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S Carmeli

Publications and source records attributed to S Carmeli.

27 records · Page 2Linked to original sources

Vibrindole A, a metabolite of the marine bacterium, Vibrio parahaemolyticus, isolated from the toxic mucus of the boxfish Ostracion cubicus.

The EtOAc extract of the whole culture medium of Vibrio parahaemolyticus, which inhabits the toxic mucus of the box fish Ostracion cubicus, afforded a new indole-derived natural product, vibrindole A [1], along with some known cyclic dipeptides and indoles. The structure of 1 was determined by analysis of its physicochemical characteristics.

Animals↗

Vanadate, a transition state inhibitor of chloroplast CF1-ATPase.

The activity of CF1-ATPase was inhibited by vanadate in an allosteric manner with respect to CaATP as substrate. The cooperative interaction was enhanced by preincubation of the enzyme in the presence of ADP and Ca2+ ions and of free divalent metal ions during assay of the activity. The strongest cooperative interaction with a Hill coefficient of 5.3 +/- 0.1 was found when the reaction was stopped after 30 s, before steady state was reached. Under these conditions, the concentration of an exchangeable ADP, tightly bound to one of the active sites on the enzyme, was shown to be the highest. A Ki of 12.4 +/- 1.2 microM for vanadate inhibition was determined under these conditions. Direct measurements with the aid of 51V NMR indicated that vanadate binds to CF1 in the presence of Ca2+ and ADP in a positive cooperative manner with a Hill coefficient of 2.3 +/- 0.2 and an average Kd of 0.3 +/- 0.04 nM. It was suggested that a formation of pentacovalent vanadyl-ADP at the active site caused the inhibition. Vanadyl-ADP was suggested to be a strong inhibitor, being an analogue of a pentacovalent phosphoryl-ADP, which is proposed to be the transition state intermediate of CF1.

Adenosine Diphosphate↗

Scytophycins, novel microfilament-depolymerizing agents which circumvent P-glycoprotein-mediated multidrug resistance.

Cells demonstrating the multidrug resistance phenotype because of overexpression of P-glycoprotein, a drug efflux pump, are resistant to the cytotoxic effects of most natural product drugs. To determine if P-glycoprotein confers resistance to the syctophycins, a family of natural cytotoxic macrolides recently isolated from cyanobacteria of the family Syctone-mataceae, we have characterized the effects of these compounds on drug-sensitive (SKOV3) and drug-resistant (SKVLB1) human ovarian carcinoma cells. While SKVLB1 cells demonstrated > 150- and 10,000-fold decreases in sensitivity to Adriamycin and vinblastine, respectively, they were equally sensitive as SKOV3 cells to the antiproliferative effects of tolytoxin and certain related scytophycins. The SKVKB1 cells were 4- to 11-fold resistant to other scytophycins and were 14-fold resistant to cytochalasin B. Microfilaments in SKOV3 and SKVLB1 cells were depolymerized by similar concentrations of tolytoxin, while cytochalasin B was less potent toward SKVLB1 cells than SKOV3 cells. Both tolytoxin and cytochalasin B enhanced the cytotoxicity of vinblastine toward SKVLB1 cells; however, neither compound affected the sensitivity to Adriamycin or cisplatin. Verapamil markedly increased the accumulation of [3H]vinblastine by SKLVB1 cells, while cytochalasin B caused only modest increase, and tolytoxin had no effect on [3H]vinblastine accumulation. These results suggest that some of the scytophycins, including tolytoxin, are not subject to P-glycoprotein-mediated efflux from cells exhibiting multidrug resistance due to overexpression of this transport protein. These compounds may therefore be useful for killing drug-resistant tumor cells.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Action of tolytoxin on cell morphology, cytoskeletal organization, and actin polymerization.

Tolytoxin, a cytostatic, antifungal macrolide produced by blue-green algae of the genus Scytonema, is a potent, reversible inhibitor of cytokinesis in cultured mammalian cells. Treatment of KB cells with 2-16 nM tolytoxin results in profound morphological changes, beginning with the formation of zeiotic processes and culminating in nuclear protrusion. In L1210 cells, cytokinesis is inhibited by as little as 2 nM tolytoxin, while karyokinesis proceeds normally, resulting in polynucleation. Tolytoxin specifically disrupts microfilament organization in A10 cells, while having no apparent effect on microtubules or intermediate filaments. Tolytoxin inhibited actin polymerization in vitro and also caused the depolymerization or fragmentation of F-actin in vitro. Tolytoxin exhibits effects that closely resemble those of cytochalasin B but is effective at concentrations 1/50-1/1,000 that of cytochalasin B.

Actins↗

Inhibition of chloroplast CF1-ATPase by vanadate.

Inhibition of ATPase activity by vanadate, having K1/2 of 0.5 mM, was demonstrated in the CF1-ATPase. The Ca(2+)-dependent ATPase activity of the isolated enzyme was inhibited in an allosteric manner by vanadate with a Hill coefficient of 3.19 +/- 0.6. Vanadate also inhibited ATPase and Pi-ATP exchange activities of the chloroplast membrane-bound enzyme. Using 51V NMR it was demonstrated that ATP caused partial release of about 1.87 equivalents while ADP caused additional binding of approximately 1.46 equivalents of vanadate, when added to a solution containing CF1 equilibrated with vanadate. The relevance of these results to a possible involvement of a pentacovalent phosphate as transition state intermediate in the hydrolysis of ATP by CF1-ATPase is discussed.

Adenosine Diphosphate↗

Biological effects of tolytoxin (6-hydroxy-7-O-methyl-scytophycin b), a potent bioactive metabolite from cyanobacteria.

Tolytoxin, a macrocyclic lactone, is a potent antifungal antibiotic, exhibiting MICs in the range of 0.25 to 8 nanomolar. Tolytoxin also inhibits the growth of a variety of mammalian cells at similar doses, without specific inhibition of macromolecular synthesis. The effects in mammalian cells are primarily cytostatic, with cell death being time- and dose-dependent. Tolytoxin is highly toxic to mice, exhibiting an LD50 (ip) of 1.5 mg/kg. No antibacterial, antiviral, or hemolytic activities were observed.

Animals↗

Accumulation of Scoparone in Heat-Treated Lemon Fruit Inoculated with Penicillium digitatum Sacc.

Phytoalexin scoparone (6,7-dimethoxycoumarin) generally was not detected in noninoculated lemon fruit (Citrus limon [L.] Burm., cv Eureka) but accumulated in fruit after inoculation with Penicillium digitatum Sacc. A much greater increase in the amount of scoparone was found in fruit exhibiting an incompatible response to Penicillium after heat treatment at 36 degrees C for 3 days. Heat treatment prevented development of decay in the inoculated fruit. The concentration of the compound after inoculation continued to increase during and after the heat treatment period, reaching 178 micrograms per gram fresh weight of the flavedo 6 days after the heat treatment. Changes in scoparone concentration in fruit were closely correlated with the changes in the antifungal activity of the fruit extract. A low concentration of the phytoalexin was detected in fruit injured mechanically. Scoparone also accumulated in the fruit following ultraviolet illumination; the concentration of the compound was dose-dependent. Median effective dose values of the inhibition of germ tube elongation and spore germination of P. digitatum were 29 and 46 micrograms per milliliter, respectively. Our findings suggest that the rapid increase in scoparone concentration plays an important role in the increased resistance of heat-treated lemon fruit to infection by P. digitatum.

Journal Article↗

Chemical properties of Myxococcus xanthus antibiotic TA.

Antibiotic TA was purified and crystallized from culture fluids of Myxococcus xanthus TA. The antibiotic (C34H57O9N, M.W. 623.8) contained the following functional groups: ketone, lactone, secondary amide, methoxy-substituted diene (lambda max 239 nm), primary alcohol and three secondary alcohols, two of which were cis-vicinal. Mild alkaline hydrolysis opened the lactone with concomitant loss of antibiotic activity. Periodate oxidation also destroyed biological activity.

Anti-Bacterial Agents↗

Tolytoxin and new scytophycins from three species of Scytonema.

Tolytoxin [1], the major cytotoxin associated with Scytonema mirabile strain BY-8-1, Scytonema burmanicum strain DO-4-1 and Scytonema ocellatum strains DD-8-1, FF-65-1, and FF-66-3, has been shown to be 6-hydroxy-7-O-methylscytophycin B. Minor amounts of three other new cytotoxic scytophycins, 6-hydroxyscytophycin B [2], 19-O-demethylscytophycin C [3], and 6-hydroxy-7-O-methylscytophycin E [4], have also been isolated from these cyanophytes. The gross structures and stereochemistry are based on nmr and cd analysis and on comparison with scytophycins A-E.

Antifungal Agents↗