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K Haga

Publications and source records attributed to K Haga.

At least 91 records · Page 5Linked to original sources

Location in muscarinic acetylcholine receptors of sites for [3H]propylbenzilylcholine mustard binding and for phosphorylation with protein kinase C.

Muscarinic acetylcholine receptors purified from porcine cerebra or atria were covalently labeled with [3H]propylbenzilylcholine mustard ([3H]PrBCM), and then the labeled receptors were subjected to limited hydrolysis with trypsin, V8 protease, and lysyl endopeptidase, followed by analysis involving sodium dodecyl sulfate-polyacrylamide gel electrophoresis, fluorography, autoradiography, or immunostaining. The labeled peptides were located on the basis of their reactivity with antibodies raised against three synthetic peptides with partial sequences of the m1 or m2 receptor, and of their sensitivity to endoglycosidase F, which was taken as evidence that they contain glycosylation sites near the N terminus. The [3H]PrBCM-binding site in both cerebral and atrial receptors was found to be located between the N terminus and the second intracellular loop, because the size of the smallest deglycosylated peptide that contained both the [3H]PrBCM-binding and glycosylation sites was approximately 16 kDa. Cerebral receptors were 32P-phosphorylated with protein kinase C, and the major phosphorylation sites in cerebral muscarinic receptors were found to be located in a C-terminal segment including a part of the third intracellular loop, because a 32P-labeled peptide of 12-14 kDa reacted with anti-(m1 C-terminal peptide) antiserum. The presence of an intramolecular disulfide bond, probably between Cys 98 and Cys 178 in the first and second extracellular loops, respectively, was suggested by the finding that a peptide of approximately 17 kDa containing the [3H]PrBCM-binding site, but not the glycosylation sites, was partly converted to a peptide of approximately 12 kDa on treatment with beta-mercaptoethanol.

Animals↗

Measurement of gastric pH during digestion of a solid meal in dogs.

The behavior of gastric pH during digestion of a solid meal in beagle dogs was determined by use of an ion-selective field effect transistor pH sensor. The pH in the stomach was 3.9 +/- 0.4 (mean +/- S.D., n = 6) at 0.5 h after meals. It was maintained at a mildly acidic (about pH 3) level for long periods.

Animals↗

Effects of meals on gastric emptying and small intestinal transit times of a suspension in the beagle dog assessed using acetaminophen and salicylazosulfapyridine as markers.

Effects of the amount and the composition of meals on gastric emptying and small intestinal transit times of a suspension were investigated in beagle dogs using acetaminophen and salicylazosulfapyridine as markers. Gastric emptying time was affected both by the amount and the composition of a meal; it was prolonged proportionally to the amount of a solid meal and varied among the 3 kinds of test meals of the same energy content in the following rank order: lard greater than skimmed milk greater than mashed potatoes. The inter-individual variation of small intestinal transit time in a fed state was smaller than that in a fasted state, whereas the mean transit times in both states were similar. Small intestinal transit time was not affected by the amount of the solid meal. On the other hand, it varied among the 3 kinds of test meals in the following rank order: lard greater than mashed potatoes greater than skimmed milk. It is noteworthy that small intestinal transit time in the beagle dog is approximately 2 h shorter than that in humans both in fasted and fed states.

Acetaminophen↗

[Effects of bile and meal on the gastrointestinal absorption of 2-[3-(3,5-di-tert-butyl-4-hydroxyphenyl)-1H-pyrazolo[3,4-b]pyridin- 1-yl]ethyl acetate, a new non-steroidal anti-inflammatory agent].

The effects of bile and meal on the gastrointestinal absorption of 2-[3-(3,5-di-tert-butyl-4-hydroxyphenyl)-1H-pyrazolo[3,4-b]pyridin - 1-yl]ethyl acetate (1), were investigated in rats and dogs. Compound 1 was lipophilic and soluble in bile, but extremely insoluble in water. The important role of bile in the dissolution step in the absorption process of 1 was confirmed on the in situ absorption study with rats. Oral absorption of 1 was insufficient and showed a marked individual difference in fasting dogs. When the same compound was administered after ingestion of a meal, the absorption increased with decreasing scatter. Three kinds of meals had different potencies to enhance the bio-availability of 1 in the order of lard greater than mashed potatoes greater than skimmed milk. The absorption behavior of 1 reflected small intestinal transit time and the stimulated bile output after ingestion of meal.

Animals↗

The interaction of acetylcholine receptors in porcine atrial membranes with three kinds of G proteins.

We developed a simple procedure to detect the interaction of muscarinic receptors in atrial membranes with exogenous GTP-binding proteins (G proteins). The procedure consists of mixing atrial membranes with G proteins in the presence of sodium cholate, diluting the mixture with a salt buffer and then measuring the ligand binding activity. The displacement by carbachol of [3H] QNB binding to muscarinic receptors in the atrial membranes was not affected by guanine nucleotides when the membranes had been treated at 60 degrees C for 30 min or with N-ethylmeleimide (NEM) and became affected by them after mixing the heat- or NEM-treated membranes with G proteins. The displacement curves in the presence of GTP were essentially the same irrespective of the presence or absence of G proteins. Those in the absence of GTP shifted to a lower concentration of carbachol with addition of a higher concentration of G proteins, indicating an increase in GTP-sensitive high affinity agonist binding sites. The highest affinity for carbachol was detected with membranes treated with NEM and then mixed with G proteins. The GTP-sensitive high affinity agonist binding could be detected with any one of three kinds of G proteins (Gi, Go, Gn) which were purified from porcine cerebrum, indicating that the muscarinic receptor m2 subtype may interact with and possibly activate these three kinds of G proteins.

Animals↗

Influence of bestatin on production of granulocyte-macrophage colony-stimulating factor from human peripheral blood mononuclear cells in vitro.

Bestatin, (25, 3R)-3-amino-2-hydroxy-4-phenylbutyryl-L-leucine, enhanced proliferation of normal human bone marrow granulocyte-macrophage progenitor cells to form CFU-GM colonies in viscous methylcellulose medium in vitro. To elucidate the mechanisms of this effect, the levels of colony-stimulating factor (CSF) in culture supernatant of 1 x 10(6)/ml peripheral blood mononuclear cells (PBMC) cocultured with various concentrations of bestatin were determined using our newly developed sandwich enzyme-linked immunosorbent assay (ELISA). The level of granulocyte/macrophage-CSF (GM-CSF) in the supernatant in the presence of 0.1 microgram/ml bestatin was 312 pg/ml by this ELISA. The production of GM-CSF increased with increasing amounts of added bestatin.

Cells, Cultured↗

Gastric pH profile and its control in fasting beagle dogs.

The gastric pH of fasting beagle dogs was measured by using an ion-selective field effect transistor pH sensor. In addition, a novel procedure to control the gastric pH in fasting beagle dogs was investigated. Inter- and intra-day variations in the gastric pH of the dogs were observed. The gastric pH of the dogs could be controlled by a single intravenous administration of omeprazole, an H+, K+-adenosine triphosphatase (ATPase) inhibitor (1 mg/0.25 ml/kg). The pH in the stomach was 6.6 +/- 0.2 (mean +/- S.D., n = 6) at 1 h after the omeprazole treatment, and this level of pH was maintained for a period of at least 3 h. Beagle dogs in which the gastric pH has been controlled by omeprazole are considered to be useful as an animal model to be used for the pharmaceutical evaluation of drugs in subjects with a low acidity level.

Animals↗

[Determination of small intestinal transit time in beagle dogs using salicylazosulfapyridine].

The method for the assessment of small intestinal transit time (SITT) in beagle dogs was investigated by using the time for the first appearance of sulfapyridine in the plasma (TFA) after oral administration of salicylazosulfapyridine (SASP). After administration of SASP into the small intestine or the cecum of anesthetized dogs, sulfapyridine (SP) was detected in the plasma only in the latter case. These results indicate that TFA could be an index of arrival time in the cecum, an index of SITT in dogs. A remarkable inter-individual variation of TFA was observed after oral administration of SASP to fasting dogs, and the mean value of TFA was about 3 h. As for intra-individual variation of TFA, both variable and less variable dogs were observed. TFA was prolonged significantly by atropine (0.1 mg/kg, i.v.) and shortened significantly by metoclopramide (0.5 mg/kg, i.v.). As the pharmacological modification of gastrointestinal motility was thus mirrored by TFA, SASP method is considered to be useful for the assessment of SITT in beagle dogs.

Animals↗

Cerebral muscarinic acetylcholine receptors interact with three kinds of GTP-binding proteins in a reconstitution system of purified components.

A new GTP-binding protein, which serves as a substrate for pertussis toxin, was prepared from porcine brain. The new G protein was separated from other GTP-binding proteins, Gi and Go, by an anion-exchange column chromatography. The mobility on sodium dodecyl sulfate-polyacrylamide gel electrophoresis of the alpha subunit of the new G protein was between those of alpha subunits of Gi and Go. Evidence that the alpha subunit is not a proteolytic fragment of the alpha subunit is not a proteolytic fragment of the alpha subunit of Gi or Go was provided by experiments involving partial hydrolysis of these G proteins with thermolysin and their interaction with an antibody raised against the amino terminal peptide of the alpha subunit of Gi. In addition, the gamma subunit of the new G protein was indicated to be different from the gamma subunits of Gi and Go, because the latter were found to be phosphorylated by protein kinase C but the former was not. GTP-sensitive high affinity binding of muscarinic receptors with acetylcholine was observed when muscarinic receptors purified from porcine cerebrum were reconstituted in phospholipid vesicles with the new G protein as well as with Gi or Go. The proportion of the high affinity sites increased with the concentrations of the G proteins, the potency of the new G protein being similar to that of Gi but a little lower than that of Go. This GTP-sensitive high affinity binding was not observed when each G protein was pretreated with pertussis toxin and then reconstituted with muscarinic receptors. Acetylcholine accelerated the dissociation of [3H]GDP from the new G protein as well as from Gi and Go, which were reconstituted with muscarinic receptors. These results indicate that muscarinic receptors interact with at least the above three kinds of G proteins, in a pertussis toxin-sensitive manner.

Animals↗

[The inhibitory effect on passive cutaneous anaphylaxis in guinea pigs of oral administration of Corynebacterium (Rhodococcus) equi].

We studied the inhibitory effect on the PCA reaction of BSA-rabbit anti-BSA (BSA-anti-BSA) system in CP-sensitized and CP-unsensitized guinea pigs by the oral administration of C. equi. Strain Ko-85 (Ko-85) cells. The results were as follows: 1) Guinea pigs were sensitized by intraperitoneal injection with the CP. Nine days later, the animals were administered with an oral dose of 80 mg (W.W.) of Ko-85 cells. The animals were submitted daily to PCA reaction tests using BSA and rabbit anti-BSA serum. The inhibition of PCA reaction of BSA-anti-BSA system in CP-sensitized guinea pigs was shown from 4th day to 10th day after administration of Ko-85 cells. The PCA reaction of 9th day was recognized strong inhibition by the oral administration of Ko-85 cells. 2) CP-unsensitized guinea pigs were given an oral dose of 80 mg of Ko-85 cells, and the animals were submitted every other day to PCA reaction tests of the BSA-anti-BSA system. PCA elicited in these animals on the 9th, 15th and 17th days Ko-85 administration were inhibited compared with those in the control animals (which were not given an oral dose of Ko-85 cells). The strongest inhibition was shown in animals challenged on the 15th day after Ko-85 administration. The inhibitory effect of PCA reaction of BSA-anti-BSA system by the oral administration of an oral dose 80 mg (W.W.) of Ko-85 cells was recognized in CP-sensitized and CP-unsensitized guinea pigs.

Animals↗

Agonist and antagonist binding of muscarinic acetylcholine receptors purified from porcine brain: interconversion of high- and low-affinity sites by sulfhydryl reagents.

The affinity for muscarinic ligands of a preparation of muscarinic acetylcholine receptors purified from porcine brain was examined by means of competitive binding of [3H]quinuclidinylbenzylate and unlabeled ligands, followed by computer-assisted nonlinear regression analysis. The displacements by antagonists fitted a single-site model. In contrast, the displacements by agonists did not fit the single-site model and could be explained by assuming two populations of binding sites. The proportion of the sites with high affinity for muscarinic agonists (H-sites) ranged from 25 to 35% of the total number of sites. GTP had no effect on the displacements by agonists, a finding indicating that H-sites did not result from interaction between receptors and GTP-binding proteins. In the presence of dithiothreitol, the affinity for muscarinic ligands decreased. The largest effects were observed on the affinity for pirenzepine and that of H-sites for carbachol. Preincubation of the preparation with 5,5'-dithiobis(2-nitrobenzoic acid) resulted in an increase in the proportion of H-sites to 75% of the total number of binding sites. The results of sucrose density gradient centrifugation of the preparation indicated apparent heterogeneity as to molecular size of the receptors, but this heterogeneity did not correlate with that of the affinity for agonists. In addition, the receptors were detected as a single band on sodium dodecyl sulfate-polyacrylamide gel electrophoresis of the preparation, regardless of the presence or absence of disulfide-reducing reagents. These results suggest that the redox state of thiol groups in the receptor molecules is relevant to their affinities for ligands.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

[Effect of an H+, K+-ATPase inhibitor, omeprazole (OPZ), on gastric acid secretion and gastric or duodenal lesion. Comparison with an H2-receptor antagonist, famotidine (FMD)].

In pylorus ligated rats, OPZ inhibited gastric acid secretion dose-dependently, with a potency greater than that of FMD. At the same time, OPZ increased gastric K+ secretion and inhibited pepsin and Na+ secretions at the highest dose. In Heidenhain pouch dogs, single injection of OPZ inhibited gastric acid secretion induced by histamine to a degree almost equal to that by FMD. In the case of repeated administration, anti-secretory activity of OPZ was enhanced by up to several days and then remained constant. After several days, the inhibitory activity of OPZ was more potent and longer than that of FMD, and it still had not ceased 22hr after administration. In pylorus ligated rats, OPZ prevented gastric ulceration, and the potency was greater than that of FMD. OPZ promoted healing of gastric and duodenal ulcers induced by acetic acid in rats. At the same doses, FMD failed to promote the healing of both ulcers. In water-immersion stressed rats, OPZ prevented formation of gastric erosions, with a potency greater than that of FMD. In addition, OPZ prevented formation of gastric erosions induced by ethanol in rats. These results indicate that the anti-secretory and anti-ulcer activities of OPZ are superior to those of FMD, so that OPZ should have excellent therapeutic application for peptic ulcers.

Animals↗

The interaction between D-2 dopamine receptors and GTP-binding proteins.

D-2 dopamine receptors were solubilized from porcine striatal membranes with 0.3% sodium cholate/1 M NaCl and separated from the bulk of the guanine nucleotide-binding regulatory proteins (G-proteins) by Ultrogel AcA34 gel filtration chromatography. The partially purified D-2 receptors were reconstituted in phospholipid vesicles with Gi or Go purified from porcine brain. The dissociation constant (Kd) of the D-2 receptors in the reconstituted vesicles for [3H]spiperone binding was 82-89 pm, which was not affected by the presence or absence of G-proteins. The displacement curve for [3H]spiperone/dopamine was analyzed, assuming that there are two populations of binding sites. The Kd values for the binding sites with high affinity for agonists (HAS) and that for the binding sites with low affinity for agonists (LAS) were approximately 1 microM and 100 microM, respectively. The proportion of HAS was 8% when the receptor preparation was reconstituted into phospholipid vesicles without G-proteins, but it increased to 58-64% with increasing G-protein concentrations. The potency of Go was a little higher than that of Gi. The proportion of HAS in the presence of G-proteins decreased to about 11% on addition of GTP. When G-proteins were treated with islet-activating protein, GTP-sensitive HAS were not observed. These results indicate that at least 50% of the partially purified D-2 receptors interact with both Gi and Go.

Animals↗

Reconstitution of the muscarinic acetylcholine receptor. Guanine nucleotide-sensitive high affinity binding of agonists to purified muscarinic receptors reconstituted with GTP-binding proteins (Gi and Go).

Muscarinic acetylcholine receptors purified from porcine brain were reconstituted with two kinds of GTP-binding proteins (Gi and Go). The binding of agonists was affected by guanine nucleotides when the receptor was reconstituted with either Gi or Go, but not in the absence of one of the GTP-binding proteins. The displacement curves with agonists for the [3H]quinuclidinyl benzylate [( 3H]QNB) binding were explained by assuming there are two sites with different affinities for a given agonist. The proportion of the high affinity site increased with increasing concentrations of the GTP-binding proteins, and the maximum value represented 50-70% of the total [3H]QNB-binding sites. Reconstitution of the receptor with both Gi and Go did not increase the proportion any further. These results indicate that Gi and Go interact with the same site, which rules out the possibility that there are two kinds of muscarinic receptors, one interacting with Gi and the other with Go. GDP as well as GTP decreased the affinity for the agonists of the muscarinic receptors reconstituted with Gi or Go. The conversion of GDP to GTP during the incubation was less than 1%, indicating that the effect of GDP is not due to its conversion to GTP, and that the binding of either GTP or GDP with the GTP-binding proteins suppresses their interaction with the receptor.

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