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H Kamiya

Publications and source records attributed to H Kamiya.

At least 109 records · Page 6Linked to original sources

High-resolution structure of the conger eel galectin, congerin I, in lactose-liganded and ligand-free forms: emergence of a new structure class by accelerated evolution.

BACKGROUND: Congerin I is a member of the galectin (animal beta-galactoside-binding lectin) family and is found in the skin mucus of conger eel. The galectin family proteins perform a variety of biological activities. Because of its histological localization and activity against marine bacteria and starfish embryos, congerin I is thought to take part in the eels' biological defense system against parasites. RESULTS: The crystal structure of congerin I has been determined in both lactose-liganded and ligand-free forms to 1. 5 A and 1.6 A resolution, respectively. The protein is a homodimer of 15 kDa subunits. Congerin I has a beta-sheet topology that is markedly different from those of known relatives. One of the beta-strands is exchanged between two identical subunits. This strand swap might increase the dimer stability. Of the known galectin complexes, congerin I forms the most extensive interaction with lactose molecules. Most of these interactions are substituted by similar interactions with water molecules, including a pi-electron hydrogen bond, in the ligand-free form. This observation indicates an increased affinity of congerin I for the ligand. CONCLUSIONS: The genes for congerin I and an isoform, congerin II, are known to have evolved under positive selection pressure. The strand swap and the modification in the carbohydrate-binding site might enhance the cross-linking activity, and should be the most apparent consequence of positive selection. The protein has been adapted to functioning in skin mucus that is in direct contact with surrounding environments by an enhancement in cross-linking activity. The structure of congerin I demonstrates the emergence of a new structure class by accelerated evolution under selection pressure.

Amino Acid Sequence↗

Dual mechanism for presynaptic modulation by axonal metabotropic glutamate receptor at the mouse mossy fibre-CA3 synapse.

1. To investigate mechanisms responsible for the presynaptic inhibitory action mediated by the axonal group II metabotropic glutamate receptor (mGluR) at the mossy fibre-CA3 synapse, we used a quantitative fluorescence measurement of presynaptic Ca2+ in mouse hippocampal slices. 2. Bath application of the group II mGluR-specific agonist (2S,1'R,2'R,3'R)-2-(2, 3-dicarboxycyclopropyl)glycine (DCG-IV, 1 microM) reversibly suppressed the presynaptic Ca2+ influx (to 55.2 +/- 4.6 % of control, n = 5) as well as field EPSPs recorded simultaneously (to 3.1 +/- 2.0%). Presynaptic fibre volley was not affected by 1 microM DCG-IV. 3. A quantitative analysis of the inhibition of presynaptic Ca2+ influx and field EPSP suggested that DCG-IV suppressed the field EPSP to a greater extent than would be expected if the suppression were solely due to a decrease in the presynaptic Ca2+ influx. 4. DCG-IV at 1 microM suppressed the mean frequency (to 73.8 +/- 3.9% of control, n = 11), but not the mean amplitude (to 97.0 +/- 3.5%), of miniature EPSCs recorded from CA3 neurones using the whole-cell patch-clamp technique. 5. These results suggest that group II mGluR-mediated suppression is due both to a reduction of presynaptic Ca2+ influx and downregulation of the subsequent exocytotic machinery.

Algorithms↗

The oxidized forms of dATP are substrates for the human MutT homologue, the hMTH1 protein.

The possibility that Escherichia coli MutT and human MTH1 (hMTH1) hydrolyze oxidized DNA precursors other than 8-hydroxy-dGTP (8-OH-dGTP) was investigated. We report here that hMTH1 hydrolyzed 2-hydroxy-dATP (2-OH-dATP) and 8-hydroxy-dATP (8-OH-dATP), oxidized forms of dATP, but not (R)-8,5'-cyclo-dATP, 5-hydroxy-dCTP, and 5-formyl-dUTP. The kinetic parameters indicated that 2-OH-dATP was hydrolyzed more efficiently and with higher affinity than 8-OH-dGTP. 8-OH-dATP was hydrolyzed as efficiently as 8-OH-dGTP. The preferential hydrolysis of 2-OH-dATP over 8-OH-dGTP was observed at all of the pH values tested (pH 7.2 to pH 8.8). In particular, a 5-fold difference in the hydrolysis efficiencies for 2-OH-dATP over 8-OH-dGTP was found at pH 7.2. However, E. coli MutT had no hydrolysis activity for either 2-OH-dATP or 8-OH-dATP. Thus, E. coli MutT is an imperfect counterpart for hMTH1. Furthermore, we found that 2-hydroxy-dADP and 8-hydroxy-dGDP competitively inhibited both the 2-OH-dATP hydrolase and 8-OH-dGTP hydrolase activities of hMTH1. The inhibitory effects of 2-hydroxy-dADP were 3-fold stronger than those of 8-hydroxy-dGDP. These results suggest that the three damaged nucleotides share the same recognition site of hMTH1 and that it is a more important sanitization enzyme than expected thus far.

Bacterial Proteins↗

Roles of nitric oxide in the spinal cord in cardiovascular regulation in rats.

The roles of nitric oxide (NO) in the spinal cord in regulation of blood pressure were examined in anesthetized rats. Intrathecal (i.t.) injection of an inhibitor of NO synthase (NOS), N(omega)-nitro-L-arginine methylester (L-NAME), caused marked dose-dependent increase in the blood pressure. The pressor response to L-NAME was attenuated by pretreatment with L-arginine (10 micromol, i.t.). Pretreatment with the ganglionic blocker pentolinium (10 mg/kg, i.v.) and alpha1- and beta-adrenoceptor antagonists significantly inhibited the pressor response induced by L-NAME. The pressor responses to L-NAME was blocked by pretreatment with the selective N-methyl-D-aspartate (NMDA) receptor antagonist DL-2-amino-5-phosphonovaleric acid (AP-5) (50 nmol, i.t.), but not by pretreatment with a non-NMDA receptor antagonist, 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX). In addition, the pressor response to L-NAME was reduced by spinal cord transection. These results suggest that L-NAME causes activation of the sympathetic nervous system by reduction of NO in the spinal cord, and that this reduction of NO by L-NAME may activate glutamatergic neurons in the medulla oblongata.

Animals↗

Expression of interleukin-2 receptor alpha and CD45RO antigen on T lymphocytes cultured with rubella virus antigen, compared with humoral immunity in rubella vaccinees.

We studied the expression of interleukin-2 receptor alpha (CD25)+ CD45RO+ CD4+ T lymphocytes (T-cell activation) in response to the rubella virus (RV) antigen (Matsuura strain, Biken, Osaka, Japan) using three-color-staining flow cytometry. The subjects were 48 healthy children (3-14 years old, 31 boys and 17 girls), who had received either monovalent vaccine (n = 5; mean age, 13.2 years) or measles-mumps-rubella (MMR) vaccine (n = 21; mean age, 10.5 years), had been naturally infected (n = 5; mean age, 11.4 years), or had been neither vaccinated nor naturally infected (n = 17; mean age, 10.0 years) and 62 healthy adolescents and adults (15-37 years old; 19 males and 43 females), who had received monovalent vaccine (n = 26, mean age, 27.4 years), had been naturally infected (n = 8; mean age, 24.0 years), or had been neither vaccinated nor naturally infected (n = 8; mean age, 16.5 years). Ninety-four of 110 subjects had HI titers > or = 1:16. T-cell activation in these subjects was significantly higher than that in 6 seronegative (HI titers < 1:8) subjects (p < 0.05). T-cell activation did not differ significantly with the history of exposure to RV. HI antibody titers > or = 1:16 and T-cell activation persisted in vaccinated subjects for > or = 20 years and was similar to those in naturally infected subjects. Our results suggest that cell-mediated immunity and humoral immunity persist for at least 20 years after vaccination.

Adolescent↗

Expression of interleukin-2 (IL-2) receptor alpha and CD45RO antigen on T-lymphocytes cultured with measles virus antigens, compared with humoral immunity in measles vaccinees.

In response to two types of measles virus (MV) antigens, a vaccine strain CAM and a wild strain isolated in 1994, the expression of IL-2 receptor alpha (CD25)(+)CD45RO(+)CD4(+) T-lymphocytes (T-cell activation) was analyzed by flow cytometry. In 75 healthy subjects with measles hemagglutination inhibition tests > or =1:16, the percentage of T-cell activation was significantly increased compared with that in seronegative individuals (p) < 0.05). Moreover, the T-cell expression was not significantly different among the vaccinated (n = 38), the naturally infected (n = 28) and the subclinically infected (exposed with wild type without history of measles infection and HI titers > or =1:16) (n = 10) groups. T-cell activation stimulated with MV antigens and HI antibody titers persisted for almost 30 years in the vaccinated group. These results suggest that cell-mediated immunity persists for long periods after vaccination and does not be influenced by antigenic drift.

Adolescent↗

Functional and structural characterization of multiple galectins from the skin mucus of conger eel, Conger myriaster.

The complete amino acid sequence of an isogalectin, named congerin II, isolated from the skin mucus of conger eel, was determined by sequencing of the protein and its peptides generated by enzymatic and chemical cleavages. Congerin II consisted of 135 amino acids residues containing an acetylated N-terminus. Congerin II was found to be only 46% homologous in sequence to congerin I which was previously determined (Muramoto K., Kamiya H., Biochem. Biophys. Acta, 1992;1116:129-136), suggesting that the galectins with diverse molecular properties are present in the skin mucus of conger eel. However, it was confirmed by analysis of the secondary structures using circular dichroism that both congerins I and II shared similar folds characterized by beta structures. Congerins I and II showed different molecular properties such as thermostability, pH dependency for hemagglutinating activity and for binding specificity against the pyridylamino derivative of lactose. Congerin I showed more strict recognition specificity for lactose than did congerin II. Furthermore, the effects of chemical modification on congerins I and II were investigated in order to identify the type of amino acids involved in their different lectin activities. Modification of tyrosine and lysine residues did not affect the carbohydrate-binding activities of congerins. However, modification of tryptophan, arginine, histidine, glutamic acid and aspartic acid residues led to considerable loss of their activities, and a different mode of binding activity was observed between modified congerins I and II. These results suggest that multiple galectins from conger eel with the same scaffold have different biological functions and properties.

Amino Acid Sequence↗

Immunological background in children with persistent diarrhea in Ghana.

BACKGROUND: Persistent diarrheal diseases have become one of the most serious medical problems in developing countries, but few studies have been conducted to determine the risk factors. In the present study, we investigated the nutritional and immunological background in children with persistent diarrhea in comparison with those with acute diarrhea. METHODS: Children with diarrhea who were brought to the Oral Rehydration Salt Clinic of Princess Marie Louise Children's Hospital in Accra were evaluated from an immunological and nutritional aspect. In the follow-up visit, the cases whose diarrhea stopped within 2 weeks after onset were classified into the acute diarrhea group; those with diarrhea lasting more than 2 weeks were classed in the persistent group. Nutritional and immunological data at the initial visit were compared between these two groups. RESULTS: In general, the diarrhea cases had a tendency to undernutrition and impaired cellular immunity compared with healthy control. Persistent cases had lower values for longer half-life, rapid turn-over proteins. Persistent cases had a higher percentage of CD8+ cells and lower CD4/CD8 ratio. CD25 expression in CD4+ cells stimulated by anti-CD3 antibody was lower in the persistent diarrhea group. CONCLUSION: These results appear to support the hypothesis that more severe nutritional status and impairment of cellular immunity is related to the persistence of diarrhea.

CD4-CD8 Ratio↗

Update on varicella vaccine.

A live varicella vaccine has been licensed in Japan, Korea, some European countries, and the United States. Susceptible children can receive varicella vaccine at 12 to 18 months of age, and those who lack a reliable history of chickenpox should be immunized between 11 and 12 years of age. Susceptible children 13 years of age or older should receive two doses at least 1 month apart. Varicella vaccine administered under routine conditions has been proved to be highly effective. Varicella immunization has induced long-term humoral and cellular immunity. The varicella vaccine can be given in immunocompromized children, including children with leukemia and bone marrow transplantation recipients, when immune function recovers. Inactivated varicella vaccine can also reduce morbidity due to varicella zoster virus reactivation in high-risk populations.

Adolescent↗

Mechanisms of eosinophil cationic protein release in the serum: role of adhesion molecules.

BACKGROUND: Measurement of eosinophil cationic protein (ECP) in serum has been utilized as a marker for allergic inflammation. The serum level of ECP represents the level found in vivo plus additional proteins released in vitro from peripheral blood eosinophils during the coagulation period. The mechanisms of release, however, are unclear. We investigated a possible involvement of adhesion molecules in the ECP release. MATERIALS AND METHODS: Venous blood was drawn in the presence of EDTA from allergic donors. The blood was incubated with neutralizing monoclonal antibodies to CD18, CD11a, CD11b, CD29, CD49d, CD54, alpha4beta7, or isotype-matched control antibodies, respectively, at 4 degrees C for 30 min. Calcium gluconate (calcium) was then added to induce coagulation. The blood was further incubated for 90 min and centrifuged to obtain the serum. ECP in the serum was measured with RIA. In some experiments, purified eosinophils were incubated with plasma and calcium, then ECP in the supernatants was assayed. RESULTS: ECP in the samples with calcium was significantly higher than in those without calcium. Purified eosinophils released ECP upon plasma coagulation. Anti-CD18, CD49d, and alpha4beta7 antibodies significantly suppressed ECP levels in the serum. CONCLUSIONS: These results suggest that ECP release in the serum is calcium and plasma coagulation-dependent and that cell adhesion through alphaLbeta2, alphaMbeta2, alpha4beta1 and alpha4beta7 integrins is at least in part responsible for ECP release.

Antigens, CD↗

Matrix metalloproteinase-9 in peripheral blood eosinophils.

BACKGROUND: Matrix metalloproteinases (MMPs) are major contributors to tumor invasion, remodeling of connective tissue and infiltration of inflammatory cells and may be important mediators in developing allergic inflammation. Overexpression of MMP-9 mRNA by eosinophils in the asthmatic airways has been reported. To clarify the relative significance of MMP as an inflammatory mediator from eosinophils, we determined the content of MMP-9 in the peripheral blood eosinophils and compared it with the other leukocyte fractions. METHODS: Peripheral blood eosinophils, neutrophils, and mononuclear cells were purified from normal and allergic donors with Percoll gradient centrifugation and CD16 negative selection. Cell lysate and culture supernatants stimulated with IL-5, PAF, and PMA were tested for MMP-9 with gelatin zymography and ELISA. RESULTS: The amount of MMP-9 in highly purified eosinophils, neutrophils, and mononuclear cells was 2.5 +/- 0.9, 4,073 +/- 581, and 7.6 +/- 1.4 ng/5 x 10(6) cells, respectively. There was no difference in MMP-9 content of eosinophils between normal donors and patients with asthma. Culture of peripheral blood eosinophils with IL-5 for 4 days did not induce MMP-9 production. The stimulation of eosinophils with PMA and other secretogogues caused only small amounts of MMP-9 secretion as compared with neutrophils. CONCLUSIONS: These findings suggest that circulating eosinophils normally have only small amounts of MMP-9 and that eosinophils may need complex activation signals to produce significant amounts of MMP as seen in tissues of allergic inflammation.

Asthma↗

Substance P causes adhesion of neutrophils to endothelial cells via protein kinase C.

The sensory neuropeptide substance P is known to be involved in neurogenic inflammation. We examined the effect of substance P on neutrophil adhesion to human umbilical vein endothelial cells (HUVEC). Stimulation of HUVEC with substance P increased their adhesion to neutrophils in a time- and concentration (10(-10)-10(-7) M)-dependent manner. The adhesion was inhibited by the tachykinin NK1 receptor antagonist (+)-(2S,3S)-3-(2-Methoxybenzylamino)-2-phenylpiperidine (CP-99,994) and also by the protein kinase C inhibitors 1-(5-Isoquinolinesulfonyl)-2-methyl piperazine (H-7) and bisindolylmaleimide (BIM), but not by the protein kinase A inhibitor N-12-(p-Bromocinnamylamino) ethyl]-S-isoquinoline sulfonamide (H-89). These results indicate that substance P induces adhesion of neutrophils to HUVEC by activation of protein kinase C via the NK1 receptor on the HUVEC.

Cell Adhesion↗

[The role of tachykinin NK-1 receptors in emetic action in the area postrema of ferrets].

Substance P (SP) is a member of the tachykinin family of bioactive peptides and has highest affinity for the NK-1 receptor. We have developed the non-peptide compound HSP-117 as a selective antagonist of the NK-1 receptor. Binding of 3H-SP to the membranes of IM-9 cells was inhibited by the antagonists HSP-117 and CP-99,994, the inhibitory activity of HSP-117 being 50-fold that of CP-99,994. The SP-induced firing responses of single neuron activity in slices of the nucleus tractus solitarius of ferrets were inhibited by 10 microM HSP-117. Intracerebroventricular injection of HSP-117 significantly inhibited retching and vomiting induced by copper sulphate and morphine and the inhibitory effect of HSP-117 on emesis was greater than that of CP-99,994. Moreover, emesis induced by copper sulphate and morphine were inhibited by the microinjection of HSP-117 and CP-99,994 into the area postrema and by lesion of the area postrema. These results indicate that HSP-117 is a potent anti-emetic agent, blocking NK-1 receptors in the area postrema and that NK-1 receptors in the area postrema play an important role in emesis induced by broad-spectrum emetic stimuli.

Animals↗

Biphasic relaxation caused by electrical field stimulation of the mesenteric arteries of rats.

Electrical field stimulation (EFS) caused biphasic relaxation, first transient and then sustained, of rat mesenteric arteries precontracted by prostaglandin (PG) F2alpha. The transient relaxation was reduced about 45%, and the sustained relaxation was not observed after endothelium denudation of the arteries. N(omega)-Nitro-L-arginine (L-NOARG) inhibited the biphasic relaxation induced by EFS. At 1 - 100 microM, L-NOARG inhibited the transient relaxation more than the sustained relaxation. Methylene blue inhibited the biphasic relaxation and at 100 microM, L-NOARG abolished the transient relaxation. These results suggest that the transient relaxation mainly involves nitric oxide (NO), whereas the sustained relaxation involves both NO and some other factor(s).

Animals↗

Endogenous ATP released by electrical field stimulation causes contraction via P2x- and P2y-purinoceptors in the isolated tail artery of rats.

Electrical field stimulation (EFS) caused contraction of isolated tail arteries of rats. The EFS-induced contraction showed frequency-dependence and was entirely abolished by the sodium channel blocker tetrodotoxin (1 x 10(-7) M). The EFS-induced (at 20 Hz) contraction was reduced by about 60% in the presence of phentolamine (1 x 10(-6) M). Therefore, later experiments were carried out in the presence of phentolamine. Pyridoxal-phosphate-6-azophenyl-2',4'-disulphonic acid (PPADS) (1 x 10(-8)-1 x 10(-6) M) and basilen blue E-3G (3 x 10(-5)-5 x 10(-5) M), P2-receptor antagonists, significantly inhibited the contraction evoked by EFS. In addition, PPADS significantly inhibited the contractions induced by ATP (1 x 10(-4) M) and a selective P2x-receptor agonist, alpha,beta-methylene ATP (1 x 10(-6) M). In contrast, basilen blue E-3G did not inhibit alpha,beta-methylene ATP-induced contraction. The ecto-ATPase activator apyrase (5 and 10 U/ml) significantly reduced the EFS-induced contractions. These findings suggest that endogenous ATP released by EFS causes contractions of rat tail artery via both the P2x-receptors and P2y-receptors.

Adenosine Triphosphate↗

Accelerated evolution in the protein-coding region of galectin cDNAs, congerin I and congerin II, from skin mucus of conger eel (Conger myriaster).

Two cDNAs encoding galectins named congerins I and II from the skin mucus of conger eel (Conger myriaster) were isolated and sequenced. Comparison of the nucleotide sequences of congerins I and II showed that the sequence similarities of the 5' and 3' untranslated regions (86 and 88%, respectively) were much higher than those of the protein-coding region (73%). The numbers of nucleotide substitutions per site (KN) for the untranslated regions are smaller than the numbers of nucleotide substitutions per synonymous site (KS) for the protein coding region. Furthermore, nonsynonymous nucleotide substitutions have accelerated more frequently than synonymous nucleotide substitutions in the protein coding region (KA/KS = 2.57). These results suggest that accelerated substitutions have occurred in the protein-coding regions of galectin genes to generate diverse galectins with different molecular properties. Northern blot analysis showed that both congerins were expressed not only in the skin tissues but also in the stomach of conger eel.

Amino Acid Sequence↗

Parasitological survey on wild carnivora in north-western Tohoku, Japan.

In the winter of 1997-1998, we collected parasitological data from 60 wild carnivora in the north-western part of Tohoku region, Japan. These included 7 foxes (Vulpes vulpes japonica), 20 raccoon dogs (Nyctereutes procyonoides viverrinus), 29 martens (Martes melampus melampus), 3 weasels (two Mustela sibirica itatsi and one M. nivalis namiyei), and one Japanese badger (Meles meles anakuma). Roundworms (Toxocara canis in foxes and Toxocara tanuki in raccoon dogs), hookworms (Ancylostoma kusimaense and Arthrostoma miyazakiense) and Molineus sp. in the small intestine were the most prevalent in foxes and raccoon dogs. In martens, Aonchotheca putorii in the stomach, Concinnum ten in the pancreatic duct, Molineus sp. and Euryhelmis costaricensis in the small intestine were the most prevalent. Collected parasites include some new helminth species for this region or Japan; the strobilar stage of Taenia polyacantha from foxes, Pygidliopsis summa from a raccoon dog, Eucoleus aerophilus, A. putorii, and Soholiphyme baturini from martens.

Animals↗

Helminth fauna of carnivores distributed in north-western Tohoku, Japan, with special reference to Mesocestoides paucitesticulus and Brachylaima tokudai.

In the winter of 1998-1999, we collected parasitological data from 54 wild carnivores in the north-western part of Tohoku region, Japan. These consisted of 38 martens (Martes melampus melampus), 14 raccoon dogs (Nyctereutes procyonoides viverrinus) and 2 foxes (Vulpes vulpes japonica). Collected helminth parasites were 11 nematode, 10 trematode, 3 cestode, and a single acanthocephalan species, including 5 hitherto unknown species for this research area or the mainland of Japan (Honshu). Mesocestoides paucitesticulus was for the first time recorded from martens as well as from carnivores distributed in Honshu. Brachylaima tokudai originally recorded from Urotrichus talpoides in the central part of Honshu was for the first time found from a raccoon dog.

Acanthocephala↗