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Biomedical subjects

I Kudo

Publications and source records attributed to I Kudo.

At least 127 records · Page 7Linked to original sources

Group II phospholipase A2 inhibitors suppressed lysophosphatidylserine-dependent degranulation of rat peritoneal mast cells.

Rat peritoneal mast cells were sensitized with IgE and challenged with the specific antigen in the presence of lysophosphatidylserine (lysoPS), an essential co-factor for rodent connective tissue mast cell degranulation, and the effects of phospholipase A2 inhibitors were examined. Mepacrine, a known inhibitor of phospholipase A2, at concentrations below 10(-5) M and anti-rat 14-kDa group II phospholipase A2 antibody inhibited histamine release, while they did not affect the prostaglandin generation. Like histamine release, prostaglandin generation in IgE- and antigen- challenged rat peritoneal mast cells was dependent on the presence of lysoPS. These results indicate that 14-kDa group II phospholipase A2 may play an essential role in IgE-, antigen-, and lysoPS-dependent degranulation process of rat peritoneal mast cells and that the mechanism whereby it participates may not be due to the production of lysoPS from PS in mast cell membranes.

Animals↗

Eicosanoid generation from antigen-primed mast cells by extracellular mammalian 14-kDa group II phospholipase A2.

The extracellular form of 14-kDa group II phospholipase A2 has been found to accumulate at various types of inflammatory sites. In the present paper, we have studied the possible role of the extracellular 14-kDa group II phospholipase A2 in the process of prostaglandin production in activated rat mast cells. When mast cells obtained from the peritoneal cavity of rats were sensitized with IgE, challenged with antigen and then exposed to extracellular 14-kDa group II phospholipase A2, appreciable release of prostaglandin D2 was observed. Generation of prostaglandin D2 was dependent on the concentration of the phospholipase A2 as well as that of the antigen, while no appreciable prostaglandin D2 generation was observed with cells in the absence of the antigen. No histamine release was observed under the same conditions. Phosphatidylcholine in mast cell membranes was appreciably hydrolyzed to liberate free arachidonic acid when mast cells were incubated with 14-kDa group II phospholipase A2 added exogenously in the presence of the antigen. Both the generation of prostaglandin D2 and the release of arachidonic acid were retarded by inhibitors specific to 14-kDa group II phospholipase A2. Thus, 14-kDa group II phospholipase A2 may function in the process of inflammation by acting on IgE-antigen-primed mast cells, which are not fully activated, to generate eicosanoids.

Animals↗

Detection of 14-kDa group II phospholipase A2 in human seminal plasma.

About 90% of phospholipase A2 activity detected in human seminal plasma reacted with monoclonal antibodies raised against human synovial fluid phospholipase A2. The crude seminal plasma yielded a pure immuno-cross-reactive phospholipase A2 preparation in a single purification step using immuno-affinity chromatography. The amino acid sequence of the N-terminal 20 residues of this seminal enzyme was determined and found to be identical with that of human synovial phospholipase A2. Thus, it is suggested that human seminal plasma contains phospholipase A2, belonging to the 14-kDa group II enzyme family, as the major isoenzyme.

Amino Acid Sequence↗

Phospholipid composition of rat megakaryocytes and its rearrangement in platelets.

Rat platelets and their megakaryocyte precursors were examined for phospholipid composition. (1) The phospholipid composition of rat megakaryocytes, which were enriched and prepared from bone marrow cells, was almost identical to that of platelets. (2) The subclass composition of choline-containing glycerophospholipids (CGP) of rat megakaryocytes differed significantly from that of platelets: 1-alkenyl-2-acyl glycerophosphocholine (GPC) in megakaryocytes accounted for 29% of the total, whereas that in platelets was only 7%. (3) Rat platelets contained a larger amount of arachidonic acid than megakaryocytes, especially in ethanolamine-containing glycerophospholipids (EGP). (4) [32P]Phosphoric acid was significantly incorporated into megakaryocytes, whereas platelets showed little incorporation. On the other hand, the uptake of [3H]arachidonic acid into platelet phospholipids was about 15-times higher than that observed with megakaryocytes. (5) As reported previously for other blood cells, such as neutrophils and macrophages, the radioactivity of labeled arachidonic acid incorporated into CGP of platelets decreased, whereas that incorporated into EGP increased during a subsequent chase period. Hardly any such change was observed with megakaryocytes. These results suggest that the phospholipid composition of rat platelets is mainly determined at the time of thrombopoiesis, whereas the composition of molecular species is remodeled during circulation after thrombopoiesis.

Animals↗

Purification and characterization of human platelet phospholipase A2 which preferentially hydrolyzes an arachidonoyl residue.

A phospholipase A2 with an arachidonoyl residue preference was purified about 11,700-fold from human platelet soluble fraction to near homogeneity. The purified phospholipase A2 exhibited a molecular mass of about 90 kDa on SDS polyacrylamide gel electrophoresis and hydrolyzed phospholipids with an arachidonoyl residue more effectively than those with a linoleoyl residue. The catalytic activity of the purified enzyme detected with phosphatidylcholine as a substrate increased sharply between 3 x 10(-7) and 10(-6) M free calcium ion. Thus, the 90-kDa phospholipase A2 is considered to be a novel enzyme, distinct from the 14-kDa one previously purified from human platelets. The 90-kDa phospholipase A2 may participate mainly in arachidonate metabolism of platelets.

Arachidonic Acid↗

Purification and characterization of rabbit platelet cytosolic phospholipase A2.

A phospholipase A2 was purified from rabbit platelet cytosolic fraction to near homogeneity by sequential column chromatographies on heparin-Sepharose, DEAE-Sephacel, butyl-Toyopearl, DEAE-5PW ion-exchange HPLC, and TSK gel G3000SW gel-filtration HPLC. The final preparation with an estimated specific activity of 8630 nmol/min per mg protein, showed a single band with a molecular mass of about 88 kDa by sodium dodecyl sulfate-polyacrylamide gel electrophoresis followed by silver staining. The 88-kDa phospholipase A2 exhibited a fatty acid preference; it hydrolyzed phospholipid bearing an arachidonoyl residue at the sn-2 position more effectively than that with a linoleoyl residue. The catalytic activity of the purified enzyme with phosphatidylcholine or phosphatidylethanolamine increased sharply in the presence of between 10(-7) and 10(-6) M calcium ion, indicating that it could be regulated by less than micromolar concentration of calcium. These characteristics differ from those of platelet secretory 14-kDa phospholipase A2 reported previously. Therefore, this 88-kDa enzyme is a novel phospholipase A2 and may participate in the stimulus-dependent release of arachidonoyl residues in rabbit platelets.

Animals↗

Extracellular phospholipase A2 detected at inflamed sites in rats does not originate from platelets.

Extracellular phospholipase A2 activity has been detected in caseinate-induced peritoneal fluid in rats. We studied the source of this extracellular phospholipase A2 in 'platelet-poor' rats which had been pretreated with an intravenous injection of rabbit anti-rat platelet serum. In these rats, the increase in the peritoneal fluid extracellular phospholipase A2 level at the inflamed sites was almost identical to that observed in control rats, although platelet numbers in peripheral blood were decreased markedly. This observation suggests that extracellular phospholipase A2 in the peritoneal cavity is not derived mainly from platelets.

Animals↗

Guinea pig bone marrow cells treated with platelet-activating factor generate factor(s) which affects their DNA synthesis and microbicidal activity.

We have previously reported that platelet-activating factor (PAF) induces proliferation and microbicidal activity of guinea pig bone marrow cells. In the present study, we have found that the conditioned medium of PAF- or nonmetabolizable PAF agonist-treated guinea pig bone marrow cells augmented DNA synthesis and induced microbicial activity of bone marrow cells. A PAF specific antagonist, CV-6209, inhibited generation of the active conditioned medium by PAF. Addition of the PAF antagonist only partially suppressed the augmentative effect of the active conditioned medium on DNA synthesis; this is consistent with the fact that, because of the rapid breakdown, no appreciable amount of PAF remained in the conditioned medium of PAF-treated cells. Although mouse bone marrow cells did not respond to PAF unlike guinea pig cells, their DNA synthesis was significantly enhanced by the conditioned medium of PAF-treated guinea pig bone marrow cells. Thus, some newly generated factor(s) distinct from the originally inoculated PAF seemed to modulate the bioactions of PAF on bone marrow cells. An appreciable amount of PAF was produced by calcium ionophore-treated guinea pig bone marrow cells. These findings indicate that PAF synthesized in guinea pig bone marrow cells induces generation in the cells of some factor(s) which affects proliferation or microbicidal activity.

Animals↗

Biological response of guinea pig peritoneal macrophages to platelet-activating factor.

We investigated the effects of platelet-activating factor (PAF) on guinea pig peritoneal macrophages. Specific and high-affinity binding sites for PAF were detected on guinea pig peritoneal macrophages. Scatchard analysis of PAF binding revealed high affinity binding sites (7.9 x 10(4)/cell) with a dissociation constant of 2.3 x 10(-10) M. When treated with 10(-9)-10(-5) M PAF, guinea pig peritoneal macrophages released hydrogen peroxide into the medium in a time-dependent manner. The release reaction upon stimulation with 10(-5) M PAF reached a plateau within 30 min and the extent of release was twice as high as that when stimulated by N-formyl-L-methionyl-leucyl-L-phenylalanine (fMLP; 2 microM)-treated cells. Neither lysoPAF nor the PAF enantiomer was effective. PAF-induced H2O2 release was inhibited specifically by PAF antagonists, suggesting that PAF activated macrophages through binding to specific sites. Lysosomal enzyme (N-acetyl-beta-D-glucosaminidase) was released from guinea pig peritoneal macrophages upon treatment with 10(-5) M PAF for 60 min. Guinea pig peritoneal macrophages were treated with PAF for 8 hr and the conditioned medium was examined for cytokines. The medium exhibited cytocidal activity against mouse fibroblast L929 cells [tumor necrosis factor (TNF) activity], and this activity was comparable to that detected after treatment of cells with the bacterial lipopolysaccharide (LPS). Furthermore, the same conditioned medium also showed colony-stimulating factor (CSF) activity. Generation of these cytokines was stereospecific. Our findings suggest that PAF is a unique macrophage activator that potentiates both respiratory burst/lysosomal enzyme release (early-phase response) and monokine production/glucose consumption (late-phase response).

Animals↗

Detection of Epstein-Barr virus and human herpes virus type 6 in saliva from patients with lymphoproliferative diseases by the polymerase chain reaction.

Direct detection of these viruses was made by using the PCR for amplifying viral DNA. In virtually all adults low levels of the herpesvirus can be detected. Therefore it is necessary to quantitate the amount of viral DNA, and a method to compare the plasmid containing the cloned target gene was used here. After 35 cycles of amplification, 10 copies of the viral DNA per 100 microliters saliva were detected. The PCR was used to detect increased levels of EBV and HHV-6 in saliva from patients with lymphoproliferative diseases, suggesting that these viruses may play a part in their pathogenesis. Viral detection by such highly sensitive methods as PCR may allow better monitoring of medication, as well as early detection of EBV- and HHV-6 related diseases that may arise in these patients. The great sensitivity of PCR and its ability to analyse very small samples make this technique most suitable for clinical diagnosis.

Adult↗

Detection and characterization of extracellular phospholipase A2 in pleural effusion of patients with tuberculosis.

Extracellular phospholipase A2 activity has been identified in pleural fluid of patients with tuberculosis. This enzyme is a calcium requiring protein and has a pH optimum of 10.0. The enzyme was inhibited by the active site-directed histidine reagent, rho-bromophenacyl bromide. Ionic and non-ionic detergents, or the sulfhydryl reagent dithiothreitol, caused loss of enzyme activity. When substrate specificity was tested using 2-[1-14C]linoleoyl phospholipids as substrates, phosphatidyl-ethanolamine was the best substrate, followed by phosphatidylserine and phosphatidylcholine. This phospholipase A2 showed high affinity for heparin, and was recognized by a monoclonal antibody raised against phospholipase A2 from human synovial fluid. These findings suggest that an extracellular phospholipase A2, which may belong to the 14K group II phospholipase A2 family, exists in the pleural fluid of patients with tuberculosis.

Acetophenones↗

Augmentation of prostaglandin E2 production by mammalian phospholipase A2 added exogenously.

Rat group II phospholipase A2 added exogenously to A23187-activated HL-60 granulocytes augmented their production of prostaglandin E2. Human group II phospholipase A2 and porcine group I phospholipase A2 augmented the prostaglandin E2 production in a similar manner. No significant increase in prostaglandin E2 production was observed when cells were treated with purified phospholipase A2 in the absence of A23187. Extracellular phospholipase A2 at inflamed sites may contribute to the generation of pro-inflammatory lipid mediators by hydrolyzing the cellular phospholipids of activated inflammatory cells.

Animals↗

Suppression of ethanolamine-containing glycerophospholipid synthesis in HL-60 cells during retinoic acid-induced differentiation.

Synthesis and degradation of glycerophospholipids in HL-60 cells and retinoic acid (RA)-treated HL-60 cells were examined. The synthesis of each subclass of ethanolamine-containing glycerophospholipids was extremely suppressed in RA-treated HL-60 cells, while that of other glycerophospholipids was not seriously affected. A pulse-chase experiment revealed that about 88% of 1,2-diacyl and 28% of 1-alkenyl-2-acyl glycerophosphoethanolamine were degraded during 4 days in RA-treated HL-60 cells. These characteristics of metabolism observed in RA-treated HL-60 cells might be responsible for the change of subclass composition of ethanolamine-containing glycerophospholipids in HL-60 cells during differentiation to granulocytes.

Cell Differentiation↗

Change in sensitivity to lysophosphatidylserine of mouse bone marrow-derived mast cells during cultivation with fibroblasts.

Lysophosphatidylserine (lysoPS) is known to enhance IgE-mediated activation of rodent connective tissue mast cells (CTMCs). In the present study, we investigated the effect of lysoPS on degranulation of interleukin-3-dependent mouse bone marrow-derived mucosal mast cells (BMMCs) and of their CTMC-like differentiated cells. In the absence of lysoPS, BMMCs released approximately 20% of their histamine when sensitized with anti-dinitrophenyl (DNP) IgE and challenged with DNP-conjugated antigen. When stimulated in the presence of lysoPS, no appreciable enhancement was observed. On the other hand, histamine release from BMMCs, which had differentiated to CTMC-like cells by co-culture with 3T3 fibroblasts, was enhanced 2- to 3-fold by the addition of lysoPS. The maximum potentiation was observed at 5 x 10(-6) M lysoPS. These results suggest that mast cells might acquire their dependence on exogenous lysoPS during differentiation from mucosal mast cells to CTMC-like cells.

3T3 Cells↗

[Mammalian cellular phospholipases A2 and their physiological roles].

Phospholipase A2 hydrolyzes the ester linkage at sn-2 of glycerophospholipids and is thought to function as a key enzyme in generation of variety of bioactive mediators, such as prostaglandins and platelet-activating factor. In the present review, recent studies on two kinds of cellular phospholipases A2, 14 kDa group II phospholipase A2 and arachidonate-preferentially hydrolyzing phospholipase A2, will be summarized.

Amino Acid Sequence↗