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Biomedical subjects

H Horiuchi

Publications and source records attributed to H Horiuchi.

At least 19 recordsLinked to original sources

A possible target protein for smg-25A/rab3A small GTP-binding protein.

The smg-25A/rab3A protein (smg p25A) is a small GTP-binding protein implicated in intracellular vesicle traffic, particularly in neurotransmitter release from the presynapse. In the present study, we attempted to identify a target protein in bovine brain crude membranes that might be interacted with the GTP-bound form of smg p25A. When the guanosine-5'-(3-O-thio)triphosphate (GTP gamma S)-bound form of radioiodinated smg p25A and the crude membrane fraction of bovine brain were incubated with a cross-linker, disuccinimidyl suberate, and the sample was subjected to sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) followed by autoradiography, one radioactive band with a M(r) of about 110,000 was detected. This radioactive band appeared to be composed of radioiodinated smg p25A and a molecule with a M(r) of about 86,000. This molecule, tentatively termed here smg p25A target, was extracted from the membranes by a detergent and highly purified by column chromatographies and sucrose density gradient ultracentrifugation. The purified smg p25A target was sensitive to heat boiling and tryptic digestion, indicating that smg p25A target is a protein molecule. The M(r) of the purified smg p25A target was estimated to be about 85,000-86,000 from SDS-PAGE and to be about 100,000 from the S value. The cross-linking of radioiodinated smg p25A with the purified smg p25A target was inhibited by the GTP gamma S-bound form of non-radioactive smg p25A with an IC50 of about 8 nM. The GDP-bound form of smg p25A was much less effective. Other small GTP-binding proteins, such as c-Ki-ras p21, rhoA p21, smg p21B, and rab11 p24 were ineffective. These results indicate that a protein with a M(r) of about 85,000-100,000 is a target for smg p25A.

Animals

Histochemical study on the maturation of human megakaryocytes using microfluorometry.

A microcytofluorometrical DNA measurement was basically studied and was applied to single megakaryocytes previously identified on a Wright-Giemsa stained smear. The smear was first photographed and the location of each megakaryocyte was recorded on a cell map. The smear was then bleached with 50% acid ethanol and absolute methanol, and re-stained with 4',6-diamidino-2-phenylindole (DAPI) reagent (pH 7.4) at 4 degrees C. Nuclear blue fluorescence was observed and the intensity of this fluorescence was proportional to the amount of DNA with the coefficient of variation (CV) of 3.6% when stained for 30 min. After 30 min DAPI staining, the DNA measurement was microcytofluorometrically performed in single megakaryocytes which had been morphologically classified into 4 groups on the basis of cytoplasmic maturation, Bessis' classification, assessed on Wright-Giemsa-stained bone-marrow smears from normal human beings. The histograms of the cells did not show any difference in DNA ploidy distribution among the classes: that is, the DNA histograms disclosed ploidy distribution from 4 N to 64 N with the largest population of 16 N. These findings suggest that nuclear DNA synthesis is completed before platelet production starts. This method is useful for comparing the morphological features and DNA content of single megakaryocytes.

Bone Marrow Cells

Immunohistochemical study on the distribution of sarcoplasmic reticulum calcium ATPase in various human tissues using novel monoclonal antibodies.

Novel monoclonal antibodies were raised against sarcoplasmic reticulum calcium (Ca2+)-ATPase of human skeletal muscle. Immunohistochemical analysis demonstrated that these antibodies, designated 6F5 and 7F10, bind Ca(2+)-ATPase of non-muscle tissue of the adult including parathyroid, islets of Langerhans, anterior lobe of the pituitary gland and photoreceptor cells of the retina as well as skeletal muscle. A positive reaction was also found for fetal tissues including skeletal muscle, heart, chondrocytes and peripheral nerves. Our results for distribution suggest that Ca(2+)-ATPase is strongly expressed in the tissues and cells in which signal transduction is actively carried out by Ca2+ release from the cytoplasmic Ca2+ pool.

Antibodies, Monoclonal

Evidence that three histidine residues of a base non-specific and adenylic acid preferential ribonuclease from Rhizopus niveus are involved in the catalytic function.

In order to study the structure-function relationship of an RNase T2 family enzyme, RNase Rh, from Rhizopus niveus, we investigated the roles of three histidine residues by means of site-specific mutagenesis. One of the three histidine residues of RNase RNAP Rh produced in Saccharomyces cerevisiae by recombinant DNA technology was substituted to a phenylalanine or alanine residue. A Phe or Ala mutant enzyme at His46 or His109 showed less than 0.03%, but a mutant enzyme at His104 showed 0.54% of the enzymatic activity of the wild-type enzyme with RNA as a substrate. Similar results were obtained, when ApU was used as a substrate. The binding constant of a Phe mutant enzyme at His46 or His109 towards 2'-AMP decreased twofold, but that at His104 decreased more markedly. Therefore, we assumed that these three histidine residues are components of the active site of RNase Rh, that His104 contributes to some extent to the binding and less to the catalysis, and that the other two histidine residues and one carboxyl group not yet identified are probably involved in the catalysis. We assigned the C-2 proton resonances of His46, His104, and His109 by comparison of the 1H-NMR spectra of the three mutant enzymes containing Phe in place of His with that of the native enzyme, and also determined the individual pKa values for His46 and His104 to be 6.70 and 5.94. His109 was not titrated in a regular way, but the apparent pKa value was estimated to be around 6.3. The fact that addition of 2'-AMP caused a greater effect on the chemical shift of His104 in the 1NMR spectra as compared with those of the other histidine residues, may support the idea described above on the role of His104.

Adenosine

Purification of two chitinases from Rhizopus oligosporus and isolation and sequencing of the encoding genes.

Two chitinases were purified from Rhizopus oligosporus, a filamentous fungus belonging to the class Zygomycetes, and designated chitinase I and chitinase II. Their N-terminal amino acid sequences were determined, and two synthetic oligonucleotide probes corresponding to these amino acid sequences were synthesized. Southern blot analyses of the total genomic DNA from R. oligosporus with these oligonucleotides as probes indicated that one of the two genes encoding these two chitinases was contained in a 2.9-kb EcoRI fragment and in a 3.6-kb HindIII fragment and that the other one was contained in a 2.9-kb EcoRI fragment and in a 11.5-kb HindIII fragment. Two DNA fragments were isolated from the phage bank of R. oligosporus genomic DNA with the synthetic oligonucleotides as probes. The restriction enzyme analyses of these fragments coincided with the Southern blot analyses described above and the amino acid sequences deduced from their nucleotide sequences contained those identical to the determined N-terminal amino acid sequences of the purified chitinases, indicating that each of these fragments contained a gene encoding chitinase (designated chi 1 and chi 2, encoding chitinase I and II, respectively). The deduced amino acid sequences of these two genes had domain structures similar to that of the published sequence of chitinase of Saccharomyces cerevisiae, except that they had an additional C-terminal domain. Furthermore, there were significant differences between the molecular weights experimentally determined with the two purified enzymes and those deduced from the nucleotide sequences for both genes. Analysis of the N- and C-terminal amino acid sequences of both chitinases and comparison of them with the amino acid sequences deduced from the nucleotide sequences revealed posttranslational processing not only at the N-terminal signal sequences but also at the C-terminal domains. It is concluded that these chitinases are synthesized with pre- and prosequences in addition to the mature enzyme sequences and that the prosequences are located at the C terminal.

Amino Acid Sequence

The posttranslational processing of ras p21 is critical for its stimulation of yeast adenylate cyclase.

Mammalian ras genes substitute for the yeast RAS gene, and their products activate adenylate cyclase in yeast cells, although the direct target protein of mammalian ras p21s remains to be identified. ras p21s undergo posttranslational processing, including prenylation, proteolysis, methylation, and palmitoylation, at their C-terminal regions. We have previously reported that the posttranslational processing of Ki-ras p21 is essential for its interaction with one of its GDP/GTP exchange proteins named smg GDS. In this investigation, we have studied whether the posttranslational processing of Ki- and Ha-ras p21s is critical for their stimulation of yeast adenylate cyclase in a cell-free system. We show that the posttranslationally fully processed Ki- and Ha-ras p21s activate yeast adenylate cyclase far more effectively than do the unprocessed proteins. The previous and present results suggest that the posttranslational processing of ras p21s is important for their interaction not only with smg GDS but also with the target protein.

Adenylyl Cyclases

Identification of fibronectin in chicken thrombocytes.

Cell attachment and spreading of chicken embryo fibroblasts and three mammalian cell lines were promoted by using thrombocyte secretion products (TSP) prepared from chicken thrombocytes which are analogous to mammalian platelets. The cell attachment activity following TSP treatment was interfered with by the addition of a synthetic peptide containing the RGD sequence from the cell attachment region of fibronectin (FN). Cell attachment on TSP-coated plates was inhibited by the addition of anti-chicken FN rabbit antiserum, but not by anti-chicken vitronectin (VN) rabbit antiserum. By immunoblotting, immunofluorescent test and sensitive enzyme linked immunosorbent assay using an anti-chicken FN antiserum, the presence of FN in thrombocytes and the release of FN from the cells were demonstrated. The release of FN from thrombocytes was partially induced by the in vitro cultivation of the cells and was further promoted by treatment of the cells with thrombin.

Amino Acid Sequence

1,25-Dihydroxyvitamin D3 inhibits thromboxane release from activated macrophages.

1,25-Dihydroxyvitamin D3 (1,25-(OH)2D3) in concentrations from 0.1 to 10 nM suppressed immunoreactive thromboxane B2 (iTXB2) release from Propionibacterium acnes (P. acnes)-elicited liver adherent cells stimulated with lipopolysaccharide (LPS, 1 microgram/ml). These suppressive effects of 1,25-(OH)2D3 were also observed in oyster glycogen-elicited peritoneal macrophages. On the contrary, it did not inhibit iTXB2 release from both resident Kupffer cells and peritoneal macrophages stimulated with the same concentration of LPS. Furthermore, 1,24(R)-dihydroxyvitamin D3 (1,24(R)-(OH)2D3), a vitamin D3 analogue, also inhibited iTXB2 release from liver adherent cells, but, another synthesized vitamin D3 analogue, 1 alpha-hydroxyvitamin D3 (1 alpha-OH-D3) tended to decrease iTXB2 release only at higher concentrations. These results suggest that active vitamin D3 analogues inhibit iTXB2 release from activated macrophages.

Animals

[The relationship between ploidy and morphological classification of human megakaryocytes].

The relation between polyploidy and morphological classification of human megakaryocytes was studied in bone marrow aspirates from five normal individuals. On a Wright-Giemsa stained smear, megakaryocytes were morphologically classified into four groups according to a modification of Feinendegen's classification which is considered to reflect megakaryocyte maturation. The DNA of the morphologically classified cell is measured by microcytofluorometry using DAPI (4',6-diamidino-2-phenylindole) staining after removing the Wright-Giemsa stain. Most of the normal megakaryocytes were classified into type III (mature megakaryocytes) and the maximum peak in population of the megakaryocyte ploidy was observed at 16N. In each individual, the ploidy showed a similar pattern regardless of the classification. These findings suggest that the development of ploidy depends on a factor different from the one that determined the megakaryocyte maturation of cytoplasm and the ploidy is determined at the level of a megakaryocyte precursor or the most juvenile megakaryocyte.

Adolescent

A novel prenyltransferase for a small GTP-binding protein having a C-terminal Cys-Ala-Cys structure.

smg p25A/rab3A p25 is a member of the small GTP-binding protein superfamily which is implicated in intracellular vesicle transport. smg p25A has a cDNA-predicted C-terminal structure of Cys-Ala-Cys. The protein purified from bovine brain membranes is geranylgeranylated at both the two cysteine residues and carboxyl-methylated at the C-terminal cysteine residue. Two types of prenyltransferase for small GTP-binding proteins have thus far been reported: ras p21 farnesyltransferase (ras p21 FT) and rhoA p21 geranylgeranyltransferase (rhoA p21 GGT). Neither of them geranylgeranylated smg p25A having a C-terminal Cys-Ala-Cys structure. In this paper, a smg p25A GGT was partially purified from bovine brain cytosol and separated from the ras p21 FT and rhoA p21 GGT by column chromatographies. smg p25A GGT transferred the geranylgeranyl moiety from geranylgeranyl pyrophosphate to both the two cysteine residues in the C-terminal Cys-Ala-Cys structure of smg p25A. smg p25A GGT did not use farnesyl pyrophosphate as a substrate and was also inactive on c-Ha-ras p21 and rhoA p21 with either farnesyl pyrophosphate or geranylgeranyl pyrophosphate as a substrate. These results indicate that there are at least three types of prenyltransferase for small GTP-binding proteins in mammalian tissues.

Amino Acid Sequence

The posttranslationally modified C-terminal structure of bovine aortic smooth muscle rhoA p21.

rhoA p21, a ras p21-like small GTP-binding protein, has the same C-terminal consensus motif of Cys-A-A-X (A is an aliphatic amino acid and X is any amino acid) as ras p21s, which is posttranslationally processed. We here determine the posttranslationally processed C-terminal structure of the rhoA p21 purified from bovine aortic smooth muscle. Incubation of rhoA p21-expressing insect cells with exogenous [3H]mevalonolactone caused the labeling of rhoA p21, suggesting that rhoA p21 is prenylated. Consistently, Raney nickel treatment of rhoA p21 released a geranylgeranyl moiety as estimated by gas chromatography/mass spectrometry. No lipid moiety was released by KOH or NH2OH treatment. Extensive digestion of rhoA p21 with Achromobacter protease I yielded a C-terminal peptide, Ser-Gly-Cys190, that lacked the three C-terminal amino acids predicted from the cDNA but was geranylgeranylated and carboxyl methylated at the cysteine residue. Bovine brain cytosol geranylgeranylated the bacterial rhoA p21 having the three C-terminal amino acids predicted from the cDNA but not the protein lacking the three C-terminal amino acids. Bovine brain membranes methylated the synthetic C-terminal peptide with 10 amino acids of rhoA p21 which was geranylgeranylated at its C-terminal cysteine residue but not the peptide which was not geranylgeranylated. These results suggest that rhoA p21 is first geranylgeranylated followed by removal of the three C-terminal amino acids and the subsequent carboxyl methylation of the exposed cysteine residue.

Alcaligenes

A geranylgeranyltransferase for rhoA p21 distinct from the farnesyltransferase for ras p21S.

We have clarified that rhoA p21 purified from bovine aortic smooth muscle is geranylgeranylated at the cysteine residue in the C-terminal CAAX motif (A is an aliphatic amino acid and X is any amino acid). In this paper, a geranylgeranyltransferase for rhoA p21 (rhoA p21 GGT) was partially purified from bovine brain cytosol. This enzyme transferred a geranylgeranyl moiety from geranylgeranyl pyrophosphate to rhoA p21 having the CAAX motif (rhoA p21-CAAX) but not to rhoA p21 lacking the AAX portion. rhoA p21 GGT was separated from the previously reported farnesyltransferase for ras p21s (ras p21 FT) by column chromatographies and did not geranylgeranylate or farnesylate c-Ha-ras p21-CAAX. ras p21 FT did not geranylgeranylate or farnesylate rhoA p21-CAAX. These results indicate that rhoA p21 GGT distinct from ras p21 FT is present in bovine brain cytosol.

Alkyl and Aryl Transferases

Protective effect of vitamin D3 analogues on endotoxin shock in mice.

The effect of vitamin D3 analogues on endotoxin shock in mice was investigated. Male ICR mice were orally administered vitamin D3 analogues or vehicle, accompanied by an intraperitoneal injection of endotoxin (E. Coli lipopolysaccharide, LPS, 20 mg/kg). Endotoxin caused a decrease in survival rate in a time-dependent manner. Increases in plasma immunoreactive (i) eicosanoid and hepatic malondialdehyde (MDA) levels were also observed. Administration of 1 alpha-hydroxyvitamin D3 (1 alpha-OH-D3) improved the survival rate 24 to 48 h after endotoxin treatment. The effects were markedly observed at a dose of 20 ng/kg. In addition, 1 alpha-OH-D3 restored the plasma iTXB2 and hepatic MDA levels 8 h after endotoxin injection. However, it did not affect plasma iPGE2, i6-keto-PGF1 alpha and blood iLTB4 levels. At a dose of 20 ng/kg, both 1,25-dihydroxyvitamin D3 (1,25-(OH)2D3) and 1,24(R)-dihydroxyvitamin D3 (1,24(R)-(OH)2D3) restored the survival rate, the plasma iTXB2 and hepatic MDA levels. These results suggest that vitamin D3 analogues may inhibit endotoxemia through regulation of the formation of TXA2 and free radicals.

6-Ketoprostaglandin F1 alpha

Restenosis after percutaneous transluminal coronary angioplasty: pathologic observations in 20 patients.

Histopathologic examination was performed in 20 patients undergoing antemortem coronary angioplasty. Thirty-four lesions were dilated and the interval between coronary angioplasty and death ranged from several hours to 4 years. Intimal proliferation of smooth muscle cells, as a major cause of restenosis, was observed in 83% to 100% of 28 lesions examined 11 days to 2 years after coronary angioplasty. In 20 lesions examined within 6 months, proliferating smooth muscle cells were predominantly of the synthetic type and there was abundant extracellular matrix substance chiefly composed of proteoglycans. In eight lesions examined between 6 months and 2 years, contractile type smooth muscle cells were dominant and extracellular matrix was composed chiefly of collagen. In three lesions examined after 2 years, evidence of antemortem coronary angioplasty was hardly identifiable and these lesions were almost indistinguishable from conventional atherosclerotic plaque. These temporal changes in histologic pattern provide a pathologic background for clinical reports that restenosis is predominantly found within 6 months after coronary angioplasty. Morphometric analysis revealed that the extent of intimal proliferation was significantly greater in lesions with evidence of medial or adventitial tears than in lesions with no or only intimal tears.

Aged

Ca2+ channel blocking effects of hirsutine, an indole alkaloid from Uncaria genus, in the isolated rat aorta.

Ca2+ channel blocking activity of hirsutine and its pharmacological features were studied. Hirsutine (10(-6) to 3 x 10(-5) M) produced a dose-dependent relaxation of the isolated rat aorta contracted by norepinephrine and high K+ concentration. This effect was exhibited in the aorta strips with or without the endothelium, suggesting an involvement of vasodilative mechanisms not dependent on the endothelium. Hirsutine also inhibited the contractions induced by serotonin and Ca2+ channel activator YC-170, but not by Ca2+ ionophore A23187. The pA2 value of hirsutine was 6.6 +/- 0.1 (mean +/- S.E.; n = 4) in antagonizing cumulative dose-response curve for Ca2+ in the depolarized aorta strips. It is concluded that hirsutine apparently exhibits Ca2+ channel blocking activity mainly through inhibition of the voltage-dependent Ca2+ influx.

Alkaloids

Expression of RNase Rh from Rhizopus niveus in yeast and characterization of the secreted proteins.

The full-length cDNA encoding RNase Rh, which is secreted extracellularly by Rhizopus niveus, was isolated and its nucleotide sequence was determined. It was placed under control of the promoter of the glyceraldehyde 3-phosphate dehydrogenase gene of Saccharomyces cerevisiae in a high expression vector in yeast. Since yeast cells transformed by this plasmid poorly secreted RNase into the medium, the plasmid pYE RNAP-Rh was constructed, in which the signal sequence of RNase Rh was replaced by the prepro-sequence of aspartic proteinase-I, one of the extracellular enzymes secreted by R. niveus. Yeast cells harboring pYE RNAP-Rh produced RNase efficiently (ca. 40 micrograms/ml) into the medium. The product was a mixture of six enzymes (RNase RNAP-Rhs) having 3, 5, 9, 13, 14, and 16 additional amino acid residues attached to the amino terminus of the mature RNase Rh. The major product was the RNase with three additional amino acids at the amino terminus. Limited digestion of RNase RNAP-Rhs with staphylococcal V8 protease succeeded in shortening the various lengths of extra amino acid residues attached to the amino terminus of RNase Rh, yielding an RNase that has 3 additional amino acids at the amino terminus. It has been named RNase RNAP-Rh. The RNase RNAP-Rh showed the same specific activity and CD spectra as those of RNase Rh, suggesting that the two have similar conformations to each other around aromatic amino acid residues and the peptide backbone.

Amino Acid Sequence

Shift in the megakaryocyte ploidy in MDS patients: microcytofluorometry with DAPI staining after destaining of Wright-Giemsa stain.

We applied DAPI (4',6-diamidino-2-phenylindole) staining to the determination of nuclear DNA content in single megakaryocytes in 12 normal subjects and 12 patients with myelodysplastic syndrome (MDS). After the megakaryocytes had been identified on Wright-Giemsa stained smear and classified according to modified Feinendegen's classification, they were photographed. Then Wright-Giemsa stain was removed by immersion in 50% ethanol at 37 degrees C for 1 h and 100% methanol at 37 degrees C for 1 h. The specimens were then stained with DAPI solution (DAPI 0.01 mg/ml, pH 7.4 Tris-EDTA-2Na buffer solution and 0.01 M 2-mercaptoethylamine hydrochloride mixed at the ratio of 0.5:98.5:1.0) for more than 30 min. The amount of nuclear DNA in the previously identified megakaryocytes was measured by microcytofluorometry. The maximum population of megakaryocytes ploidy was in 16N in normal subjects, 8N in 10/12 MDS patients, and 4N in the remaining two patients. These findings suggest impairment of the development of the megakaryocytes nucleus in the MDS patients.

Adolescent