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Inhibition of macrophage adenylate cyclase by the alpha-methylene-gamma-lactone moiety of sesquiterpene lactones from forage plants.

Inhibition of murine macrophage adenylate cyclase activity by sesquiterpene lactones isolated from toxic forage plants was highly correlated with the presence of the alpha-methylene-gamma-lactone moiety on the molecule (ie, hymenovin and helenalin). Tenulin, a sesquiterpene lactone which does not contain this reactive moiety, caused minimal inhibition of the enzyme. Reaction of the alpha-methylene-gamma-lactone moiety of hymenovin and helenalin with cysteine decreased the number of reactive moieties available to alkylate the enzyme, thus decreasing the inhibition of adenylate cyclase by these 2 sesquiterpene lactones. As the reaction time available for the reduction by cysteine of the alpha-methylene-gamma-lactone moiety decreases, the amount of adenylate cyclase inhibition increases. Stimulation of the hymenovin- or helenalin-inhibited adenylate cyclase by prostaglandin E1 or E2 or by sodium fluoride did not reverse the inhibition of the enzyme, but did stimulate the undamaged adenylate cyclase in the sesquiterpene lactone treatment groups to the same degree as in the nontreated control. These data indicate that sesquiterpene lactones containing an alpha-methylene-gamma-lactone moiety are potent inhibitors of macrophage adenylate cyclase activity. This moiety may have a significant role in the toxicity of some sesquiterpene lactones in poisonous plants when ingested by livestock.

Adenylyl Cyclase Inhibitors

Purification and characterization of a novel lactonohydrolase, catalyzing the hydrolysis of aldonate lactones and aromatic lactones, from Fusarium oxysporum.

A novel lactonohydrolase, an enzyme that catalyzes the hydrolysis of aldonate lactones to the corresponding aldonic acids, was purified 10-fold to apparent homogeneity, with a 61% overall recovery, from Fusarium oxysporum AKU 3702, through a purification procedure comprising DEAE-Sephacel, octyl-Sepharose CL-4B and hydroxyapatite chromatographies and crystallization. The molecular mass of the native enzyme, as estimated by high-performance gel-permeation chromatography, is 125 kDa, and the subunit molecular mass is 60 kDa. The enzyme contains 15.4% (by mass) glucose equivalent of carbohydrate, and about 1 mol calcium/subunit. The enzyme hydrolyzes aldonate lactones, such as D-galactono-gamma-lactone and L-mannono-gamma-lactone, stereospecifically. Furthermore, it can catalyze the asymmetric hydrolysis of D-pantoyl lactone, which is a promising chiral building block for the chemical synthesis of D-pantothenate. These reactions are reversible, and the reaction equilibrium at pH 6.0 has a molar ratio of nearly 1:1 with D-pantoyl lactone and D-pantoic acid. The Km and Vmax for D-galactono-gamma-lactone are 3.6 mM and 1440 U/mg, respectively, and those for D-galactonate are 52.6 mM and 216 U/mg, respectively. The enzyme also irreversibly hydrolyzes several aromatic lactones, such as dihydrocoumarin and homogentisic-acid lactone.

Amino Acid Sequence

Structure-activity aspects of 4 allergenic sesquiterpene lactones lacking the exocyclic alpha-methylene at the lactone ring.

4 sesquiterpene lactones lacking the exocyclic alpha-methylene at the lactone ring, but possessing further unsaturated centers such as a cyclopentenone ring or an epoxy group, were proved to be sensitizers in guinea pigs. Lack of substitution in the cyclopentenone ring and unsaturation in the side chains appear to be necessary prerequisites for nucleophilic attack. Our results suggest that to the estimated 650 potential sensitizing sesquiterpene lactones of the Compositae family, a further 50 sesquiterpene lactones should be added.

Animals

Metabolic pathways from 1 alpha,25-dihydroxyvitamin D3 to 1 alpha,25-dihydroxyvitamin D3-26,23-lactone. Stereo-retained and stereo-selective lactonization.

The present study was carried out in order to elucidate the metabolic pathway from 1 alpha,25-(OH)2D3 to 1 alpha,25-(OH)2D3-26,23-lactone. For that purpose, we stereospecifically synthesized the vitamin D3 derivatives 1 alpha,23(S),25-(OH)3D3, 1 alpha,23(S),25(R),26-tetrahydroxyvitamin D3, and 23(S),25(R)-1 alpha,25-dihydroxyvitamin D3-lactol. The in vitro metabolism of these compounds was examined in kidney homogenates and intestinal mucosa homogenates from 1 alpha,25-(OH)2D3-supplemented chicks. The naturally occurring 23(S),25(R)-1 alpha,25-dihydroxyvitamin D3-26,23-lactone was produced (in increasing amounts) from 1 alpha,25-(OH)2D3, 1 alpha,25(R),26-(OH)3D3, 1 alpha,23(S),25-(OH),D3, 1 alpha,23(S),25(R),26-(OH)4D3, and 23(S),25(R)-1 alpha,25-(OH)2D3-26,23-lactol. These results indicated that there are two possible metabolic pathways from 1 alpha,25-(OH)2D3 to 1 alpha,23(S),25(R),26-(OH)4D3: the major one is by way of 1 alpha,23(S),25-(OH)3D3 and the minor one is by way of 1 alpha,25(R),26-(OH)3D3. 1 alpha,23(S),25(R),26-Tetrahydroxyvitamin D3 is further metabolized to 23(S),25(R)-1 alpha,25-dihydroxyvitamin D3-26,23-lactone via 23(S),25(R)-1 alpha,25-dihydroxyvitamin D3-26,23-lactol. In the course of our studies, a new biosynthetic vitamin D3 metabolite was isolated in pure form. This metabolite was identified as 23(S),25(R)-1 alpha,25-(OH)2D3-26,23-lactol by UV spectrophotometry and mass spectrometry. Furthermore, we establish in this report that the lactonization of 1 alpha,23,25,26-(OH)4D3 and 1 alpha,25-(OH)2D3-26,23-lactol occurs in a stereo-retained and stereo-selective fashion.

Animals

Sesquiterpene lactones. XVI. In vitro studies on cytotoxic properties of sesquiterpene lactones in tissue cultures of human and animal malignant cells.

Cytoxicity of 18 new sesquiterpene lactones and related compounds was studied by tissue culture method using human malignant KB and HeLa cells, normal RK 13 animal cells, and by the modified plate test of Miyamura. On the basis of criteria of CCNSC HIH, USA, seven compounds with ED50 activities between 0-41 and 3-5 mug/ml were qualified for further investigation in vivo. Cytotoxic activity of sesquiterpene lactones was dependent on presence of an unsaturated lactone ring, (see article). As a rule activity of germacranolids was higher than that of guaianolides.

Animals

Microbial reduction of ketopantoyl lactone to pantoyl lactone.

The results of a microbial survey study have shown that the ability to reduce added ketopantoic acid (or ketopantoyl lactone) and accumulate pantoic acid (or pantoyl lactone) in the growth medium is widespread among diverse fungi. The reductions generally proceeded with less than full stereoselectivity. However, specific strains of the ascomycete Byssochlamys fulva were found to form D[-]-pantoic acid in unusually high yields and optical purity.

4-Butyrolactone

Direct effects of 3,4-dihydroxybutanoic acid gamma-lactone and 2,4,5-trihydroxypentanoic acid gamma-lactone on lateral and ventromedial hypothalamic neurons.

The mechanism of central actions of endogenous sugar acids, 3,4-dihydroxybutanoic acid gamma-lactone (3,4-DB) and 2,4,5-trihydroxypentanoic acid gamma-lactone (2,4,5-TP) which have been newly identified as satiety and hunger substances respectively, was investigated. Intracellular recordings were made from neurons in the lateral hypothalamic area (LHA) of rats and ventromedial hypothalamic nucleus (VMH) of guinea pigs, brain areas referred to as feeding and satiety centers, respectively. The LHA neurons hyperpolarized by 3,4-DB show no change in membrane input resistance while the depolarized VMH neurons are associated with an increase in membrane resistance. The mechanisms related to the action of 3,4-DB on these hypothalamic neurons are similar to those in case of glucose on the glucose-sensitive neuron in the LHA and the glucoreceptor neuron in the VMH. 2,4,5-TP depolarized LHA neurons but hyperpolarized VMH neurons with a decrease in the membrane resistance. Our findings indicate that 3,4-DB and 2,4,5-TP have reciprocal effects on each LHA and VMH neurons, with regard to neuronal excitability.

Action Potentials

Patch testing with the "sesquiterpene lactone mix": a marker for contact allergy to Compositae and other sesquiterpene-lactone-containing plants. A multicentre study of the EECDRG.

6278 patients were patch tested with a sesquiterpene lactone mix (SL-mix) in 10 European clinics. 4011 patients were tested only with 0.1% SL-mix, 63 (approximately 1.5%) of whom were positive, with 26 (41%) of these cases being considered clinically relevant. There were no cases of active sensitization, though 5 cases of irritation were reported. 22 irritant reactions and 22 cases of active sensitization occurred when testing also with 1% and 0.33% concentrations of SL-mix. SL-mix 0.1% pet. is shown to be an important patch test and many relevant sensitizations will be missed without routine screening with such a mix. Most patients with SL-mix sensitivity presented with hand and/or face dermatitis, apparent photodermatitis or more generalised eczema.

Dermatitis, Contact

Structure of a lactone, 2,4,6-trideoxy-4,6-dimethyl-2-(2-oxopropyl)-7-O- (phenylmethyl)-L-glycero-D-manno-heptono-1,5-lactone 3-(3,5-dinitrobenzoate).

C26H28N2O10, Mr = 528.5, triclinic, P1, a = 9.524 (1), b = 11.8187 (8), c = 12.615 (1) A, alpha = 66.512 (7), beta = 83.321 (9), gamma = 88.758 (8) degrees, V = 1293.0 (4) A3, Dx = 1.357 g cm-3, Z = 2, lambda(Cu K alpha) = 1.54178 A, mu = 8.99 cm-1, F(000) = 556, T = 293 K, final R = 0.039, wR = 0.048 for 2425 reflections with I greater than 3 sigma(I). The tetra-substituted valerolactone ring has a boat conformation and the relative stereochemistries of the three pairs of adjacent substituents are cis-trans-trans.

Lactones