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Biomedical subjects

H Arita

Publications and source records attributed to H Arita.

At least 19 recordsLinked to original sources

Effect of pancreatic type phospholipase A2 on isolated porcine cerebral arteries via its specific binding sites.

The addition of porcine pancreatic group I phospholipase A2 (PLA2-I) produced a transient contraction followed by a relaxation in helical strips of porcine cerebral arteries. Its ED50 value (2.3 nM) was almost identical to the Kd value (3.9 nM) calculated from the specific binding of 125I-labeled porcine PLA2-I in cultured porcine cerebral arterial smooth muscle cells. Type-specific action of PLA2s and homologous desensitization strongly implicated the involvement of PLA2-I-specific sites in the response. The transient contraction was abolished by treatment with indomethacin as well as by the removal of endothelium, indicating the dependence of vasoconstrictor prostaglandins synthesized by PLA2-I in endothelium. The PLA2-I-induced relaxation response was also observed in bovine and cat cerebral arteries, thus providing a new aspect of PLA2-I as a vasoactive substance.

Animals

Purification and characterization of a high-affinity binding protein for pancreatic-type phospholipase A2.

A high-affinity and specific binding site for mammalian group I phospholipase A2 (PLA2-I) was found on the membranes of bovine corpus luteum. Affinity labeling experiments revealed that PLA2-I binds to a single polypeptide with a mass of 190-200 kDa. The PLA2-I binding protein in the membranes was solubilized in an active form with n-octyl beta-D-thioglucoside, and then purified approx. 16,000-fold. The purification procedures consisted of diethylaminoethyl-Sephacel chromatography, PLA2-I-affinity gel chromatography and gel-filtration high-performance liquid chromatography on a TSKgel G3,000SWXL column. The final preparation migrated as a single molecular species of 190 kDa on sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE), and identification of the 190 kDa protein as the PLA2-I binding protein was demonstrated by ligand blotting analysis. The purified protein possessed a binding capacity with high affinity and specificity for a mammalian mature type of PLA2-I. Treatment of the purified material with N-glycosidase F resulted in increased mobility of the protein on SDS-PAGE as well as considerable abolition of the PLA2-I binding activity, thus suggesting the requirement of the carbohydrate moiety of the PLA2-I binding protein for receptor-ligand interactions.

Animals

Proliferative effect of phospholipase A2 in rat chondrocyte via its specific binding sites.

We studied the presence of specific binding sites for pancreatic-type group I phospholipase A2 (PLA2-I), EC 3.1.1.4, and a PLA2-I action on the DNA synthesis of rat chondrocytes. Rat chondrocytes, derived from the xiphisternum of adult rats, had a single class of PLA2-I binding site with an equilibrium binding constant value of 0.9 nM and a maximum binding capacity of 53.9 fmol/10(6) cells. PLA2-I alone did not show any proliferative effect, however, PLA2-I dose-dependently stimulated thymidine incorporation in DNA in the presence of basic fibroblast growth factor (bFGF). The mammalian mature type of PLA2s-I specifically recognized the binding sites in these cells and had a synergistic effect on DNA synthesis with bFGF, whereas its inactive zymogen and group II PLA2 showed much lesser activities. The type-specific action of PLA2s implicated the involvement of PLA2-I specific binding sites in this activation process.

Animals

Contraction of guinea pig lung parenchyma by pancreatic type phospholipase A2 via its specific binding site.

Porcine pancreatic group I phospholipase A2 (PLA2-I) induced contraction of guinea pig parenchyma in a concentration-dependent manner. Its EC50 value was similar to the Kd value calculated from the specific binding of 125I-labeled porcine PLA2-I in the membrane fraction of guinea pig lung. Type-specific action of PLA2's and homologous desensitization strongly implicated the involvement of PLA2-I-specific sites in the activation process. Thromboxane A2 was found to be the main product from lung tissue by PLA2-I action and the contractile response by PLA2-I was specifically suppressed by thromboxane A2 receptor antagonists and cyclooxygenase inhibitor, but not by leukotriene receptor antagonist and H1 blocker. These findings indicate that PLA2-I-induced contractile response may depend on the secondarily produced thromboxane A2, thus providing a new aspect of PLA2-I from the pathophysiological standpoint.

Animals

Migration of vascular smooth muscle cells by phospholipase A2 via specific binding sites.

Pancreatic-type group I phospholipase A2 (PLA2-I), EC 3.1.1.4, long thought to act as a digestive enzyme, has a specific binding site in several types of tissues and cells and these sites promote PLA2-I-stimulated DNA synthesis. In this study we report a PLA2-I action on the migration of rat embryonic thoracic aorta smooth muscle cells (A7r5). A7r5 cells had a single class of PLA2-I binding site with an equilibrium binding constant (Kd) value of 1.7 nM and a maximum binding capacity (Bmax) of 40,000 sites/cell. The migration activity of PLA2-I for A7r5 cells was examined using modified Boyden chambers. PLA2-I stimulated the migration dose-dependently, and the ED50 value was about 1 nM, which was almost the same as the Kd value for PLA2-I binding. Checkerboard analysis showed that the response of A7r5 cells to PLA2-I was chemokinetic, but not chemotactic. These findings reveal a new aspect of PLA2-I in the modulation of vascular function.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid

Characterization of a high affinity binding site for pancreatic-type phospholipase A2 in the rat. Its cellular and tissue distribution.

We showed in an earlier study (Arita, H., Hanasaki, K., Nakano, T., Oka, S., Teraoka, H., and Matsumoto, K. (1991) J. Biol. Chem. 266, 19139-19141) that there is a high affinity and specific binding site for mammalian group I phospholipase A2 (PLA2-I) in Swiss 3T3 fibroblast cells. Analysis of the cellular distribution in rat using 125I-PLA2-I as a radioligand indicated the presence of this site in various cells, including vascular smooth muscle cells (VSMC), vascular endothelial cells, synovial cells, chondrocytes, and gastric mucosal cells. Scatchard analysis of rat VSMC revealed the existence of a single class of binding site with a Kd value of 1.60 nM and a Bmax value of 51.0 fmol/10(6) cells. The mammalian mature type of PLA2s-I derived from several animal species specifically recognized the same site in cells and stimulated DNA synthesis, whereas its inactive zymogen, mammalian group II PLA2s, and snake and bee venom PLA2s showed much lesser activities. 125I-PLA2-I bound to VSMC was rapidly internalized and subsequently released from the cells as trichloroacetic acid-soluble radioactivity. Down-regulation of the PLA2-I site was observed in the treatment of VSMC with cAMP-elevating agents, as well as glucocorticoids. Affinity labeling experiments indicated that PLA2-I binds to a single polypeptide with a mass of approximately 200,000 daltons. These results suggest a novel PLA2-I action on the cellular function via its specific binding site.

Animals

DNA synthesis and intracellular calcium elevation in porcine cerebral arterial smooth muscle cells by cerebrospinal fluid from patients with subarachnoid haemorrhage.

To understand the molecular mechanism of the pathogenesis of cerebral vasospasm following subarachnoid haemorrhage, we analysed the effect of cerebrospinal fluid from patients with subarachnoid haemorrhage on DNA synthesis and cytosolic-free calcium elevation in cultured porcine cerebral smooth muscle cells. Cerebrospinal fluid from patients on day 2 after subarachnoid haemorrhage induced transient elevation in cytosolic-free calcium levels. In contrast, the maximal elevation of cytosolic-free calcium levels induced by cerebrospinal fluid from control patients (without subarachnoid haemorrhage) was significantly lower than that induced by cerebrospinal fluid from patients with subarachnoid haemorrhage. In cultured porcine cerebral arterial smooth muscle cells, cerebrospinal fluid from patients with subarachnoid haemorrhage promoted levels of [3H]-thymidine incorporation (DNA synthesis) more than 2.5-fold higher than that promoted by cerebrospinal fluid from control patients without subarachnoid haemorrhage. However, in cultured aortic smooth muscle cells, there was no significant difference in [3H]-thymidine incorporation between cerebrospinal fluid from patients with subarachnoid haemorrhage and that by control cerebrospinal fluid. From these results in cerebral arterial smooth muscle cells, cerebrospinal fluid from patients following subarachnoid haemorrhage may play not only constrictive functions, evidenced by cytosolic-free calcium elevations, but also proliferative functions, demonstrated by promotion of [3H]-thymidine incorporation. The relevance of these factors to vasospasm will be discussed.

Animals

Disorganization of microfilaments is accompanied by downregulation of alpha-smooth muscle actin isoform mRNA level in cultured vascular smooth muscle cells.

In the previous report, we demonstrated that cAMP negatively regulated alpha-smooth muscle actin mRNA levels through destabilization of the mRNA [O. Ohara et al. (1991) J. Biochem. 109, 834-839]. We here report that the decline in the alpha-smooth muscle actin mRNA levels was well correlated with disorganization of microfilaments but not necessarily with the rise in intracellular cAMP levels in rat cultured vascular smooth muscle cells. The decrease in the alpha-smooth muscle actin mRNA induced by microfilament-disorganizing agents also resulted from enhancement of the turnover rate of the mRNA. These results raise the possibility that the post-transcriptional control of the alpha-smooth muscle actin expression is linked to the organization of actin filaments in smooth muscle cells.

Actin Cytoskeleton

Novel proliferative effect of phospholipase A2 in Swiss 3T3 cells via specific binding site.

Phospholipase A2 (PLA2), EC 3.1.1.4, which catalyzes the release of free fatty acids from the sn-2 position of glycerophospholipids, has been extensively studied from the viewpoint of eicosanoid production (Arita, H., Nakano, T., and Hanasaki, K. (1989) Prog. Lipid Res. 28, 273-301). Several lines of evidence suggest that extracellular PLA2 is pathophysiologically related to some disorders, including inflammation and hypersensitivity. Despite this, little is known of the precise mechanism of the pathological processes as well as their intrinsic correlation with dysfunction. Here, we report a novel PLA2 action on the proliferation of Swiss 3T3 fibroblasts via specific binding sites of approximately Mr 200,000. Pancreatic type PLA2 in the active form specifically recognized the sites and stimulated thymidine incorporation in DNA. Its inactive zymogen and other PLA2s from platelets, snake, and bee venoms showed much lesser activities. Although the physiological significance remains to be identified, our finding is the first to offer a new viewpoint on the effect of mammalian extracellular PLA2 on cellular function.

3T3 Cells

Inflammatory factors stimulate expression of group II phospholipase A2 in rat cultured astrocytes. Two distinct pathways of the gene expression.

Inflammatory factors such as tumor necrosis factor (TNF), interleukin 1 (IL-1), and lipopolysaccharide (LPS) greatly enhance the expression of group II phospholipase A2 (PLA2-II) mRNA, leading to increased secretion of PLA2-II enzyme from rat-cultured astrocytes. The potent antiinflammatory agent dexamethasone suppressed the PLA2-II expression induced by LPS. In vivo studies also demonstrated that the level of PLA2-II mRNA in the brain increased with intravenous injection of LPS. These results suggest that PLA2-II in the brain plays important roles in the inflammatory response. Agents which increase intracellular cAMP concentration did not stimulate PLA2-II expression by themselves but selectively enhanced TNF-induced PLA2-II expression about 5-fold. Phorbol ester, a well known protein kinase C activator, increased the PLA2-II expression. H-7, a protein kinase C inhibitor, inhibited the LPS-induced PLA2-II expression, but did not inhibit the TNF-induced one. Therefore, we conclude that the TNF-activated pathway differs from the LPS-activated one: the former is enhanced by cAMP and the latter involves protein kinase C.

Animals

Synergistic effect of thromboxane A2 and N-formylmethionylleucylphenylalanine on platelet-activating factor synthesis in human polymorphonuclear neutrophils.

The effects of thromboxane A2 (TXA2) on the synthesis of platelet-activating factor (PAF) and leukotriene B4 (LTB4) were studied using human polymorphonuclear neutrophils (PMN). Scatchard analysis for binding experiments using [3H]S-145, a specific TXA2/prostaglandin H2 (PGH2) receptor antagonist, revealed the existence of a single class of binding sites (Kd = 83.0 +/- 2.8 nM, Bmax = 113.0 +/- 3.1 fmol/2.10(6) cells) in human PMN. Upon stimulation with a combination of U46619, a TXA2 mimetic agonist, and N-formylmethionylleucylphenylalanine (FMLP, 1 microM), the synthesis of PAF was detected, although this was not significantly enhanced by U46619 or FMLP alone. The maximal production of PAF as well as the maximal activity of acetyl-CoA acetyltransferase was observed at approx. 20 min after addition of both stimuli. The effects of U46619 plus FMLP on PAF synthesis showed dose dependence to different concentrations of U46619 (0.1-10 microM), and were completely inhibited by S-145. Contrarily, no significant amounts of LTB4 were detected by radioimmunoassay during the stimulation with U46619 and FMLP. These results suggest that TXA2 and FMLP synergistically activate human PMN to induce PAF synthesis and this effect of TXA2 is mediated through its specific receptor.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5

Intracellular localization of group II phospholipase A2 in rat vascular smooth muscle cells and its possible relationship to eicosanoid formation.

We investigated the localization of group II phospholipase A2 (PLA2-II) in rat vascular smooth muscle cells (VSMCs) by applying immunofluorescence and immunoelectron microscopy with its polyclonal antibody. In unstimulated cells, no immunolabelling was detected in the cells. On the other hand, in the cells stimulated with tumor necrosis factor (TNF) and/or forskolin (FK), intense fluorescence was detected in the cytoplasm. The immunoperoxidase reactions were detected in the cisternae of rough endoplasmic reticulum (rER), trans-cisternae of Golgi apparatus, and small vesicles beneath the plasma membrane. Western blot analysis showed VSMCs secrete PLA2-II after stimulation. Secreted PLA2-II was associated with the plasma membrane and extracellular matrix. Colchicine inhibited PLA2-II synthesis and its secretion to the extracellular space. These observations indicate that in VSMCs PLA2-II is synthesized at rER. transported to Golgi apparatus, discharged into extracellular space via the small vesicles, and microtubules may concern with its process. Furthermore, in VSMCs treated with TNF or TNF + FK, prostaglandin E2 formation was also increased. Actinomycin D and cycloheximide inhibited the potentiation of the prostaglandin E2 formation induced by TNF or TNF + FK, indicating that both RNA and protein synthesis are required for the potentiation. These results suggest an involvement of PLA2-II in the prostaglandin formation.

Animals

Endothelin-induced intracellular Ca2+ mobilization through its specific receptors in murine peritoneal macrophages.

We studied the presence of specific binding sites for endothelin (ET) and the effect of ET on cytosolic free Ca2+ concentration ([Ca2+]i) in murine thioglycolate-activated peritoneal macrophages. Scatchard analysis for binding experiments using [125I]ET-1 or [125I]ET-3 revealed the existence of a single class of binding sites. The binding parameters (Kd and Bmax) for [125I]ET-1 were almost identical to those for [125I]ET-3. In addition, unlabeled 3 ET isopeptides (ET-1, ET-2 and ET-3) inhibited the specific binding of both ET-1 and ET-3 with similar inhibitory potencies. All 3 ET isopeptides caused an increase in [Ca2+]i in the same dose-dependent manner (0.01-100 nM). These results demonstrate the existence of an ET receptor with the same affinity for all isoforms that mediates the ET-induced intracellular Ca2+ mobilization in murine peritoneal macrophages.

Animals

Macrophage-activating factor extracted from mycoplasmas.

Mycoplasmas (M. gallisepticum, chicken mycoplasmas), in concert with interferon gamma (IFN gamma), were effective in activating macrophages (M theta) to be tumoricidal. The M theta-activating capacity of mycoplasmas was maintained after treatment with heat. 0.1 M NaOH, 1 M HCl, or trypsin. M theta-activating factor was extracted from mycoplasmas with chloroform/methanol and water (Mf-B). Mf-B was also effective in activating M theta in the presence of IFN gamma. The threshold dose of Mf-B for M theta of ordinary C3H/He mice and that for those of C3H/HeJ mice, the latter being known to be low responders to bacterial lipopolysaccharide, were actually the same. This seems to indicate that the effectiveness of Mf-B was not attributable to possibly contaminating lipopolysaccharides, and that the pathway of activity of Mf-B is different from that of lipopolysaccharides. Since the M theta-activating principle was only a very small part of Mf-B, we have not yet succeeded in identifying it, but there was no evidence that it was protein, nucleic acid, sugar, or lipid. The cytotoxicity of M theta activated by Mf-B plus IFN gamma was dependent on L-arginine in the culture, suggesting that arginine metabolites are involved in M theta cytotoxicity. Mf-B induced a small amount of tumor necrosis factor in M theta, and this induction was markedly enhanced by IFN gamma.

Animals

cAMP negatively regulates mRNA levels of actin and tropomyosin in rat cultured vascular smooth muscle cells.

The isoform expression patterns of actin and actin-binding proteins have been reported to be good markers for phenotypic modulation of rat vascular smooth muscle cells. In order to elucidate the regulatory mechanism of actin and tropomyosin isoform expression on a molecular basis, we examined the effects of various agents on the isoform expression patterns of actin and tropomyosin at the mRNA level in smooth muscle cells. We found that cAMP-elevating agents induced drastic decreases in the amounts of alpha-smooth muscle type actin and alpha-tropomyosin transcripts, the expression of other actin and tropomyosin isoforms being also repressed, but to a lesser extent. The results of the experiment involving RNA synthesis inhibitors strongly suggest that activation of some mRNA-specific degradation machinery by cAMP might be responsible at least for the rapid disappearance of alpha-smooth muscle type actin and alpha-tropomyosin transcripts in smooth muscle cells.

1-Methyl-3-isobutylxanthine

Kinetic studies on stereospecific recognition by the thromboxane A2/prostaglandin H2 receptor of the antagonist, S-145.

1. The mechanism for the stereospecific recognition of the antagonist S-145 by the thromboxane A2 (TXA2)/prostaglandin H2 (PGH2) receptor was examined by ligand-binding techniques in rat vascular smooth muscle cells (VSMCs) and in human platelet membranes. 2. Scatchard analysis revealed the existence of a single class of binding sites with the same maximum number for both [3H]-(+)-S-145 and [3H]-(-)-S-145 in both cell types. The dissociation constants (Kd) for the binding of the (+)-isomer in rat VSMCs and human platelet membranes were, respectively, 0.40 +/- 0.03 and 0.20 +/- 0.02 nM, each value being lower than that for the (-)-isomer (3.57 +/- 0.74 and 2.87 +/- 0.08 nM, respectively). 3. The rank orders of potency (Ki) for a series of TXA2/PGH2 ligands at inhibiting [3H]-(+)-S-145 binding were highly correlated with those determined for [3H]-(-)-S-145 binding in both cell preparations. 4. Kinetic analysis of the binding of both radioligands revealed a much lower dissociation rate constant (k-1) and a slightly greater association rate constant (k1) for the (+)-isomer compared to those for the (-)-isomer. 5. These results suggest that it is at the stage of dissociation from the TXA2/PGH2 receptor that the stereochemistry of the optical isomers of S-145 confers their difference in affinity for these receptors in rat VSMCs and human platelet membranes.

Animals

Opposing effects of 5-hydroxytryptamine on two types of medullary inspiratory neurons with distinct firing patterns.

1. Activity of inspiratory neurons was recorded extracellularly from the caudal portion of the nucleus ambiguous (0-3.5 mm rostral to the obex) in decerebrated, spontaneously breathing cats. Using a micropressure ejection method, we tested the responsiveness of the inspiratory neurons to direct applications of serotonin (5-HT) and noradrenaline (NA) in comparison with applications of glutamate and control artificial cerebrospinal fluid (ACSF) by means of a multibarreled micropipette. 2. We made detailed examinations of 52 inspiratory neurons that were excited by glutamate but did not react to control ACSF. Those inspiratory neurons were further classified into two subgroups based on the differences in firing patterns: inspiratory neurons with an augmenting firing pattern ["augmenting I units" (22/52)] and inspiratory neurons with a decrementing firing pattern ["decrementing I units" (30/52)]. 3. Although application of NA produced predominantly inhibitory effects on both the decrementing (22/30) and augmenting I units (20/22), application of 5-HT resulted in distinct or opposing effects on these two types of inspiratory neurons: the decrementing I units (25/30, 83%) were excited by 5-HT, whereas the augmenting I units (17/22, 77%) were inhibited by 5-HT. 4. The excitation of the decrementing I units with 5-HT was characterized by a long onset-latency of response and a prolonged recovery process. The increase in firing rate occurred not only during the inspiratory active phase but also during the expiratory phase.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals