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Biomedical subjects

T Yasumoto

Publications and source records attributed to T Yasumoto.

At least 19 recordsLinked to original sources

Inhibition of specific binding of okadaic acid to protein phosphatase 2A by microcystin-LR, calyculin-A and tautomycin: method of analysis of interactions of tight-binding ligands with target protein.

Several groups have reported that okadaic acid (OA) and some other tight-binding protein phosphatase inhibitors including microcystin-LR (MCLR), calyculin-A and tautomycin prevent each other from binding to protein phosphatase 2A (PP2A). In this paper, we have introduced an improved procedure for examining to what extent the affinity of an enzyme for a labelled tight-binding ligand is reduced by binding of an unlabelled tight-binding, ligand to the enzyme. Using this procedure, we have analysed the dose-dependent reduction of PP2A binding of [24-3H]OA by addition of OA, MCLR, calyculin-A and tautomycin. The results indicate that the binding of the unlabelled inhibitors to the PP2A molecule causes a dramatic (10(6)-10(8)-fold) increase in the dissociation constant associated with the interaction of [24-3H]OA and PP2A. This suggests that OA and the other inhibitors bind to PP2A in a mutually exclusive manner. The protein phosphatase inhibitors may share the same binding site on the PP2A molecule. We have also measured values of the dissociation constant (Ki) for the interaction of these toxins with protein phosphatase 1 (PP1). For MCLR and calyculin-A, the ratio of the Ki value obtained for PP1 to that for PP2A was in the range 4-9, whereas it was 0.01-0.02 for tautomycin. The value of tautomycin is considerably smaller than that (0.4) calculated from previously reported Ki values.

Antifungal Agents

Further report of the occurrence of tetrodotoxin in Atelopus species (family: Bufonidae).

In alcoholic extracts from museum samples of the toads Atelopus subornatus and A. peruensis tetrodotoxin and its analogues, 4-epitetrodotoxin and 4,9-anhydrotetrodotoxin were detected by fluorometric HPLC analysis, extending the list of amphibians containing this toxin. However, the toxin was not detected in samples of Melanophryniscus stelzneri, Dendrophryniscus minutus and Oreophrynella sp.

Animals

[Fatal ichthyosarcotoxism after eating shark meat. Implications of two new marine toxins].

A fish poisoning involving 188 hospitalizations occurred in November 1993, in Manakara, a middle-sized town on the south-east coast of Madagascar, following the ingestion of shark. A single shark was involved in this poisoning and was identified as Carcharinus leucas. There was no unusual characteristic of this shark or its meat. The attack rate was about 100%. First clinical signs appeared within five to ten hours after ingestion. The patients presented neurological symptoms almost exclusively, the most prominent being a constant, severe ataxia. Gastrointestinal troubles, like diarrhoea and vomiting were rare. The overall case-fatality ratio was close to 30% among the 200 poisoned inhabitants. Search for similar poisoning previously reported in this area was negative, and fishermen in Manakara usually eat that kind of shark without mistrust. Bacteriological and chemical origins were eliminated. Two liposoluble toxins were isolated from the shark liver and tentatively named carchatoxin-A and -B respectively. They were distinct from ciguatoxin in chromatographic properties.

Adult

Estimation of the rate constants associated with the inhibitory effect of okadaic acid on type 2A protein phosphatase by time-course analysis.

As is often the case with tightly binding inhibitors, okadaic acid produces its inhibitory effect on type 2A protein phosphatase (PP2A) in a time-dependent manner. We measured the rate constants associated with the binding of okadaic acid to PP2A by analysing the time-course of the reduction of the p-nitrophenyl phosphate (pNPP) phosphatase activity of the enzyme after application of okadaic acid. The rate constants for dissociation of okadaic acid from PP2A were also estimated from the time-course of the recovery of the activity from inhibition by okadaic acid after addition of a mouse IgG1 monoclonal antibody raised against the inhibitor. Our results show that the rate constants for the binding of okadaic acid and PP2A are of the order of 10(7) M-1.s-1, a typical value for reactions involving relatively large molecules, whereas those for their dissociation are in the range 10(-4)-10(-3) s-1. The very low values of the latter seems to be the determining factor for the exceedingly high affinity of okadaic acid for PP2A. The dissociation constants for the interaction of okadaic acid with the free enzyme and the enzyme-substrate complex, estimated as the ratio of the rate constants, are both in the range 30-40 pM, in agreement with the results of previous dose-inhibition analyses.

Animals

Selective stimulation of Ca2+ flux in cells by maitotoxin.

Maitotoxin elicits a dose-dependent stimulation of 45Ca2+ influx in glioma C6, pheochromocytoma PC12, insulinoma HIT and human blood cells, while having no effect in liposomes. In HIT cells maitotoxin also elicited influx of 86Rb+ greater than 22Na+ greater than 54Mn2+, but the stimulation was far less than for 45Ca2+. Stimulation of 45Ca2+ influx was blocked by Ni2+, Co2+, Cd2+ and Mn2+, and markedly reduced by Ba2+. Divalent cations, in particular Ca2+, Ba2+, Mn2+ and Cd2+, enhanced influx of the monovalent cations 22Na+ and 86Rb+.

Animals

Inhibitory effect of okadaic acid derivatives on protein phosphatases. A study on structure-affinity relationship.

The effect of structural modifications of okadaic acid (OA), a polyether C38 fatty acid, was studied on its inhibitory activity toward type 1 and type 2A protein phosphatases (PP1 and PP2A) by using OA derivatives obtained either by isolation from natural sources or by chemical processes. The dissociation constant (Ki) for the interaction of OA with PP2A was estimated to be 30 (26-33) nM [median (95% confidence limits)]. The OA derivatives used and their affinity for PP2A, expressed as Ki (in brackets) were as follows: 35-methyl-OA (DTX1) [19 (12-25) pM], OA-9,10-episulphide (acanthifolicin) [47 (25-60) pM], 7-deoxy-OA [69 (31-138) pM], 14,15-dihydro-OA [315 (275-360) pM], 2-deoxy-OA [899 (763-1044) pM], 7-O-palmitoyl-OA [greater than 100 nM], 7-O-palmitoyl-DTX1 [greater than 100 nM], methyl okadate [much greater than 100 nM], 2-oxo-decarboxy-OA [much greater than 100 nM] and the C-15-C-38 fragment of OA [much greater than 100 nM]. The sequence of the affinity of these derivatives for PP1 was essentially the same as that observed with PP2A, although the absolute values of Ki were very different for the enzymes. The inhibitory effect of OA on PP2A was reversed by applying a murine monoclonal antibody against OA, which recognizes modifications of the 7-hydroxyl group of the OA molecule. It has been shown by n.m.r. spectroscopy and X-ray analysis that one end (C-1-C-24) of the OA molecule assumes a circular conformation. The present results suggest the importance of the conformation for the inhibitory action of OA on the protein phosphatases. The ratios of the Ki values for PP1 to that for PP2A, which were within the range 10(3)-10(4), tended to be smaller for the derivatives with lower affinity, indicating that the structural changes in OA impaired the affinity for PP2A more strongly than that for PP1.

Antibodies, Monoclonal

Properties of base-substituted and carboxyl-esterified analogues of griseolic acid, a potent cAMP phosphodiesterase inhibitor.

Griseolic acid (GA) is a potent cyclic AMP (cAMP) phosphodiesterase (PDE) inhibitor that has an adenine base and two carboxyl groups in its molecule (Nakagawa F, Okazaki T, Naito A, Iijima Y and Yamazaki M, J Antibiot 38: 823-829, 1985). GA analogues were synthesized in which the adenine group was substituted with guanine (6-deamino-2-amino-6-hydroxygriseolic acid, G-GA) or hypoxanthine (6-deamino-6-hydroxygriseolic acid, H-GA). Their inhibitory activities to cyclic GMP (cGMP) PDE and cAMP PDE were compared with GA. For cGMP PDE from rod outer segments of bovine retina, the IC50 values of GA, G-GA and H-GA were 18, 0.040 and 0.12 microM, respectively, with 0.25 microM cGMP as substrate. For type IV PDE isozyme from mouse 3T3 fibroblast cells, the IC50 values of GA, G-GA and H-GA were 0.021, 15 and 11 microM, respectively, with 0.25 microM cAMP as substrate. Thus, GA and G-GA were found to be base-selective inhibitors of type IV PDE of 3T3 cells and type V PDE of bovine retinas, respectively. Esters of carboxylic acids of GA were synthesized in order to increase permeability into cells, and their efficacy was tested by measuring the accumulation of cAMP in 3T3 cells. The dipivaloyloxymethyl ester of GA was found to increase cAMP levels at 0.1 microM, while GA and 3-isobutyl-1-methylxanthine were active only above 100 microM, and the dimethyl ester of GA was inactive. The dipivaloyloxymethyl ester of GA seems to exert its activity after conversion to GA in the cell, since the pivaloyloxymethyl ester was easily hydrolysed by the enzyme action and the dipivaloyloxymethyl ester of GA itself was much less potent an inhibitor of PDE. The dipivaloyloxymethyl ester of GA inhibited thrombin-induced aggregation of platelets and stimulated lipolysis of adipocytes at low concentrations.

3',5'-Cyclic-AMP Phosphodiesterases

Cross-reactivity of highly purified okadaic acid (OA), synthetic, spiroketal East sphere of OA and ciguatoxin.

This study presents data from the cross-reactivity analysis of purified ciguatoxin (CTX), okadaic acid (OA), and the East sphere or Fragment B-C of OA with their homologous antibodies, monoclonal antibodies to ciguatoxin (MAb-CTX) and okadaic acid (MAb-OA). The test system used was the stick enzyme immunoassay. MAb-CTX gave peak titers of 1.5ng, 10ng and 50ng respectively for CTX, East sphere and OA. Competitive inhibition analysis showed that 4ng purified CTX blocked completely MAb-CTX reaction with crude CTX, OA and East sphere of OA blocked at similar concentrations (approximately 50ng). The activity with MAb-OA in the homologous system with OA and East sphere was insignificant. This may be attributable to the improper concentrations used. The cross-reactivity between MAb-CTX with OA and its Fragment B-C may cause difficulty in the test system in its application to assess toxic fish due to ciguatoxin.

Animals

Light and electron microscopic studies of the murine heart after repeated administrations of ciguatoxin or ciguatoxin-4c.

After repeated ip and oral administrations of ciguatoxin (CTX) and ciguatoxin-4c (CTX-4c), one of the derivatives of CTX, to male ICR mice at a dose of 0.1 microgram/kg for 15 days, resulted in marked swelling of cardiac cells and endothelial lining cells of blood capillaries in the heart was observed. Single doses caused no discernible pathological changes. Damage to the capillaries was followed by prominent effusion of serum and erythrocytes into the interstitial spaces of the myocardium occurred. Swelling of the endothelial lining cells of capillaries caused narrowing of the lumen and accumulation of blood platelets in capillaries, which resulted in multiple single cell necroses of cardiac muscle cells. Within 1 month after the treatments of these phycotoxins, myocytes and capillaries appeared to be normal. Effusion in the interstitial spaces resulted in formation of bundles of dense collagen, which persisted for 14 months. Diffuse interstitial fibrosis was prominent in septum and ventricles, accompanied by bilateral ventricular hypertrophy. A single dose of 0.7 micrograms/kg ip resulted in severe acute heart injuries, followed by diffuse myocardial fibrosis.

Animals

Agents that stimulate phosphoinositide turnover also elevate cAMP in SK-N-SH human neuroblastoma cells.

Stimulation of m1 and of m3 muscarinic receptors has previously been shown to increase intracellular cAMP levels in a variety of cells. Although the mechanism underlying this response is not fully understood, it has been hypothesized to be secondary to the IP3-mediated rise in intracellular calcium. In order to determine whether other means of elevating intracellular calcium also raise cAMP levels, we stimulated SK-N-SH human neuroblastoma cells with bradykinin or with maitotoxin. Both of these agents stimulated phospholipase C, stimulated inositol phosphate release and elevated cAMP levels, thus demonstrating that this cAMP response is not unique to muscarinic receptor stimulation.

Bradykinin

Starfish saponins, 48. Isolation of fifteen sterol constituents (six glycosides and nine polyhydroxysteroids) from the starfish Solaster borealis.

This paper reports a complete steroid glycoside and polyhydroxysteroid analysis of the starfish Solaster borealis, collected at Mutsu Bay, Japan. The glycosides include a new pentaglycoside steroid sulfate ("asterosaponin"), designated solasteroside A [1], two new sulfated 24-O-diglycosides, both with the common 5 alpha-cholesta-3 beta,6 alpha,8,15 alpha, 24-pentaol aglycone, borealosides A [2] and B [3], two new 24-O-(3-O-methyl)xylosides, borealosides C [4] and D [5], having the same aglycone with an additional hydroxy group at 4 beta-position in 5, and the known amurensoside B, previously isolated from Asterias amurensis. Among the polyhydroxysteroid constituents, four (7-10) are new, and five (11-15) have previously been isolated from starfishes.

Animals

Maitotoxin-induced intracellular calcium rise in PC12 cells: involvement of dihydropyridine-sensitive and omega-conotoxin-sensitive calcium channels and phosphoinositide breakdown.

The biological activities of maitotoxin are strictly dependent on the extracellular calcium concentration and are always associated with an increase of the free cytosolic calcium level. We tested the effects of voltage-sensitive calcium channel blockers (nicardipine and omega-conotoxin) on maitotoxin-induced intracellular calcium increase, membrane depolarization, and inositol phosphate production in PC12 cells. Maitotoxin dose dependently increased the cytosolic calcium level, as measured by the fluorescent probe fura 2. This effect disappeared in a calcium-free medium; it was still observed in the absence of extracellular sodium and was enhanced by the dihydropyridine calcium agonist Bay K 8644. Nicardipine inhibited the effect of maitotoxin on intracellular calcium concentration in a dose-dependent manner. The maitotoxin-induced calcium rise was also reduced by pretreating cells with omega-conotoxin. Pretreatment of cells with maitotoxin did not modify 125I-omega-conotoxin and [3H]PN 200-110 binding to PC12 membranes. Nicardipine and omega-conotoxin inhibition of maitotoxin-evoked calcium increase was reduced by pertussis toxin pretreatment. Maitotoxin caused a substantial membrane depolarization of PC12 cells as assessed by the fluorescent dye bisoxonol. This effect was reduced by pretreating the cells with either nicardipine or omega-conotoxin and was almost completely abolished by the simultaneous pretreatment with both calcium antagonists. Maitotoxin stimulated inositol phosphate production in a dose-dependent manner. This effect was reduced by pretreating the cells with 1 microM nicardipine and was completely abolished in a calcium-free EGTA-containing medium. The findings on maitotoxin-induced cytosolic calcium rise and membrane depolarization suggest that maitotoxin exerts its action primarily through the activation of voltage-sensitive calcium channels, the increase of inositol phosphate production likely being an effect dependent on calcium influx. The ability of nicardipine and omega-conotoxin to inhibit the effect of maitotoxin on both calcium homeostasis and membrane potential suggests that L- and N-type calcium channel activation is responsible for the influx of calcium following exposure to maitotoxin, and not that a depolarization of unknown nature causes the opening of calcium channels.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy

Maitotoxin, a novel activator of mediator release from human basophils, induces large increases in cytosolic calcium resulting in histamine, but not leukotriene C4, release.

Maitotoxin (MTX) is a potent marine toxin which stimulates several Ca(++)-dependent processes presumably through an increase in Ca++ permeability. We have examined the effect of MTX on the release of chemical mediators from human basophils and its mechanism of action. MTX (1-20 ng/ml) induced histamine release (37-100%) from both mixed leukocyte preparations and purified basophils. Histamine release activated by MTX was slow (t 1/2 approximately equal to 15 min), temperature and Ca++ dependent (optimal at 37 degrees C and 1-2.5 mM Ca++). Sr++ ion could substitute for Ca++ in the secretory process. Digital video microscopy analysis of purified (> 70%) basophils revealed that MTX (1-20 ng/ml) induced a slow and marked increase of cytosolic Ca++ levels that was temporally coincident with histamine release. MTX (1-20 ng/ml) stimulated the release of sulfidopeptide leukotriene C4 from mixed leukocyte preparations (approximately equal to 0.5% basophils). However, purified basophils (77 +/- 7%) showed no sulfidopeptide leukotriene C4 release even in the presence of large histamine secretion (84 +/- 14%). Two organic Ca(++)-channel entry blockers, verapamil and diltiazem (1-30 microM) inhibited the release of histamine induced by MTX, whereas the dihydropyridine nifedipine (0.1-10 microM) caused only minimal inhibition. These results suggest that MTX represents a novel stimulus useful to study the role of Ca++ in human basophil mediator release.

Basophils

Maitotoxin effects are blocked by SK&F 96365, an inhibitor of receptor-mediated calcium entry.

The dinoflagellate toxin maitotoxin (MTX) elicited a sustained increase of [Ca2+]i in C6 glioma cells. This response was inhibited by SK&F 96365, a blocker of receptor-mediated calcium entry. In C6 cells, endothelin-1 elicited a rapid but transient increase in [Ca2+]i, followed by a smaller sustained increase. SK&F 96365 inhibited the sustained increase in [Ca2+]i. In both C6 glioma cells and RIN insulinoma cells, MTX elicited a marked influx of 45Ca2+. SK&F 96365 inhibited MTX-induced 45Ca2+ influx by 95% at 30 microM. The L-type calcium channel blocker nifedipine, even at 10 microM, inhibited MTX-induced calcium uptake by only 20% in RIN cells and by only 10% in C6 cells. MTX elicited calcium-dependent phosphoinositide breakdown in both C6 and RIN cells. In both cell lines, the MTX-induced phosphoinositide breakdown was inhibited by 90% by SK&F 96365 at 30 microM. Endothelin-1 and carbamylcholine elicited phosphoinositide breakdown in C6 cells and RIN cells, respectively. The stimulations were unaffected by the presence of SK&F 96365 up to 100 microM. In RIN insulinoma cells, MTX elicited calcium-dependent release of insulin. SK&F 96365 at 30 microM inhibited MTX-induced insulin release by 75%, whereas nifedipine, even at 30 microM, inhibited release by only 10%. The blockade of MTX-induced responses by SK&F 96365 indicates that MTX increases intracellular calcium by interacting directly with a calcium-entry system that is similar, in its sensitivity to SK&F 96365, to the calcium-entry system activated by receptors that elicit phosphoinositide breakdown. Activation of phospholipase C and hormone release by MTX also are blocked by SK&F 96365 and, thus, may be secondary to the activation of such a calcium-entry system.

Calcium

Progress on chemical knowledge of ciguatoxins.

The chemical data setted up on the ciguatoxins responsible for ciguatera fish poisonings are summarized and discussed. The multiplicity of the toxic compounds isolated from fish and algal material is described. A tentative screening of the principal toxins still on process in the two laboratories has shown that (1) CTX is dominant in carnivorous fish, (2) less polar toxins are dominant in herbivorous fish, (3) CTX precursors are produced by G. toxicus in natura and in culture conditions. The increasing polarity of the toxins in step with the food chain levels supports the hypothesis of an oxidative modification of the precursors during the bio-accumulation in fish.

Animals

Partial structures and binding studies of maitotoxin, the most potent marine toxin.

Partial structures of maitotoxin (MTX) were deduced by extensive two-dimensional NMR measurements, showing that the toxin had carbon-carbon double bonds in both termini of the molecule, and a primary alcohol group at the end. These functionalities were used for preparation of a radioligand of MTX; [3H]H-MTX and [3H]benzoyl-MTX. Both radioligands had high levels of non-specific binding to tissues. The binding of [3H]MTX to rat glioma C6 cells was inhibited by a didesulfo-MTX, suggesting the presence of the specific site for MTX-binding on the external surface of the cell membrane.

Animals

Light and electron microscopic observation of experimental palytoxin poisoning in mice.

The effects of palytoxin on young male ICR mice were compared with the combined effects of palytoxin and ouabain or those of several cations as well as the effects of potassium. The target organs of palytoxin were the heart, kidney, pancreas, small intestine and liver. Pathomorphological changes of the heart induced by palytoxin were similar those of a lethal dose of KC1. However, the KC1-treated animals did not show any changes in the kidney. Mice given ouabain at doses up to 5 mg/kg also showed similar injuries in proximal as well as distal convoluted urinary tubules, while the heart of mice given ouabain at the same doses showed no discernible morphological changes. Ouabain 5 mg/kg did not influence the severity of injuries both in the heart and kidney induced by palytoxin at 4 micrograms/kg. Therefore, it may be assumed that palytoxin poisoning is a symptom-complex of hyperkalemia and causes a profound inhibition of Na+, K(+)-ATPase.

Acrylamides