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Biomedical subjects

H Mizuguchi

Publications and source records attributed to H Mizuguchi.

At least 91 records · Page 5Linked to original sources

Functionally important residues of aromatic L-amino acid decarboxylase probed by sequence alignment and site-directed mutagenesis.

To identify functional residues of rat liver L-aromatic amino acid decarboxylase (AADC), we aligned the sequences of 13 group II amino acid decarboxylases and performed mutational analysis on the residues that were invariant or conservatively substituted. Replacements of His192, Asp252, Asp271, Ser296, Lys303, Tyr332, and Arg355 with alanine residues decreased the AADC activity (kcat/K(m)) by more than 10(4)-fold. Conservative replacements of [Asp252-->Glu], [Lys303-->Arg], and [Tyr332-->Phe] also resulted in decreases in activity by more than 10(4)-fold, indicating that both the chemical properties and the shape of these residues are essential for catalysis. The presence of a Schiff base between the amino group of Lys303 and the coenzyme pyridoxal 5'-phosphate is important for catalysis, probably at the transaldimination step. The enzyme activity was essentially unaffected by conservative mutation of [Arg355-->Lys], showing that the presence of a basic group at position 355 is necessary and sufficient for the catalysis. Replacement of [Thr246-->Ala], [His269-->Ala], and [Trp363-->Leu] yielded mutant enzymes that were 1-8% as active as the wild-type enzyme; these residues are not essential for the catalysis but are considered to contribute to the activity through conformational or other effects. The roles of the catalytically important residues of the group II amino acid decarboxylases probed in this study were discussed in the light of their relationship with the residues of other pyridoxal enzymes.

Amino Acid Sequence↗

Selective enhancement by tumor necrosis factor-alpha of vascular permeability of new blood vessels induced with agarose hydrogel-entrapped Meth-A fibrosarcoma cells.

We have previously developed a simple and quantitative method for assessment of in vivo tumor cell-induced angiogenesis by means of microencapsulation of tumor cells in agarose hydrogel and mouse hemoglobin ELISA (mHb-ELISA). In this article, we report that the new blood vessels induced with agarose-encapsulated tumor cells have the same sensitivity to tumor necrosis factor-alpha (TNF-alpha) as the original solid-tumor vessels. Agarose beads (average diameter = 200 microns), in which Meth-A fibrosarcoma cells were microencapsulated, were subcutaneously implanted in non-syngeneic ddY mice. Ten days later, extensive angiogenesis was observed on the implanted sites of Meth-A agarose heads, whereas no new blood vessels were induced with cell-free agarose heads. The vascular permeability of the new blood vessels induced with agarose-microencapsulated Meth-A cells was selectively and significantly enhanced by the i.v. injection of TNF-alpha, and it reached the maximum level at 2 h after the injection of TNF-alpha. At 4 h after the injection of TNF-alpha, the vascular permeability was reduced to the basal level. This permeability profile in Meth-A agarose beads in ddY mice is very similar to that in Meth-A solid tumor in syngeneic BALB/c mice. On the other hand, TNF-alpha-treatment did not affect the vascular permeability of other normal tissues or inflammatory tissue in ddY mice. These results strongly suggest that the new blood vessels induced with agarose-microencapsulated tumor cells have the specific characteristics of tumor vessels. Our in vivo angiogenesis assay system should be useful not only to screen anti-angiogenetic agents, but also to elucidate the mechanism of tumor angiogenesis.

Animals↗

Alterations by clofibric acid of metabolism of phosphatidylethanolamine in rat-liver.

Metabolic changes induced by p-chlorophenoxyisobutyric acid (clofibric acid) in hepatic phosphatidylethanolamine (PtdEtn) were studied. The treatment of rats with clofibric acid increased the hepatic concentrations of phosphatidylcholine (PtdCho), PtdEtn and phosphatidylinositol (PtdIns), but not phosphatidylserine (PtdSer). Among the phospholipids, the extent of increase of PtdEtn was the most prominent (1.91-fold on the basis of g liver and 2.73-fold on the basis of whole liver). Of the enzymes which are involved in the synthesis de novo of PtdEtn, the activity of cytidine 5'-triphosphate (CTP): phosphoethanolamine cytidylytransferase was reduced by the administration of clofibric acid to rats. The treatment of rats with this drug significantly decreased the serum concentration of free ethanolamine. Clofibric acid enhanced the activity of PtdSer decarboxylase and depressed the N-methylation in vivo of PtdEtn by inhibiting N-methyltransferase. Moreover, clofibric acid significantly depressed the turnover of PtdEtn, which was labeled in vivo with [3H]glycerol. These results suggest that, under the influence of clofibric acid, hepatocytes facilitate the pathway PtdCho-->PtdSer-->PtdEtn and reduce the turnover of PtdEtn, resulting in an expanded cellular pool of PtdEtn.

Animals↗

Role of stearoyl-CoA desaturase in the modification of acyl composition of hepatic phosphatidylcholine by peroxisome proliferators.

The relative contribution of stearoyl-CoA desaturase and 1-acylglycerophosphocholine (1-acyl-GPC) acyltransferase, which are induced by peroxisome proliferators, to the increase in the proportion of oleic acid in C-2 position of phosphatidylcholine (PtdCho) in the liver of rats was investigated. Rats were administered either 4-chlorophenoxyisobutyric acid (clofibric acid), 2,2'-(decamethylenedithio)-di-ethanol (tiadenol) or perfluorooctanoic acid in varying doses. With administration of these peroxisome proliferators, the proportion of oleic acid in C-2 position of PtdCho in hepatic microsomes was increased in commensurate with the increase in activities of stearoyl-CoA desaturase and 1-acyl-GPC acyltransferase. Multiple regression analysis revealed that although there is a high correlation among the three parameters examined, the partial correlation between the proportion of oleic acid in the C-2 position and the activity of stearoyl-CoA desaturase is significantly higher than that between the proportion of oleic acid in the C-2 position and the activity of 1-acyl-GPC acyltransferase. The contribution of stearoyl-CoA desaturase to the increase in the proportion of oleic acid in the C-2 position thus appears greater than that of 1-acyl-GPC acyltransferase.

1-Acylglycerophosphocholine O-Acyltransferase↗

Tumor-conditioned medium increases macromolecular permeability of endothelial cell monolayer.

The permeation of macromolecular FITC-labeled dextran (molecular weight 70,000) through bovine aortic endothelial cells (BAEC) monolayer, which were cultured for 5 days with conditioned medium prepared from mouse melanoma B16, was increased. However, when BAEC, which were cultured with normal medium until confluent, were treated with B16 conditioned medium (B16-CM) for 30 min, the permeability did not increase. The B16-CM also increased the permeability of the endothelial monolayers of bovine veins and the human umbilical vein, but did not increase that of the epithelial monolayer. The B16-CM did not alter the distribution or content of F-actin on the BAEC. BAEC cultured in the presence of B16-CM for 5 days were detached from the dish, and then seeded into a chamber at one-fifth of confluent cell density. After 5 days of culture in normal medium, the BAEC were grown to confluence and their permeability was increased. These findings suggest that B16-CM increased the endothelial permeability irreversibly without the decrease of F-actin, and that soluble factor(s) which were secreted from the tumor cells participate in the construction of the hyperpermeable structure of tumor vessels in vivo.

Actins↗

Ascorbic acid stimulates barrier function of cultured endothelial cell monolayer.

The macromolecular permeability of cultured bovine aortic, bovine venous, and human umbilical vein endothelial cell monolayers was decreased significantly in culture medium containing L-ascorbic acid (Asc Acid; 0.01-0.1 mM) and L-ascorbic acid 2-phosphate (Asc 2-P). Dithiothreitol, which shows reducing activity equivalent to that of Asc Acid, did not affect endothelial permeability. Asc Acid induced a sixfold increase in collagen synthesis by the endothelial cells. The coexistence of L-azetidine 2-carboxylic acid, an inhibitor of collagen synthesis, attenuated the effect of Asc 2-P in a dose-dependent manner. Another collagen synthesis inhibitor, ethyl-3,4-dihydroxybenzoate, also inhibited collagen synthesis and increased endothelial permeability. The decrease in permeability of the endothelial monolayer was dependent on a reduction of the permeability coefficient of the endothelial monolayer. These findings indicate that endothelial barrier function is stimulated by Asc Acid via an increase in collagen synthesis.

Animals↗

Hepatic uptake of octreotide, a long-acting somatostatin analogue, via a bile acid transport system.

The hepatic transport mechanism of octreotide (Sandostatin), a somatostatin analogue, was studied using freshly prepared rat hepatocytes. The initial uptake rate of octreotide represented exclusively a saturable transport process. The half-saturation constant, Kt, and the maximum uptake-rate, Jmax, for the uptake of octreotide were 91.1 +/- 28.4 microM and 104.6 +/- 19.7 pmol/mg protein/min, respectively. An energy requirement was demonstrated for [14C]octreotide uptake since metabolic inhibitors (DNP, rotenone, antimycin and NaCN) significantly reduced the initial uptake rate. [14C]octreotide uptake was also significantly inhibited by ouabain. [14C]octreotide uptake was reduced in the absence of Na+ in the uptake medium. [14C]octreotide uptake was significantly inhibited by bile acids, iodipamide, d-tubocurarine, whereas it was not inhibited by bilirubin, TEMA and insulin. Competitive inhibition of taurocholic acid was observed for octreotide uptake with the inhibition constant, Ki, of 82 +/- 17 microM. Moreover, a significant inhibitory effect of octreotide was observed for the Na+ dependent uptake of [14C]taurocholic acid. These results suggest that octreotide is transported into hepatocytes via a bile acid carrier-mediated system.

Amino Acid Sequence↗

Purification and characterization of [3H]mepyramine (histamine H1 antagonist)-binding protein from rat liver: a highly homologous protein with cytochrome P450 2D.

A protein having a high-affinity binding site for [3H]mepyramine (MBP) was purified to homogeneity from rat liver membranes. The purified MBP has a single type of binding site for [3H]mepyramine with Kd value of 18.5 nM, and its molecular weight was determined to be 56,000 by SDS polyacrylamide gel electrophoresis. Amino acid sequences of twelve tryptic peptides derived from MBP are highly homologous with those of rat debrisoquine 4-hydroxylase (cytochrome P450 2D1) and other rat P450 2D subfamily members. In immunoblotting analysis, an antibody against rat P450 2D1 stained a band corresponding to MBP with Mr of 56,000; its migration position was clearly different from that of rat P450 2D1. Substrates and inhibitors of debrisoquine 4-hydroxylase potently displace [3H]-mepyramine binding to MBP. Quinine and quinidine showed 400 and 80 times, respectively, higher affinity for MBP than for debrisoquine 4-hydroxylase. These results suggest that MBP is a novel P450 2D family member.

Amino Acid Sequence↗

Site-directed mutagenesis of the histamine H1 receptor: roles of aspartic acid107, asparagine198 and threonine194.

Based on structural comparison with other biogenic amine receptors and the histamine H2 receptor, it has been suggested that in the human histamine H1 receptor, Asp107, Thr194, and Asn198 are the residues involved in binding of histamine. We therefore used site-directed mutagenesis to investigate the roles of these three amino acid residues. Asp107 was essential for both agonist and antagonist binding. Asn198 was necessary for agonist but not for antagonist binding. Thr194 was not important for either type of binding. A good correlation was found between agonist binding and receptor activation for all the wild-type and mutant receptors. The results show that the histamine H1 receptor recognizes and is activated by histamine through the interactions of Asp107 and the amino group, and Asn198 and the imidazole ring.

Amino Acid Sequence↗

Glial extracellular matrix modulates gamma-glutamyl transpeptidase activity in cultured bovine brain capillary and bovine aortic endothelial cells.

Glial extracellular matrix (ECM) elevated gamma-glutamyl transpeptidase (gamma-GTP) activity in cultured bovine brain capillary and aortic endothelial cells (BBCEC, BAEC). In particular, the ECM of glial cells cultured with the conditioned medium of BAEC (BAEC CM) dramatically elevated gamma-GTP activity in BBCEC and BAEC. The ECM of glial cells cultured with BBCEC CM also had a marked effect. The ECM of 3T3 cells cultured with BAEC CM, and the ECM of glial cells cultured with 3T3 CM had no effect. Glial CM had no effect on gamma-GTP activity in BBCEC and BAEC. These findings indicate that gamma-GTP activity in endothelial cells (EC) is modulated by glial ECM, and that the factor of ECM that affects gamma-GTP activity in EC arises from the interaction between glial cells and EC.

Animals↗

Molecular cloning of the human histamine H1 receptor gene.

The human histamine H1 receptor gene, an intron-lacking gene, was isolated with bovine H1 receptor cDNA [Yamashita, M., Fukui, H., Sugama, K., Horio, Y., Ito, S., Mizuguchi, H., and Wada, H. (1991) Proc. Natl. Acad. Sci. USA 88, 11515-11519] used as a probe. The receptor protein deduced from the nucleotide sequence of this gene was composed of 487 amino acid residues with a calculated Mr of 55,781 and possessed characteristic properties of GTP binding protein-coupled receptors. At the 5' flanking region of the human H1 receptor gene, we located potential TATA box and CACCC sequences, AP1 binding site-like sequences, glucocorticoid responsive element-like sequences, and other binding sequences for inducers. Northern blot analysis showed that H1 receptor mRNAs visualized as two bands with 3.0-kilobase and 3.5-kilobase nucleotides were expressed in peripheral tissues such as placenta, lung, skeletal muscle, and kidney and that only one species with 3.5-kilobase nucleotides was present in the brain. H1 receptor mRNA was most abundant in the placenta. The human H1 receptor gene was mapped to the chromosome 3p25 by the fluorescence in situ hybridization method.

Amino Acid Sequence↗

The mechanism for the increased supply of phosphatidylcholine for the proliferation of biological membranes by clofibric acid, a peroxisome proliferator.

The metabolic changes induced by p-chlorophenoxyisobutyric acid (clofibric acid), a peroxisome proliferator, in hepatic glycerolipids for the supply of membrane phospholipids were studied. The administration of clofibric acid to rats caused hepatomegaly and an increase in hepatic contents of phosphatidylcholine (PtdCho) (1.13-fold on the basis of g liver and 1.50-fold on the basis of whole liver). The administration of the drug enhanced the formation in vivo of PtdCho from [3H]glycerol, which seemed to be due to the increase in activity of CTP:phosphocholine cytidylyltransferase. On the other hand, clofibric acid depressed the activity of phosphatidylethanolamine N-methyltransferase. The in vivo study using [3H]glycerol revealed that clofibric acid slightly reduced the secretion of PtdCho into circulation. On the other hand, the drug did not affect the turnover of PtdCho. These results may elucidate the metabolic alterations by which clofibric acid increases hepatic mass of PtdCho. The facilitated biosynthesis of PtdCho by the drug seemed to lead to the increased formation of phosphatidylserine and subsequently phosphatidylethanolamine. Physiological significance of the alterations in glycerolipid metabolism by clofibric acid was discussed in relation to biological action of the drug.

Animals↗

Modulation by dietary oils and clofibric acid of arachidonic acid content in phosphatidylcholine in liver and kidney of rat: effects on prostaglandin formation in kidney.

The manipulation of 20:4(n - 6) contents in phosphatidylcholine of liver and kidney of rats by dietary oils and p-chlorophenoxyisobutyric acid (clofibric acid) as well as the effects on the formation of prostaglandin E2 in kidney were studied. Three groups of rats were fed diets that contained either safflower oil (SO) or perilla oil (PO) or fish oil (FO) for 1 week. Each dietary group was divided into two groups. One group continued the same diet for another 1 week; the second group continued the same diet and received subcutaneous injections of clofibric acid once a day for 1 week. The content of 20:4(n - 6) in hepatic phosphatidylcholine was markedly lowered by feeding either FO or PO and was further decreased by the administration of clofibric acid. Feeding either FO or PO lowered the content of 20:4(n - 6) in hepatic phosphatidylethanolamine, whereas clofibric acid increased it. The decrease in the level of 20:4(n - 6) in serum phospholipid was produced by feeding either FO or PO and by the administration of clofibric acid as well. There was a high correlation for the levels of 20:4(n - 6) between hepatic phosphatidylcholine and serum phospholipid. The changes brought about by dietary oils and clofibric acid in renal phosphatidylcholine was similar to those observed in liver. The content of 20:4(n - 6) in renal phosphatidylcholine was highly correlated with the level of 20:4(n - 6) in serum phospholipid. Other phospholipids in kidney responded less sensitively to the manipulation by dietary oils and clofibric acid. These results suggest that the level of 20:4(n - 6) in renal phosphatidylcholine is regulated by the level of 20:4(n - 6) in hepatic phosphatidylcholine through the changes in serum level of 20:4(n - 6). Formation of prostaglandin E2 in kidney slices was dependent on the content of 20:4(n - 6) in renal phosphatidylcholine.

Animals↗

Tissue distribution of histamine N-methyltransferase-like immunoreactivity in rodents.

The rat kidney histamine N-methyltransferase was purified to homogeneity from Escherichia coli transfected with its recombinant cDNA. An antiserum to the enzyme was raised in rabbit by immunization with the purified protein. Western blot analysis of rat tissues with the antiserum revealed a band with identical mobility to that of purified enzyme in the extracts of kidney, jejunum, and brain, where the enzyme activity was detected. The antiserum cross-reacted with a 32K protein in mouse liver, brain, stomach, kidney and lung, and a 33K protein in guinea pig brain, stomach jejunum, spleen, lung, and kidney. The intensity of the staining in western blotting correlated well with the enzyme activity in all the tissues in these three species, suggesting that our antiserum is useful for quantifying histamine N-methyltransferase protein in rodent tissues.

Animals↗

Expression and characterization of the bovine histamine H1 receptor in cDNA-transfected C6 astroglioma cells.

Rat C6 astroglioma cells (C6-bH1R cells) expressing cloned bovine histamine H1 receptors were established by transfection with a vector (pEF-BOS-bH1R) which carried a 2.7-kbp EcoRI fragment of the bovine H1 receptor cDNA [Yamashita, M. et al. (1991) Proc. Natl. Acad. Sci. USA 88, 11515-11519]. The cloned bovine H1 receptor in C6-bH1R cells was characterized by three established criteria: the [3H]mepyramine binding assay, the accumulation of inositol phosphates induced by histamine, and histamine-induced elevation of intracellular Ca2+ concentration ([Ca2+]i). The accumulation of inositol phosphates induced by histamine was time- and dose-dependent. The accumulation of inositol trisphosphate was biphasic with a prompt increase to the maximal level, followed by a sustained submaximal level. The histamine-induced accumulation of inositol phosphates was suppressed by phorbol ester, but not by pertussis toxin. Results from the [3H]-mepyramine binding assay and histamine-induced elevation of [Ca2+]i were characteristic of H1 receptors. Several compounds among tricyclic antidepressants, neuroleptics, and serotonin antagonists showed affinities to the cloned bovine H1 receptor with Ki values similar to reported values. Histamine neither induced cAMP accumulation nor attenuated forskolin-induced cAMP accumulation in C6-bH1R cells. C6-bH1R cells are particularly useful for studying the H1 receptor-mediated astroglial cell functions.

Animals↗

Purification and characterization of diamine oxidase (histaminase) from rat small intestine.

Diamine oxidase (DAO) was purified to homogeneity from rat small intestine, and its biochemical and immunochemical properties were studied. DAO was suggested to be a dimer of a 92 kDa subunit, and its isoelectric point was found to be 6.0. Histamine, putrescine, N tau-methylhistamine, and cadaverine were good substrates, with Km values ranging from 9.4 to 16.0 microM. Spermine and spermidine were not substrates. Both an immunoprecipitation study and Ouchterlony's double diffusion test involving antiserum against the purified DAO showed that the immunological properties of the DAOs from rat small intestine, thymus, and placenta were identical. Among small intestinal DAOs from different species, this antibody reacted to the guinea pig enzyme as strongly as to the rat enzyme, but the reaction was much weaker to the mouse enzyme than to the rat enzyme. The DAOs from rabbit and dog small intestine, pig kidney, and human placenta showed no reactivity toward this antibody.

Amine Oxidase (Copper-Containing)↗

A comparison of drug transport through cultured monolayers of bovine brain capillary and bovine aortic endothelial cells.

To examine how efficient primary cultured brain capillary endothelial cells are as an in vitro blood-brain barrier (BBB) system with regard to drug transport, we compared bovine brain capillary endothelial cells (BBCEC) with bovine aortic endothelial cells (BAEC). Paracellular and transcellular transport were examined. [14C]Sucrose and fluorescein isothiocyanate-dextran (FITC-dextran)(average molecular weight about 4400 and 71200) were used as indices of paracellular transport. The permeability coefficients of [14C]sucrose and FITC-dextran through BBCEC monolayers were about 3 and 30-40 fold lower than those through BAEC monolayers, respectively. Transcellular transport was examined by means of [3H]leucine and [3H]alanine uptake studies. The Km value (Michaelis constant) of the amino acid uptake was lower in BBCEC than in BAEC. BBCEC had higher alkaline phosphatase (ALP) and gamma-glutamyl transpeptidase (gamma-GTP) activity than BAEC when cultured in vitro. These results suggest that BBCEC are suitable for drug transport studies across the BBB in vitro.

Alanine↗