Regulation and signal transduction of PAF receptor.
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Biomedical subjects
Publications and source records attributed to K Kume.
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We found that the expression of human platelet-activating factor receptor (PAFR) gene is differentially regulated by estrogen and TGF-beta 1. Primer extension analysis revealed that the levels of the PAFR transcript 2 were increased by estrogen, but decreased by TGF-beta 1 in the human stomach cancer cell line (JR-St cells) which expressed both functional endogenous PAFR transcript 1 (leukocyte-type) and transcript 2 (tissue-type). Both ligands did not affect the expression of intrinsic PAFR transcript 1. Furthermore, the response elements to estrogen and TGF-beta 1 in the PAFR promoter 2 were delineated by a transient expression assay using the chloramphenicol acetyltransferase (CAT) gene as a reporter in this cell line. A negative response element for TGF-beta 1 was mapped on the sequence from -90 bp to -81 bp, which has consensus sequence for TIE (TGF-beta 1 inhibitory element). Although consensus estrogen response element (AGGTCAnnnTGACCT) is not present in this promoter, the entire sequence comprising two AGGTCA half motifs spaced by 153 bp (from -257 bp to -93 bp) conferred weak but significant estrogen responsiveness. Thus, through these elements in the PAFR promoter 2, estrogen and TGF-beta 1 may regulate the PAFR gene to achieve a tissue-specific expression.
Platelet-activating factor and somatostatin receptors, two G protein-coupled receptors expressed in the rat hippocampus, were analyzed for the downstream signaling pathways in Chinese hamster ovary cells stably expressing each receptor. Ligand stimulation to each CHO cell line induced (1) inhibition of forskolin-induced accumulation of cAMP, (2) arachidonate release, and (3) activation of mitogen-activated protein kinase and MAP kinase kinase. In contrast, inositol phosphate breakdown was seen only in the PAF-stimulated CHO cells. The induction of these signals accompanied no detectable Ras activation. Suppression of the signals by pertussis toxin was almost complete for the somatostatin receptor but partial for the PAF receptor, suggesting that the somatostatin receptor couples only with PTX-sensitive G protein, while the PAF receptor couples with both PTX-sensitive and -insensitive G proteins. A model of G protein-mediated signaling pathways was proposed in which the signals from Gi and those from Gq converge at MAP kinase kinase and lead to arachidonate release. The present system using CHO cells is useful for analyzing signaling pathways from G proteins to MAP kinase kinase and will thereby provide clues for understanding the mechanisms underlying the physiological and pathological events mediated by PAF, somatostatin, and other G protein-coupled receptors in the central nervous system and other tissues.
The effects of Bordetella bronchiseptica dermonecrotic toxin (DNT) on the in vivo antibody response of mice were investigated. Intravenous injection of DNT at doses of 0.5 and 2.0 ng resulted in a significant suppression of the antibody response both to sheep red blood cells and to Escherichia coli lipopolysaccharide as measured by plaque-forming cell and hemagglutination assays. Spleen weights of mice given the same doses of DNT were significantly reduced, while the weights of thymuses and mesenteric lymph nodes were not. Numbers of Thy-1,2+ T lymphocytes, L3T4+ T lymphocytes, Lyt-2+ T lymphocytes and surface-immunoglobulin-positive lymphocytes decreased in spleens of the DNT-treated mice. Since the ratio of each lymphocyte population to the total number of splenic lymphocytes was not significantly different between the DNT-treated and non-treated mice, it is unlikely that DNT has a cytotoxic activity or a mitogen activity to some specific population of lymphocytes. Thus, we considered that the immunosuppression was attributable to a dysfunction of the spleen atrophied by the DNT.
Five hundred ninety-two patients with early gastric cancer underwent surgical resection from 1970 to 1986 in our hospital, and 13 died from a recurrence of their disease. A careful analysis of these 13 patients suggests that carcinomas which invaded to the submucosa tend to recur more often than those confined to the mucosa. Well differentiated and papillary adenocarcinomas characterized by protruded or elevated lesions tend to recur earlier than poorly differentiated or signet-ring cell carcinomas characterized by depressed or excavated lesions. However, both types recurred from hematogenous metastases, with the liver being the most common site. Therefore, the macroscopic and histological features presently used to characterize early gastric cancer do not provide sufficient information to accurately predict which patients are at most risk for recurrence.
A total of 115 strains of Escherichia coli isolated from chickens with colisepticemia in Japan were examined for chicken lethality and virulence factors. It was found that serum resistance and aerobactin-mediated iron uptake are the most prevalent characteristics in these strains. Among them, S-20, a representative virulent strain of serotype O2, was further studied. S-20 harbored a conjugative 100-megadalton (Mdal) plasmid, designated pKI100. Curing and reintroduction experiments showed that pKI100 encodes both serum resistance and aerobactin-mediated iron uptake, and the diminished virulence of the pKI100-cured strain was fully restored by the reintroduction of the plasmid. These results demonstrated that pKI100 is the virulence plasmid of the S-20 strain, and that serum resistance and aerobactin-mediated iron uptake are the virulence factors in E. coli strains which cause avian colibacillosis.
Two monoclonal antibodies (MAbs), lMAb-1 and lMAb-5, against Actinobacillus pleuropneumoniae serotype 1 were obtained. In enzyme-linked immunosorbent assay-inhibition tests with whole cell antigens obtained from serotype 1 to 12 strains of A. pleuropneumoniae, lMAb-1 reacted to only a serotype 1, strain 4074. The epitope recognized by lMAb-1 was a carbohydrate sensitive to periodate oxidation and resided on capsular polysaccharide (CP) of A. pleuropneumoniae serotype 1. On the other hand, lMAb-5 reacted with serotype 1, 9 and 11 strains at the same degree and its epitope was found to be located on O-polysaccharide of serotype 1, 9 or 11 lipopolysaccharide (LPS). These results showed that CP was one of the serotype-specific antigens of A. pleuropneumoniae, and that O-polysaccharide of LPS obtained from serotype 1, 9 or 11 strain was the cross-reacting antigen among these strains.
Two monoclonal antibodies against Actinobacillus pleuropneumoniae serotype 5, designated as 5MAb-1 and 5MAb-6, were characterized. Enzyme-linked immunosorbent assay-inhibition tests with whole-cell antigens obtained from strains of serotype 1 through 12 of A pleuropneumoniae revealed that 5 MAb-1 bound to only serotype-5 strains. The epitope recognized by 5MAb-1 was a carbohydrate that was sensitive to periodate oxidation and resided on the structure of beta-1,6-linked D-galactose in an O-antigen polysaccharide of serotype-5 lipopolysaccharide. Analysis of these results revealed that the O-antigen polysaccharide of lipopolysaccharide was 1 of the antigenic determinants responsible for the serotype specificity of A pleuropneumoniae. On the other hand, 5MAb-6 reacted with strains of serotype 1 through 10 in varying degrees and its epitope was located on polypeptides sensitive to proteinase K. In an immunoblotting analysis, 5MAb-6 reacted with 2 polypeptide bands, with molecular weights of approximately 41,500 and 28,000, in the outer membrane protein-rich fraction obtained from strains of serotype 1 through 10. These results indicated that outer membrane proteins from several serotype strains of A pleuropneumoniae possessed common antigenic determinants.
Upon neoplastic transformation, cells acquire the ability to grow in soft agar. We investigated how this occurs by cell cycle analysis of a rat cell line NRK-49F and its transformation-deficient mutants. Rapidly growing NRK and mutants arrest in G1 when deprived of anchorage by suspending in methylcellulose. Addition of epidermal growth factor (EGF) together with transforming growth factor-beta (TGF-beta), which is highly oncogenic to NRK, induces the rapid progression of G1-arrested NRK cells into S phase. The time course and the extent of synchronization are very similar to the cell cycle progression in the presence of anchorage. EGF alone, which is highly mitogenic but only slightly oncogenic, fails to induce such progression. Both mutants remain arrested in G1. These data indicate that oncogenic signals confer on NRK the ability to enter S phase in the absence of anchorage and that this is the principal mechanism for its ability to grow in soft agar.
The polysaccharide structure recognized by a monoclonal antibody specific to serotype 2 lipopolysaccharide of Actinobacillus pleuropneumoniae was investigated using an enzyme-linked immunosorbent assay inhibition test. Lipopolysaccharide obtained from serotype 2, strain SH-15, was hydrolysed with acetic acid to liberate the polysaccharide portion, and the polysaccharide mixture was fractionated by gel filtration. The longer polysaccharide, composed of O-antigenic polysaccharide and core, fully inhibited the binding of monoclonal antibodies to a whole cell antigen of strain SH-15, whereas the core oligosaccharide without O-polysaccharide did not. No inhibition was observed with the monosaccharides which were the components of serotype 2 LPS. Enzyme-linked immunosorbent assay inhibition ability of O-polysaccharide was completely lost only by O-deacetylation. These results demonstrate that the epitope of the serotype-specific monoclonal antibody resided in O-polysaccharide of LPS and that the O-acetyl group was essential for the epitope structure.
The effects of Bordetella bronchiseptica dermonecrotic toxin on the structure and function of a clonal osteoblastic cell line, MC3T3-E1, were investigated. The toxin induced a morphological change in the cells from a spindle shape to a spherical form with many blebs. The toxin-treated cells were viable and grew to form confluent cell layers composed of irregularly shaped cells and multinuclear cells. The toxin inhibited elevation of alkaline phosphatase activity in the cells in a dose-dependent manner at concentrations from 10 pg to 10 ng/ml. The accumulation of type I collagen in the cells was also reduced by the toxin. Since high alkaline phosphatase activity and accumulation of collagen are closely linked to differentiation of the cells into osteoblasts, it is considered likely that B. bronchiseptica dermonecrotic toxin impairs the ability of the cells to differentiate.
A patient with acute myelomegakaryocytic leukemia (AMMgL), which developed from myelodysplastic syndrome (MDS) after chemotherapy against complicated small cell lung cancer, is reported. The patient was a 66 year-old male, who first presented with moderate macrocytic anemia. Bone marrow aspiration showed absolute erythroid hypoplasia and morphological abnormalities were found in erythroid, granuloid and megakaryocytic lineage cells. Iron utilization studies using radioisotope showed ineffective hematopoiesis. He was diagnosed as having MDS (refractory anemia) and treated with prednisolone, fluoxymesterone, and transfusions. After 3 years, small cell lung cancer was found, but he achieved complete remission with chemotherapy. Since then, pancytopenia progressed with myelofibrosis. Abnormal blasts were found in peripheral blood and gradually increased. He finally died from a blastic crisis resulting in gastric bleeding. The blasts were peroxidase negative, platelet peroxidase positive (10%), and glycoprotein II b/III a antibody positive, indicating megakaryoblasts.
We describe a highly efficient alkali cation method and library transducing vectors for cloning mammalian cDNAs by trans-complementation of fission yeast Schizosaccharomyces pombe mutants. cDNA libraries constructed with the pcD or pcD2 vector are transduced into yeast by cotransfection with a linearized vector, which allows an enhanced homologous recombination between the yeast vector and the library plasmid leading to the efficient formation of concatemers containing pcD molecules. The transformation frequencies obtained by the method are 10(6) colonies per 10(8) cells transfected with 2 micrograms of library and 1 microgram of vector, 50-60% of which contain pcD molecules. The high-efficiency alkali cation method circumvents many of the shortcomings of the spheroplast method generally used for Schiz. pombe transfection. The vectors are maximized for the efficiency of library transduction and minimized for the rearrangements of pcD molecules during propagation in yeast. This system allows rapid screening of multi-million cDNA clone libraries for rare cDNAs in a routine scale of experiments. Using this system, various mammalian cDNAs that are extremely difficult, time-consuming, or unclonable to clone by other methods have been cloned.
We studied the clinical significance of genomic amplification of N-myc in Stage IV-S neuroblastoma, with reference to spontaneous regression. Among 103 neuroblastomas in which N-myc was measured, ten were Stage IV-S (eight children were younger than and two were older than 1 year of age). The number of copies of N-myc was 1 to 3 in five patients, four to ten in one patient, and more than ten in four patients, and the survivors of each group were four, one, and one (recurrent), respectively. Of 41 patients younger than 1 year of age, N-myc amplification of more than three copies was found only in Stage IV-S neuroblastoma. Cure with a tendency to regress spontaneously was seen in five of eight patients younger than 1 year of age. However, two patients older than 1 year of age classified as Stage IV-S (one with N-myc amplification) died of progressive disease. In two patients (1 and 3 months of age) with a huge hepatic involvement and in whom the tumor had an amplified N-myc of more than ten copies, tumor regression occurred but there was a relapse to a progressive state later. The overexpression of N-myc mRNA occurred in nine of ten stage IV-S tumors and did not correlate with the prognosis. The vanillylmandelic acid (VMA) to homovanillic acid (HVA) ratio was low in tumors with an increased number of copies of N-myc. Serum lactate dehydrogenase (LDH) levels were increased in Stage IV-S patients with N-myc amplification but not in those with regressing tumors and without N-myc amplification. These data suggest that N-myc amplification may affect the final outcome in the patient classified as Stage IV-S, but tumor regression can occur early after birth and appears to be independent of N-myc amplification.
Bordetella bronchiseptica dermonecrotic toxin was purified by a simplified method. The method consisted of SP Toyopearl 650M chromatography and high performance liquid chromatography on a TSK gel G3000SW column. 47.5% of the activity of the crude cell extract was recovered. The purified toxin behaved as a homogeneous protein in sodium dodecyl sulfate polyacrylamide gel electrophoresis, high performance liquid chromatography, and agar gel double diffusion tests.
One hundred and fifty one Escherichia coli strains were isolated from broiler chickens with coli-septicemia in Aichi (63 strains), Shizuoka (58 strains), and Kagoshima (30 strains) prefectures from 1980 to 1987, and their O and pilus antigens were serologically typed. One hundred and twenty five strains (82.8%) were typed into 23 O serogroups, and twenty six strains (17.2%) remained untypable. The predominant O serogroups were O2 (35 strains, 23.2%) and O78 (24 strains, 15.9%). Distribution of O serogroup was different, depending on prefectures where they are isolated. In total, 109 strains (72.2%) possessed Type 1 and/or Fmsha pili (Type 1; 41 strains, Fmsha; 22 strains, and Type 1 and Fmsha; 46 strains), and 42 strains (27.2%) were non-piliated. All the strains lacked K88, K99, 987P, F41, and Att25 pili. The ratios of piliated strains to non-piliated ones were almost the same among the three prefectures. Strains possessing Type 1 pili showed variety of O antigens, but most of the strains with Fmsha pili belonged to O2 serogroup.
Four hybridoma cell lines producing monoclonal antibodies (MAbs) against Actinobacillus (Haemophilus) pleuropneumoniae were established by fusion of mouse myeloma and spleen cells obtained from mice immunized with a serotype 2, strain SH-15. Enzyme-linked immunosorbent assay-inhibition tests with antigens obtained from 12 serotype strains of A. pleuropneumoniae and 9 other gram-negative bacteria showed that all the MAbs bound to only serotype 2 strains of A. pleuropneumoniae. The epitopes recognized by the MAbs were located on a carbohydrate moiety of lipopolysaccharide (LPS) of the organism, which was sensitive to periodate oxidation. In immunoblotting analyses of LPS obtained from A. pleuropneumoniae serotype 2, all the four MAbs reacted specifically with the characteristic ladder bands of LPS detected by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. These results suggest that O-antigen side chains of the LPS are one of the antigenic determinants responsible for the serotype-specificity of A. pleuropneumoniae.
Drug resistance plasmids were detected in two drug resistant strains of Actinobacillus (Haemophilus) pleuropneumoniae serotype 2 isolated in Japan. One strain, Hpn25, was resistant to ampicillin, kanamycin, streptomycin and sulfonamides, and harbored two plasmids with a molecular size of 3.7 and 4.1 kilobases (kb). The other strain, Hpn18, which was resistant to streptomycin, tetracycline, and chloramphenicol, harbored three plasmids with a molecular size of 2.2, 12, and 35 kb. The resistance of Hpn 25 to streptomycin and sulfonamides is mediated by a 4.1 kb plasmid and that of Hpn 18 to streptomycin and chloramphenicol by one or more of the 2.2, 12, and 35 kb plasmids.