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Biomedical subjects

M Sekiguchi

Publications and source records attributed to M Sekiguchi.

At least 145 records · Page 8Linked to original sources

Role of selectin-dependent adhesion in cardiac allograft rejection.

BACKGROUND: Selectins play important roles in the inflammatory responses by eliciting leukocyte rolling. The roles of E- and P-selectins in the acute rejection of cardiac allografts remain unclear. This study was designed to evaluate whether E- and P-selectins participate in the pathophysiology of heart rejection. METHODS: Heterotopic heart transplantation was performed in both mice and rats in full histoincompatibility combinations. Immunohistochemistry, flow-cytometry, and reverse transcriptase- polymerase chain reaction were performed to evaluate E-, P-selectin and sialyl Lewis X (SLeX) expression in rejecting cardiac allografts. The effects of short-term administration of monoclonal antibodies (mAbs) to E- and P-selectins on cardiac allograft survival were also evaluated. RESULTS: Significant prolongation of graft survival was observed in mice treated with either anti-E- or P-selectin mAbs, or both. The enhanced endothelial and mRNA expression of E- and P-selectins was observed in the rejecting cardiac allografts. Some graft- infiltrating mononuclear cells were double-stained with both anti-SLeX and anti-alphabetaT cell receptor mAbs. Flow-cytometric analysis of graft-infiltrating cells also showed enhanced SLeX expression. CONCLUSION: These results suggest that both P- and E-selectins are critically involved in the early development of acute heart rejection.

Animals↗

[A case of relapsed thymic carcinoma that responded remarkably to chemotherapy with CPT-11].

A chemotherapeutic protocol for advanced thymic carcinoma has not been established as yet. We described a case of advanced and relapsed thymic carcinoma that responded remarkably to subsequent chemotherapy with CPT-11. A 61-year-old man was admitted to our hospital because of facial edema and general fatigue. Chest X-ray and CT scan showed anterior mediastinal tumor which involved large vessels and pericardium. CT guided needle biopsy yielded a diagnosis of squamous cell type of thymic carcinoma. The patient was initially treated with ADOC (ADM, CDDP, VCR, CPA) chemotherapy and had successfully controlled for six months. However, the mediastinal tumor recurred and radiotherapy and nedaplatin plus ETP therapy were not effective. Then, CPT-11 chemotherapy (80 mg/m2, 2 weeks) was performed. The patient showed a partial response after two courses of CPT-11 chemotherapy. This case suggests that CPT-11 is a useful chemotherapeutic agent for advanced thymic carcinoma.

Antineoplastic Agents, Phytogenic↗

Pharmacokinetic characteristics of the novel anticancer agent CPT-11 and its active metabolite in plasma and lung lymph fluid following intravenous administration to sheep.

7-Ethyl-10-[4-(1-piperidino)-1-piperidino]-carbonyloxycamptothecin (CPT-11, 100286-90-6) is one of the most promising novel anticancer agents, especially for lung cancer. 7-Ethyl-10-hydroxycamptothecin (SN-38), an active metabolic of CPT-11, has much stronger cytotoxicity than CPT-11. The present study was designed to evaluate the distribution and behavior of CPT-11 and SN-38 in lung lymph circulation following intravenous infusion. Awake sheep with chronically instrumented lung lymph fistulas were prepared. The concentrations of CPT-11 and SN-38 in plasma and lung lymph fluid were measured after intravenous infusion of 100 mg/body of CPT-11 for 90 min. SN-38 constantly showed higher lymph to plasma concentration ratios than those of CPT-11, and the % area under the curve (AUC) ratio of SN-38/CPT-11 in lymph fluid was significantly higher than that in plasma. These data indicated that SN-38 distributed in lung tissue moved more easily into lung lymph fluid than CPT-11, and might be more rapidly metabolized in lung tissue than plasma. CPT-11 may have favorable therapeutic effects on intrathoracic malignancies such as lung cancer and lymph metastasis.

Animals↗

[Anesthesia for abdominal surgery after percutaneous transluminal coronary angioplasty (PTCA)].

From December 1989 to October 1996, 1,318 PTCAs (percutaneous transluminal coronaly angioplasty) were performed for AMI (acute myocardial infarction) or postinfarction angina in our institute. Within 7 days to 71 days after successful PTCA, five patients who had been diagnosed as cholelithiasis or gastric cancer were operated under general anesthesia. Performed operations were cholecystectomy in the first patient, subtotal gastrectomy in the second, third and fourth patients, and total gastrectomy and cholecystectomy in the fifth patient. There was no serious cardiac complication during the operations and perioperative period. PTCA is considered to have decreased cardiac complications in patients with ischemic heart disease having undergone abdominal surgery.

Abdomen↗

Eosinophil cationic protein levels in induced sputum correlate with the severity of bronchial asthma.

Activated eosinophils play an important role in the pathogenesis of bronchial asthma. In this study, we analyzed the inflammatory leukocyte population and the concentrations of eosinophil cationic protein (ECP) and albumin in induced sputum from patients with mild to severe asthma (n=36), and assessed the findings in relation to the severity of their asthma. Both the eosinophil numbers and the concentrations of ECP in the induced sputum were significantly increased in the patients with asthma compared with those in healthy subjects (n=9). There were significant positive correlations between the ECP levels and both the eosinophil counts (r=0.45) and the albumin concentrations (r=0.53). When the asthmatics were classified as having mild (n=12), moderate (n=14), or severe (n=10) asthma as evaluated by their symptoms and peak expiratory flow rate (PEFR), the ECP levels showed significant increases in accordance with the severity of asthma. The eosinophil counts in the patients with severe asthma were significantly higher than those in the patients with mild and moderate asthma; there was no significant difference between those with mild and moderate asthma. The eosinophil counts and ECP levels were also significantly positively correlated with the mean weekly total symptom scores (r=0.52 and r=0.48, respectively) and negatively with the mean percent PEFR on waking (r=-0.50 and r=-0.65, respectively) recorded for 2 weeks prior to the sputum collection. These findings suggest that the eosinophil activation in the airway is closely linked to the symptoms and airflow obstruction of asthma, and that the ECP concentration in induced sputum could serve as useful marker for evaluating the severity of asthma and monitoring airway inflammation to achieve the optimal control of asthma.

Adolescent↗

Comparison of exocytotic mechanisms between acetylcholine- and catecholamine-containing vesicles in rat pheochromocytoma cells.

The molecular mechanisms of exocytosis from two types of secretory organelles, synaptic-like microvesicles and secretory vesicles, were compared by measuring acetylcholine (ACh) and catecholamine (CA) release from a newly isolated PC12 subclone, PC12-C3 which contains a high level of Ach. Digitonin-permeabilized PC12-C3 cells released both transmitters with similar Ca(2+)-dependency. Ca(2+)-evoked Ach and CA release from permeabilized cells were increased in the presence of MgATP, suggesting the existence of a MgATP-dependent priming step prior to the Ca(2+)-triggered fusion step in both ACh release and CA release. The non-hydrolyzable analogue of GTP guanosine 5'-(gamma-thio)triphosphate (GTP gamma S), produced both ACh and CA release from permeabilized cells in the absence of Ca2+. Pretreatment with a phorbol ester which activates protein kinase C, potentiated depolarization-induced ACh and CA release from unpermeabilized cells. These results indicated that exocytosis from two distinct vesicle populations are mediated by the same basic molecular mechanisms.

Acetylcholine↗

Regulation by differential development of Th1 and Th2 cells in peripheral tolerance to cardiac allograft induced by blocking ICAM-1/LFA-1 adhesion.

BACKGROUND: Specific immune tolerance to cardiac allografts is induced by anti-ICAM-1 and anti-LFA-1 MAbs. Although the expression of the Th1 cytokines IL-2 and IFN-gamma is shown to increase in association with acute rejection, the roles of cytokines in the induction of peripheral tolerance by anti-ICAM-1 and anti-LFA-1 MAbs are not yet known. METHODS AND RESULTS: BALB/c hearts were transplanted into C3H/He mice. The MAbs to ICAM-1 and LFA-1 were injected for 3 days after transplantation in some recipients, and others were treated with FK506. IL-2 concentration in the supernatant of splenocytes from MAb-treated mice that were mix-cultured with donor splenocytes was lower than in normal controls. The expression of Th1 cytokines, detected by Northern blot assay, was enhanced in grafts or spleens of nontreated mice, whereas Th2 cytokines were expressed in the spleens of MAb-treated mice. No cytokine expression was enhanced in mice treated with FK506. Also, the induction of tolerance was prevented by the administration of rIL-2 in vivo in 5 of 7 mice, which were rendered tolerant. CONCLUSIONS: These data provide evidence that impairment of IL-2 production is critically involved in this tolerance induction and suggest that predominance of Th2 over Th1 cells is essential for tolerance induction by antiadhesion therapy.

Animals↗

Counteraction by MutT protein of transcriptional errors caused by oxidative damage.

Oxidized guanine (8-oxo-7,8-dihydroguanine; 8-oxo-G) is a potent mutagen because of its ambiguous pairing with cytosine and adenine. The Escherichia coli MutT protein specifically hydrolyzes both 8-oxo-deoxyguanosine triphosphate (8-oxo-dGTP) and 8-oxo-guanosine triphosphate (8-oxo-rGTP), which are otherwise incorporated in DNA and RNA opposite template A. In vivo, this cleaning of the nucleotide pools decreases both DNA replication and transcription errors. The effect of mutT mutation on transcription fidelity was shown to depend on oxidative metabolism. Such control of transcriptional fidelity by the ubiquitous MutT function has implications for evolution of RNA-based life, phenotypic expression, adaptive mutagenesis, and functional maintenance of nondividing cells.

Aerobiosis↗

A novel allosteric potentiator of AMPA receptors: 4--2-(phenylsulfonylamino)ethylthio--2,6-difluoro-phenoxyaceta mide.

We report that a novel sulfonylamino compound, 4-[2-(phenylsulfonylamino)ethylthio]-2,6-difluoro-phenoxyacetam ide (PEPA), selectively potentiates glutamate receptors of the AMPA subtype. PEPA (1-200 microM) dose dependently potentiated glutamate-evoked currents in Xenopus oocytes expressing AMPA (GluRA-GluRD), but not kainate (GluR6 and GluR6+KA2) or NMDA (zeta1 + epsilon1-epsilon4), receptor subunits. PEPA was effective at micromolar concentrations and, in contrast to the action of cyclothiazide, preferentially modulated AMPA receptor flop isoforms. At 200 microM, PEPA potentiated glutamate responses by 50-fold in oocytes expressing GluRCflop (EC50 approximately 50 microM) versus only threefold for GluRCflip; a similar preference for flop isoforms was observed for other AMPA receptor subunits. Dose-response analysis for GluRCflop revealed that 100 microM PEPA produced a sevenfold increase in AMPA receptor affinity for glutamate. PEPA produced considerably weaker potentiation of kainate-evoked than glutamate-evoked currents, suggesting modulation of the process of receptor desensitization. In human embryonic kidney 293 cells transfected with AMPA receptor subunits, PEPA either abolished or markedly slowed the rate of onset of desensitization and potentiated steady-state equilibrium currents evoked by glutamate with subunit (GluRC >/= GluRD > GluRA) and splice-variant (flop > flip) selectivity similar to that observed in oocytes. Our results show that PEPA is a novel, flop-preferring allosteric modulator of AMPA receptor desensitization at least 100 times more potent than aniracetam.

Animals↗

Regulation of expression of the human MTH1 gene encoding 8-oxo-dGTPase. Alternative splicing of transcription products.

The enzyme 8-oxo-7,8-dihydrodeoxyguanosine triphosphatase (8-oxo-dGTPase) hydrolyzes 8-oxo-dGTP to 8-oxo-dGMP, thereby preventing misincorporation of 8-oxo-dGTP into DNA. We investigated expression of MTH1 gene encoding 8-oxo-dGTPase. Large amounts of MTH1 mRNA were present in thymus and testis, embryonic tissues, and certain cell lines. In peripheral blood lymphocytes, the level of MTH1 mRNA was significantly increased after concomitant treatment with phytohemagglutinin and interleukin-2. Analyses of the 5' regions of the MTH1 transcripts revealed that 7 types of MTH1 mRNAs, which may be produced by transcription initiation at different sites and/or alternative splicing. The MTH1 gene consists of 5 major exons, some of which are composed of differentially processed segments. All types of MTH1 mRNAs carry the entire coding region, and may be functional. Three ATG initiation codons in-frame were found in the 5' regions of some of the MTH1 mRNAs. There is a polymorphic alteration at the 5' splicing site (GT to GC) located in exon 2, an event which affects splicing patterns of the MTH1 transcript. Allele frequency of this polymorphism is about 20% among healthy volunteers.

Alternative Splicing↗

Methylnitrosourea-induced tumorigenesis in MGMT gene knockout mice.

Gene targeting was used to obtain mice defective in the MGMT gene, encoding O6-methylguanine-DNA methyltransferase [Tsuzuki et al., Carcinogenesis (Lond.), 17: 1215-1220, 1996]. These MGMT-/- mice were most sensitive to the alkylating carcinogen, methylnitrosourea; when varied doses of methylnitrosourea were administered to 6-week-old mice and survivals at the 30th day were determined, LD50s of MGMT-/- and MGMT+/+ mice were 20 and 240 mg/kg of body weight, respectively. MGMT+/- mice were as resistant as MGMT+/+ mice, but some difference in survival time was noted when the two genotypes of mice were exposed to a relatively high dose of methylnitrosourea. A large number of thymic lymphomas, as well as lung adenomas, occurred in MGMT-/- mice exposed to methylnitrosourea at a dose of 2.5 mg/kg of body weight. In case of exposure to the same dose of drug, no or few tumors occurred in the MGMT+/+ and MGMT+/- mice. It appears that the DNA repair methyltransferase protein protected these mice from methylnitrosourea-induced tumorigenesis.

Animals↗

Significance of the conserved amino acid sequence for human MTH1 protein with antimutator activity.

8-Oxo-7,8-dihydro-2'-deoxyguanosine 5'-triphosphate (8-oxo-dGTP) is produced during normal cellular metabolism, and incorporation into DNA causes transversion mutation. Organisms possess an enzyme, 8-oxo-dGTPase, which catalyzes the hydrolysis of 8-oxo-dGTP to the corresponding nucleoside monophosphate, thereby preventing the occurrence of mutation. There are highly conserved amino acid sequences in prokaryotic and eukaryotic proteins containing this and related enzyme activities. To elucidate the significance of the conserved sequence, amino acid substitutions were introduced by site- directed mutagenesis of the cloned cDNA for human 8-oxo-dGTPase, and the activity and stability of mutant forms of the enzyme were examined. When lysine-38 was replaced by other amino acids, all of the mutants isolated carried the 8-oxo-dGTPase-negative phenotype. 8-Oxo-dGTPase-positive revertants, isolated from one of the negative mutants, carried the codon for lysine. Using the same procedure, the analysis was extended to other residues within the conserved sequence. At the glutamic acid-43, arginine-51 and glutamic acid-52 sites, all the positive revertants isolated carried codons for amino acids identical to those of the wild type protein. We propose that Lys-38, Glu-43, Arg-51 and Glu-52 residues in the conserved region are essential to exert 8-oxo-dGTPase activity.

Amino Acid Sequence↗

EM574, an erythromycin derivative, is a motilin receptor agonist in the rabbit.

This study was performed to examine whether an erythromycin derivative, de(N-methyl)-N-isopropyl-8,9-anhydroerythromycin A 6,9-hemiacetal (EM574) is a motilin receptor agonist in the rabbit gastrointestinal tract. EM574 and porcine motilin induced contractions in segments of isolated rabbit intestine with pEC50 values of 8.26 +/- 0.04 and 8.69 +/- 0.07, respectively, but not in rat or guinea pig preparations. The sensitivity and efficacy of the response to both compounds in rabbits decreased aborally and was insensitive to pretreatment with atropine or tetrodotoxin, but was markedly suppressed under Ca(2+)-free conditions. EM574 and porcine motilin specifically displaced [125I-Tyr23]canine motilin bound to gastric antral smooth muscle homogenates with plC50 values of 8.21 +/- 0.13 and 9.20 +/- 0.11, respectively. The pEC50 value for the contractile response and plC50 value for the receptor binding for motilin, EM574, erythromycin A and three other derivatives correlated well (r = 0.94, P < 0.01). Tissue section autoradiography in the antrum revealed that specific labeled motilin binding sites were localized in the circular muscle layer and myenteric plexus, and could be reduced in the presence of an excess of EM574. These results indicate that EM574 is a potent motilin receptor agonist in the rabbit gastrointestinal tract.

Animals↗

Dominant negative mutant of ionotropic glutamate receptor subunit GluR3: implications for the role of a cysteine residue for its channel activity and pharmacological properties.

We reported that a 33-amino-acid deletion (from tyrosine-715 to glycine-747) in a putative extracellular loop of GluR3 produced a mutant that exhibited dominant negative effects upon the functional expression of alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors [Sekiguchi et al. (1994) J. Biol. Chem. 269, 14559-14565]. In this study, we searched for a key residue in the dominant negative effects to explore the mechanism and examined the role of the residue in the function of the AMPA receptor. We prepared 20 GluR3 mutants with amino acid substitutions within the 33-amino-acid-region, and dominant negative effects were tested electrophysiologically in Xenopus oocytes co-expressing the mutant and normal subunits. Among the mutants, only a GluR3 mutant in which an original cysteine (Cys)-722 was replaced by alanine exhibited a dominant negative effect comparable with that of the original mutant in which the entire 33-amino-acid segment is deleted. The co-expression of the Cys-722 mutant did not inhibit the translation of normal subunits in oocytes. The Cys-722 mutant formed a functional homomeric receptor with significantly higher affinity for glutamate or kainate than a homomeric GluR3 receptor. The Cys-722 mutation greatly enhanced the sensitivity of GluR3 for aniracetam, which alters kinetic properties of AMPA receptors. The kainate-induced currents in oocytes expressing the Cys-722 mutant alone showed strong inward rectification. These results suggest that the Cys-722 in GluR3 is important for dominant negative effects and plays a crucial role in the determination of pharmacological properties in AMPA receptor function.

Amino Acid Sequence↗

Organization and expression of the mouse MTH1 gene for preventing transversion mutation.

An enzyme, 8-oxo-7,8-dihydrodeoxyguanosine triphosphatase (8-oxo-dGTPase), is present in various organisms and plays an important role in the control of spontaneous mutagenesis. The enzyme hydrolyzes 8-oxo-dGTP, an oxidized form of dGTP, to 8-oxo-dGMP, thereby preventing the occurrence of A:T to C:G transversion, caused by misincorporation. We isolated the mouse genomic sequence encoding the enzyme and elucidated its structure. The gene, named MTH1 for mutT homologue 1, is composed of at least five exons and spans approximately 9 kilobase pairs. A genomic region containing the pseudogene was also isolated. The promoter region for the gene is GC-rich, contains many AP-1 and AP-2 recognition sequences, and lacks a typical TATA box. Primer extension and S1 mapping analyses revealed the existence of multiple transcription initiation sites, among which a major site was defined as +1. The putative promoter region was placed upstream of the chloramphenicol acetyltransferase reporter gene, and control of expression of the gene was examined by introducing the construct into mouse NIH 3T3 cells. Deletion analysis indicated that a sequence from -321 to +9 carries the basic promoter activity while an adjacent region, spanning from +352 to +525 stimulates the frequency of transcription.

3T3 Cells↗

Expression of cell division cycle 2 kinase transcription in chronically rejected cardiac allografts of nonhuman primates.

Accurate diagnosis and prevention of graft arteriosclerosis, known as chronic rejection, is critical to the success of cardiac transplantation, but often is difficult to attain. Expression of cell division cycle (cdc) 2 kinase, which plays a critical role in cell transition through the G2/M phase, is critical to the proliferation of vascular smooth muscle cells. To evaluate the usefulness of cdc2 kinase expression for pathophysiological analysis of chronic rejection, heterotopic cardiac transplantation was performed in Japanese monkeys (n = 7). Standard reverse transcriptase-polymerase chain reaction (RT-PCR) and in situ RT-PCR were performed to evaluate the expression. In the coronary arteries of chronically rejected allografts, enhanced cdc2 kinase expression was observed in thickened intima and media, while none was expressed in native hearts. The cdc2 kinase was also expressed before the intimal thickening occurred. These results indicate that enhanced expression of cdc2 kinase is a sensitive indicator for chronic cardiac rejection; targeting cdc2 kinase may be a viable gene therapy for prevention of this vasculopathy.

Animals↗

Roles of DNA repair methyltransferase in mutagenesis and carcinogenesis.

Alkylation of DNA at the O6-position of guanine is one of the most critical events leading to induction of mutation as well as cancer. An enzyme, O6-methylguanine-DNA methyltransferase, is present in various organisms, from bacteria to human cells, and appears to be responsible for preventing the occurrence of such mutations. The enzyme transfers methyl groups from O6-methylguanine and other methylated moieties of the DNA to its own molecule, thereby repairing DNA lesions in a single-step reaction. To elucidate the role of methyltransferase in preventing cancer, animal models with altered levels of enzyme activity were generated. Transgenic mice carrying extra copies of the foreign methyltransferase gene showed a decreased susceptibility to alkylating carcinogens, with regard to tumor formation. By means of gene targeting, mouse lines defective in both alleles of the methyltransferase gene were established. Administration of methylnitrosourea to these gene-targeted mice led to early death while normal mice treated in the same manner showed no untoward effects. Numerous tumors were formed in the gene-defective mice exposed to a low dose of methylnitrosourea, while none or only few tumors were induced in the methyltransferase-proficient mice. It seems apparent that the DNA repair methyltransferase plays an important role in lowering a risk of occurrence of cancer in organisms.

Alkylating Agents↗

Regulation of mouse immuno-responses by a natural suppressor cell clone from bone marrow.

Natural suppressor (NS) activity is mediated by several kinds of cell lineages in bone marrow. We demonstrated that a NS cell, clone 7-31, was obtained after limiting dilution with bone marrow culture supplemented with WEHI supernatant. Clone 7-31, was capable of non-specific suppression of the generation of cytotoxic T lymphocytes without major histocompatibility complex restriction. Suppression of cytotoxic thymus-dependent lymphocyte (CTL) generation was also induced with a cell-free supernatant from the 7-31 cells. Interleukin-2 (IL-2) containing concanavallin-A-conditioned medium could not reverse the suppression. The supernatant did not inhibit the proliferation of IL-2-dependent CTLL-2 cells and rapidly growing tumour cells and fibroblasts. Thus, this bone marrow suppressor cell produces a soluble factor that inhibits the generation of CTL in vitro, and prolongs the acceptance of skin allografts in in vivo.

Animals↗