Role of eicosanoids in the pathogenesis of atopic dermatitis.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to K Ikai.
Explore the source record for details and available documents.
The importance of environmental factors such as ultraviolet light and temperature in the pathogenesis of cutaneous lupus erythematosus is well recognized. Recent evidence suggests the presence of autoantibodies to heat shock proteins (HSP) in the sera and enhanced expression of the HSP70 gene in peripheral blood mononuclear cells of patients with systemic lupus erythematosus. We designed experiments to determine how HSP or stress protein inducers affect the cell surface binding of IgG antibodies from sera containing anti-SS-A/Ro and anti-ribonuclear protein (RNP) antibodies to keratinocytes because these antibodies are considered to be one of the immunologic triggers of cutaneous lupus erythematosus. Immunofluorescence and immunoblot analysis using a monoclonal antibody to the 72 kDa of HSP revealed that an 18-h incubation with 10 micrograms/ml of delta 12-PGJ2, one of cytotoxic prostaglandins, induced HSP72 formation in cultured human keratinocytes. delta 12-PGJ2 augmented the binding of IgG antibodies from sera containing anti-U1RNP and anti-SS-A/Ro antibodies to cultured keratinocytes, but produced no enhancement of the binding of IgG antibodies from sera containing anti-Sm or anti-DNA antibodies. Similar results were also obtained by using flow cytometry analysis. HSP was also induced by ultraviolet B irradiation. These results suggest that exposure of keratinocytes to stressors such as delta 12-PGJ2 and ultraviolet light increases the binding sites for U1RNP,SS-A/Ro, and SS-B/La antibodies. The association between HSP induction and the appearance of extractable nuclear antigens may provide a better understanding of why environmental stimuli can promote the development of erythematous lesions in the skin.
Aureobasidins are a group of cyclic depsipeptides with antifungal activity and are produced by Aureobasidium pullulans. Aureobasidins are composed of eight amino acids and one hydroxy acid such as 2-hydroxy-3-methylpentanoic acid (Hmp), and highly lipophilic. Five new aureobasidins, S1, S2a, S2b, S3 and S4, which have higher hydrophilicity in reversed phase HPLC than the known aureobasidins A-R, were discovered in a fermentation broth of A. pullulans R106 by means of on-line liquid chromatography/mass spectrometry with electrospray ionization. We identified the structures of the compounds and studied their antifungal activities. Three of the new aureobasidins, S2b, S3 and S4, which have hydroxylated Hmp as the hydroxy acid, were highly active against Candida spp. and Cryptococcus neoformans.
Using botulinum C3 exoenzyme, which specifically ADP-ribosylates the rho gene products (rho proteins), we examined the role of these proteins in cell cycle progression in Swiss 3T3 cells. Incubation of cell lysates with C3 exoenzyme revealed a single [32P]ADP-ribosylated protein with an M(r) of 23K. This protein was identified as rhoA protein by isoelectric focusing and peptide mapping. When C3 exoenzyme was added to the culture, it ADP-ribosylated the substrate protein in the cells and reduced their growth rate and saturation density. The reduction was dependent on the amount of C3 exoenzyme and on the extent of ADP-ribosylation of the rho protein in the cells. Flow cytometric analysis of logarithmically growing cells showed that the enzyme treatment concentration-dependently accumulated the cells in the G1 phase of the cell cycle. When G1-enriched cells were treated with C3 exoenzyme and cell cycle progression initiated by the addition of serum was monitored, inhibition of G1-S transition was clearly observed. These results suggest that the rhoA gene product plays a critical role in G1-S progression in cultured Swiss 3T3 cells and that the ADP-ribosylation abolishes this activity and causes the cells to accumulate in G1 phase.
Cyclopentenone prostaglandins (PG) such as delta 12-PGJ2 and PGA are potent inhibitors of growth in a variety of cultured cells, including human epidermal cells. To clarify the mechanism of PG cytotoxicity in human epidermal cells, we examined the effects of delta 12-PGJ2 on the induction of a heat shock protein (HSP), and on the organization of cytoskeletons in the HSC-I-transformed human epidermal cell line. Immunoblot analysis using a monoclonal antibody specific for the 72-kD heat shock protein (HSP72) revealed that a 12-h incubation with 5 micrograms/ml of delta 12-PGJ2 induced HSP72 formation in HSC-I cells. HSP72 was also induced by heat shock treatment at 43 degrees C for 90 min. The quantity of HSP72 produced was markedly decreased by co-treatment with 1 microgram/ml of cycloheximide in delta 12-PGJ2-treated cells, and similarly reduced in HSC-I cells following heat treatment. Immunofluorescence using a monoclonal antibody to HSP72 demonstrated that HSP72 was localized mainly in the cytoplasm of HSC-I cells. Following treatment with 5 micrograms/ml of delta 12-PGJ2, however, HSP72 was found in the nucleolus as well as in the cytoplasm. The accumulation of HSP in the nucleolus was similarly prominent in HSC-I cells after treatment at 43 degrees C for 90 min. Addition of delta 12-PGJ2 to confluent HSC-1 cells resulted in the disappearance of actin filaments and the disarrangement of keratin filaments, as visualized with fluorescent-labeled phallacidine or immunofluorescence. These results suggest that the cytotoxicity of cyclopentenone PG is related to the induction of HSP72, and to cytoskeleton damage in transformed human epidermal cells in culture.
Explore the source record for details and available documents.
The cytotoxic action of various prostanoids was examined on a transformed human epidermal cell line (HSC-1), and methyl(5S,6S,7Z)-5,6-diacetoxy-7-((2S)-4-chloro-2-hydroxy-2-((2 Z+ ++)-2-octenyl)-5-oxo-3-cyclopentenylidene)heptanoate (YM-11), which is a punaglandin compound, was found to be most active. YM-11 exerted a dose-dependent inhibition of HSC-1 cell growth over 0.03 microM (0.01 micrograms/ml), and at 0.3 microM (0.1 micrograms/ml) its growth was completely inhibited. The IC50 value of YM-11 on HSC-1 cell growth was calculated as 0.15 microM (0.05 micrograms/ml). Methyl(E)-7-(5-chloro-2-hydroxy-2-octyl-5-oxo-3-cyclopentenylidene )heptanoate (YM-3), which is also a punaglandin derivative, showed remarkable cytotoxicity on HSC-1 cells with an IC50 of 0.24 microM (0.08 micrograms/ml). Concerning other cytotoxic prostaglandins (PGs), the IC50 values of delta 7-PGA1, delta 12-PGJ2 and PGD2 were 1.5 microM (0.5 micrograms/ml), 2.1 microM (0.75 micrograms/ml) and 5.7 microM (2 micrograms/ml), respectively. On the basis of the present data and previous in vitro and in vivo evidence, punaglandin derivatives may be useful antineoplastic agents for skin cancer.
Structures of 17 minor forms of aureobasidins (Abs), Abs B-R, were elucidated by mass fragmentation and amino acid analysis. The fragmentation patterns by FAB-MS spectroscopy of Abs A-E seemed to follow predictable rules, so we used the rules to elucidate the 13 other Abs. All Abs consisted of eight amino acids and one hydroxy acid.
The 1H and 13C NMR spectra of aureobasidins A and E were analyzed by a variety of 2D NMR techniques. Two isomers of aureobasidin A existed as an equilibrium mixture in deuteriochloroform. The isomerism was associated with cis-trans rotation of the amide bond between N-methylphenylalanine and proline. Almost all of the aureobasidin E was found in deuteriochloroform as one conformer; the amide bond between beta-hydroxy-N-methylphenylalanine and proline was in the cis-conformation. Experiments with the NOE made identification of the conformation of the amide bonds of aureobasidins A and E possible.
Aureobasidins A to R were isolated from the fermentation broth of Aureobasidium pullulans R106. Aureobasidins are cyclic depsipeptide antibiotics with MW's ranging from 1.070 to 1,148. Aureobasidins showed high in vitro antifungal activity against Candida albicans.
Aureobasidin A, a new antifungal antibiotic, was isolated from the culture medium of Aureobasidium pullulans R106. Aureobasidin A was a cyclic depsipeptide consisting of eight alpha-amino acid units and one hydroxy acid unit. The structures of the units were found by acid hydrolysis of the antibiotic to be 2(R)-hydroxy-3(R)-methylpentanoic acid, beta-hydroxy-N-methyl-L-valine, N-methyl-L-valine, L-proline, allo-L-isoleucine, N-methyl-L-phenylalanine, L-leucine, and L-phenyl-alanine. The sequence of the units was identified by NMR and FAB-MS of the products from the alkaline hydrolysis of aureobasidin A.
Explore the source record for details and available documents.
Prostaglandin D synthetase activity in the cytosol (100,000 x g, 1-h supernatant) fraction of peritoneal mast cells of adult rats (105.0 nmol/min/mg protein) was the highest among such activities in various rat tissues and cells. As judged by the absolute requirement for glutathione for the reaction (Km = 300 microM), the Km value for prostaglandin H2 (200 microM), and insensitivity of the activity to 1 mM 1-chloro-2,4-dinitrobenzene, the enzyme in mast cells was similar to rat spleen prostaglandin D synthetase and differed from rat brain prostaglandin D synthetase or glutathione S-transferase, all of which catalyze the isomerase reaction from prostaglandin H2 to prostaglandin D2. In immunotitration analyses, the activity in mast cells showed a titration curve exactly identical with that of the purified spleen-type enzyme and almost completely absorbed by an excess amount of antibody against this enzyme, but it remained unchanged after incubation with antibodies against the brain-type enzyme and glutathione S-transferase isozymes thus far purified. In Western blot after two-dimensional electrophoresis of crude extracts of mast cells, a single immunoreactive spot was observed with antibody against the spleen-type enzyme at the same position as that of the purified enzyme (Mr = 26,000, pI = 5.2). Furthermore, the immunoreactive protein obtained from mast cells showed the same peptide fingerprints as those of the purified spleen-type enzyme, after partial digestion with Staphylococcus aureus V8 protease or trypsin. In immunoperoxidase staining, the immunoreactivity of the spleen-type enzyme was found in the cytosol of tissue mast cells in various organs such as thymus, intestine, stomach, and skin of adult rats. These findings indicate that prostaglandin D2 is produced by the spleen-type synthetase in mast cells of various tissues.
Cyclopentenone prostaglandins (PGs) such as delta 12-PGJ2 and PGA are potent inducers of growth inhibition in a variety of cultured cells, including epidermal cells. These PGs are actively transported into cells by a specific carrier on cell membrane and accumulate in cell nuclei with binding to nuclear protein. To clarify the mechanism of cytotoxicity of these PGs in epidermal cells, we examined the effects of delta 12-PGJ2 on protein synthesis and cytoskeleton in the PAM 212 transformed mouse epidermal cell line. Cycloheximide at 1 microgram/ml culture medium exhibited a protective effect on cell growth inhibition of PAM 212 cells by delta 12-PGJ2. The analysis of cell lysate protein patterns by SDS-polyacrylamide gel electrophoresis revealed that 12-h incubation with delta 12-PGJ2 increased the amount of 70 kD protein in PAM 212 cells. The amount of 70 kD protein in delta 12-PGJ2-treated cells was markedly decreased by cotreatment with cycloheximide. This 70 kD protein was also induced in PAM 212 cells with treatment at 43 degrees C for 90 min, indicating that this synthesized protein belongs to the heat shock protein. The addition of delta 12-PGJ2 to confluent PAM 212 cells resulted in the disappearance of action filament, as visualized by fluorescent labeled phallacidine, but in contrast, keratin filament appeared to be intact during 12-h incubation with delta 12-PGJ2 at a concentration of 5 micrograms/ml culture medium. These results suggest that the cytotoxicity of cyclopentenone PGs is at least in part due to induction of the synthesis of some protein(s), probably one of the heat shock proteins, and the damage to the actin filament in transformed cultured epidermal cells.
The effect of ultraviolet (UV) radiation on arachidonic acid (AA) cascade was examined using an in vivo model. Mouse ear lobes were painted with 1 mg AA, and the maximum response of ear swelling was measured 1 h after challenge. Arachidonic-acid-induced ear swelling was significantly suppressed by preexposure to topical psoralen plus noninflammatory doses of long-wave UV radiation (PUVA) or middle-wave UV (UVB) radiation. Ultraviolet radiation may interfere with AA pathways to suppress ear swelling since AA-induced ear swelling is considered to be mediated by metabolites derived from exogenous AA. The results may relate to the therapeutic mechanisms of UV radiation in psoriasis in which the eicosanoid cascade is involved.
Explore the source record for details and available documents.
The cellular localization of glutathione-requiring PGD synthetase, which catalyzes the predominant formation of PGD2 in various peripheral tissues, was investigated in adult rats by immunoperoxidase-staining with a polyclonal antibody specific for this enzyme. Although the 25 N-terminal amino acid residues of synthetase are 56% identical and 76% similar to those of several rat glutathione S-transferase subunits, the antibody cross-reacted only with synthetase in dot blotting and was nearly completely inactive with all transferase isozymes thus far purified. In Western blotting after SDS-PAGE of crude extracts of rat spleen, the antibody showed a single positive band at the same position as that of the purified enzyme (Mr = 26,000). The positive immunocytochemical stain was found in a number of histiocytes and/or dendritic cells in spleen, thymus, and Peyer's patch of intestine. The immunostain was also observed in such cells in lamina propria of the villus in small intestine and colon, in submucosal layer of stomach, and in Kupffer cells in liver. Immunoelectron microscopy confirmed that immunoreactivity of this enzyme was distributed in cytoplasm of those cells. Such immunoreactive cells were not observed in brain, spinal cord, kidney, heart, testis, and skeletal muscle. These observations suggest that PGD2 is produced by glutathione-requiring PGD synthetase localized in these types of APC in various tissues and may play a critical role in dictating the progression of immune responses.
The effect of Tranilast [N-(3,4-dimethoxycinnamoyl) anthranilic acid] on the synthesis of prostaglandin D2 (PGD2) by homogenates of rat peritoneal mast cells was investigated. The major cyclooxygenase product formed by mast cell homogenates was PGD2, smaller quantities of PGE2 and PGF2 alpha were also formed. Tranilast suppressed the production of PGD2 in a dose-dependent manner with an IC50 of 0.1 mM. This suppression was due to inhibition of PGD synthetase, but not cyclooxygenase, since the formation of PGE2 and PGF2 alpha were unchanged at a 0.1 mM concentration. In addition, the glutathione-dependent conversion of [14C]PGH2 to PGD2 by PGD synthetase (PGH-D isomerase, EC 5.3.99.2) was inhibited by Tranilast, with 50% inhibition achieved at 0.08 mM in broken cell preparations of rat peritoneal mast cells. Tranilast also inhibited purified rat spleen and brain PGD synthetases. Furthermore, Tranilast prevented the PGD2 generation from intact mast cells stimulated by the calcium ionophore A23187. These results suggest that Tranilast exerts some of its therapeutic effects by prevention of PGD2 generation in mast cells and some other tissues.