cholen-3 beta-ol (Guneribol), a proposed intermediate in the sesterterpene pathway for steroid biosynthesis. Steroids were isolated, purified by thin layer and high-performance liquid chromatographies and crystallized to constant specific activity. These preparations converted the substrate to 23,24-dinor-4-cholen-3-one. Radioactive 23,24-dinor-4-cholen-3-one was synthesised and incubated with further tissue preparations and shown to be converted to corticosteroids. These findings suggest that 23,24-dinor-4-cholen-3-one is an intermediate on the sesterterpene pathway for steroidogenesis.

Adrenal Cortex Hormones↗

Biosynthesis of androgens by the sesterterpene pathway via 23,24-dinor-4-cholen-3-one.

Rat testicular and adrenal gland microsomal preparations were incubated with 23,24-dinor-5-cholen-3 beta-ol (Guneribol) a proposed intermediate in the sesterterpene pathway for steroid biosynthesis. Steroids were isolated, purified by thin layer and high-performance liquid chromatography and crystallized to constant specific radioactivity. These preparations converted the substrate to 23,24-dinor-4-cholen-3-one. Radioactive 23,24-dinor-4-cholen-3-one was synthesized and incubated with further tissue preparations and shown to be converted to steroid hormones. These findings suggest that 23,24-dinor-4-cholen-3-one is an intermediate on the sesterterpene pathway for steroidogenesis.

Adrenal Glands↗

Employing dereplication and gradient 1D NMR methods to rapidly characterize sponge-derived sesterterpenes.

The sesterterpene constituents of two Indo-Pacific sponges were investigated and rapidly characterized using aggressive dereplication methods along with gradient 1D NMR techniques. Lendenfeldia frondosa yielded three sesterterpenes: 12beta,16beta,22-trihydroxy-24alpha-methylscalar-25beta,24alpha-olide (1), the 24 epimer of a known compound; 12beta,22-dihydroxy-24-methylscalar-17-en-24,25-olide (2), a known compound; and 22-hydroxy-24-methylsedn-16-en-24-one-12beta,25beta-olide (3), a new compound. A Hyrtios sp. sponge yielded known 12alpha-acetoxy-16beta-hydroxyscalarolbutenolide (5).

Animals↗

Evidence for the existence of a C25-sesterterpene pathway of steroidogenesis not involving cholesterol as an obligatory intermediate.

Previous in vitro studies had indicated the possibility of steroidogenesis through a C25-sesterterpene pathway in which squalene and cholesterol are not required as obligatory intermediates. To investigate whether such a pathway exists in vivo, the precursor role of [7-3H]23,24-dinor-5-cholene-3 beta,20-diol in the in vivo formation of cortisol by the guinea pigs was studied. The [3H]23,24-dinor-5-cholene-3 beta,20-diol was synthesized by reacting [3H]pregnenolone acetate with a Grignard reagent. The product was purified by chromatography and its radiochemical purity was established by the isotope dilution technique. In the first experiment a total of 134 X 10(6) dpm of [3H]23,24-dinor-5-cholene-3 beta,20-diol was injected subcutaneously into three guinea pigs. Urine was collected for 8 days and was pooled. Only 12% of the administered dose was excreted in the urine. The urine was extracted and a neutral extract (3 X 10(6) dpm) was obtained. From this extract 2.3 mg of cortisol containing 2.9 X 10(4) dpm was isolated. Radiochemical purity of the isolated cortisol was established by the isotope dilution technique. Radiochemical purity was further confirmed by conversion to cortisol 21-acetate and subsequently to 11 beta-hydroxyandrost-4-ene-3,17-dione and recrystallization to constant specific activity. The results of this experiment were confirmed by repeating the experiment with a higher specific activity [3H]23,24-dinor-5-cholene-3 beta,20-diol. These results indicate that the C25-sesterterpene pathway is a possible in vivo alternate pathway of steroidogenesis, not involving either squalene or cholesterol as obligatory intermediates.

Animals↗

Phytotoxic sesterterpene, 11-epiterpestacin, from Bipolaris sorokiniana NSDR-011.

The structure of siccanol, a phytotoxic sesterterpene of fungal origin, was analyzed after chemical conversion by NMR spectroscopy. Siccanol was found to be an epimer of terpestacin that has been isolated from Arthrinium sp., and was thus renamed 11-epiterpestacin. Its stereochemistry was also identical with that of fusaproliferin, a structurally related mycotoxin from Fusarium proliferatum. Therefore, this sesterterpene may also be referred to as 24-deacetyl fusaproliferin. The phytotoxicity of 11-epiterpestacin was almost equal to that of terpestacin, but significantly higher than that of fusaproliferin.

Ascomycota↗

Steroid hormone biosynthesis by a sesterterpene pathway in the rat and rabbit testis.

Rat and rabbit testis preparations were incubated with [4-14C]cholesterol and 23,24-dinor-[7 alpha-3H]5-cholen-3 beta-ol, the latter being a proposed intermediate in the sesterterpene pathway for steroid biosynthesis. Steroids were isolated, purified by thin-layer chromatography and crystallised to constant specific activity. It was found that rat and rabbit testis can utilise 23,24-dinor-5-cholen-3 beta-ol to produce testosterone. The tritium/carbon-14 ratios in the testosterone and androstenedione isolated indicated that these tissues differentiated between the two substrates. This finding is supported by the observation that, on stimulation with HCG, the tritium/carbon-14 ratios in the testosterone isolated were increased compared to the controls. The results of further experiments implied that, while the biosynthesis of testosterone from cholesterol occurred in the rat testis mitochondrial fraction, its biosynthesis from 23,24-dinor-5-cholen-3 beta-ol occurred in the microsomal fraction.

Androstenedione↗

Antiproliferative sesterterpenes from the Caribbean sponge Cacospongia cf. linteiformis.

Two new sesterterpenes, lintenolides F (6 a, b) and G (7 a, b), were isolated from the Caribbean sponge Cacospongia cf. linteiformis. Their stereostructures were determined using spectroscopic and chemical methods. The new compounds (6 a, b and 7 a, b) and the related compounds lintenolides A-E (1 a, b-5 a, b), previously isolated from the sponge, exhibited antiproliferative activity on four cell lines.

Animals↗

Mangicols: structures and biosynthesis of A new class of sesterterpene polyols from a marine fungus of the genus Fusarium.

A marine fungal isolate, tentatively identified as Fusarium heterosporum, has been found to produce a series of structurally novel sesterterpene polyols, the mangicols A-G (4-10). The structures of the new compounds, including the stereochemistry of mangicol A, were assigned by interpretation of spectral data derived from both natural products and synthetic derivatives. The mangicols, which possess unprecedented spirotricyclic skeletal components, show only weak to modest cytotoxicities toward a variety of cancer cell lines in in vitro testing. Mangicols A and B, however, showed significant antiinflammatory activity in the PMA (phorbol myristate acetate)-induced mouse ear edema model. A biosynthetic pathway for the neomangicol and mangicol carbon skeletons is proposed on the basis of the incorporation of appropriate radiolabeled precursors.

Animals↗

Honulactones: new bishomoscalarane sesterterpenes from the Indonesian sponge Strepsichordaia aliena.

From the dichloromethane/2-propanol (1:1) extract of the Indonesian marine sponge Strepsichordaia aliena, twelve new 20, 24-bishomoscalarane sesterterpenes, honulactones A-L (1-12) were isolated. Molecular structures were secured by spectroscopic methods, accurate mass measurements, and X-ray analysis. Honulactones A (1), B (2), C (3), and D (4) exhibit cytotoxycity against P-388, A-549, HT-29, and MEL-28 (IC(50) 1 microg/mL).

Animals↗

Scalarane-based sesterterpenes from an Indonesian sponge Strepsichordaia aliena.

Investigation of the lipophilic extract of the sponge Strepsichordaia aliena revealed six new 20,24-bishomoscalarane sesterterpenes, honu'enone (1), phyllofolactones H-K (3-6), and phyllofenone C (7). Structure elucidation of these compounds was secured by spectroscopic methods, 1D and 2D NMR, and accurate mass measurements.

Animals↗

New scalarane class sesterterpenes from an Indonesian sponge, Phyllospongia sp.

A series of scalarane class sesterterpenes (1-8) have been isolated from an Indonesian sponge, Phyllospongia sp. Their structures were determined by spectroscopic analysis and confirmed by single-crystal X-ray diffraction on compound 1. The absolute stereochemistry of 1 was established by modified Mosher's method.

Animals↗

Three new cytotoxic sesterterpenes from a marine sponge Spongia sp.

Three new sesterterpenes (1-3) were isolated from a marine sponge of the genus Spongia, and their structures were determined on the basis of spectroscopic analysis. The compounds 1-3 exhibited cytotoxicity against HeLa cells with IC(50) values of 19.5, 15.0, and 5.3 microg/mL, respectively.

Animals↗