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T Hama

Publications and source records attributed to T Hama.

At least 55 records · Page 3Linked to original sources

Protein kinase C and Ca2+/calmodulin-dependent protein kinase II phosphorylate a novel 58-kDa protein in synaptic vesicles.

A monoclonal antibody was made using the spleen cells of a mouse immunized with chick synaptic membranes and designated as mAb 1D12. It immunoprecipitated 25% of the omega-conotoxin binding protein but no dihydropyridine binding protein solubilized from chick brain membranes. By immunoblotting, a polypeptide of 58-kDa was identified as the antigen of this antibody in chick, rat, rabbit and guinea pig brain. Immunohistochemical observation indicated the immunoreactivity of mAb 1D12 to be localized in the synaptic regions of central and peripheral neurons. In peripheral organs, there was additional staining in the distal portions of nerve fibers. Immunoelectron microscopy showed immunoreactivity to be located in synaptic vesicle and presynaptic plasma membranes. In the subcellular fractionation of rat brain, 58-kDa protein was recovered in the fractions of synaptic vesicles and plasma membranes but not soluble proteins. This protein could be extracted from membranes by Triton X-100 but treatment with EDTA, acid, base or high salt failed to have such effect. Solubilized 58-kDa protein of rat brain was purified by immunoaffinity chromatography using mAb 1D12. Both protein kinase C and Ca2+/calmodulin-dependent protein kinase II (CaM kinase II) phosphorylated purified 58-kDa protein, and maxima of 0.47 and 0.94 mol of phosphates, respectively, were incorporated per mol of 58-kDa protein. 58-kDa protein was not phosphorylated by either cAMP-dependent or cGMP-dependent protein kinase. When present in membranes, it was also phosphorylated by protein kinase C and CaM kinase II. Possible involvement of 58-kDa protein in the protein kinase C and CaM kinase II-mediated regulation of synaptic transmission in central and peripheral neurons is discussed.

Animals↗

Interleukin-6 improves the survival of mesencephalic catecholaminergic and septal cholinergic neurons from postnatal, two-week-old rats in cultures.

Interleukin-6 (human recombinant) supported the survival of cultured mesencephalic, catecholaminergic and septal cholinergic neurons from postnatal, two-week-old (P13-P15) rats. Significantly, more catecholaminergic neurons, stained by monoclonal anti-tyrosine hydroxylase antibody, were found in cultures supplemented with interleukin-6 at a concentration of 5 ng/ml than in cultures not treated with interleukin-6. The optimal dose used was 50 ng/ml. The survival effect of interleukin-6 on postnatal rat, tyrosine hydroxylase-positive neurons was observed both in cultures using serum-containing and serum-free medium. Contents of dopamine and noradrenaline in cultures with interleukin-6 were also larger than in control cultures. Interleukin-6 also increased the survival of cultured embryonic (E17) rat midbrain tyrosine hydroxylase-positive neurons. The effect on these neurons was, however, smaller, and the optimal dose of interleukin-6 was nearly 5 ng/ml. Interleukin-6 also supported the survival of cultured postnatal (P13) rat septal cholinergic neurons, visualized by acetylcholinesterase staining. The concomitant addition of mouse nerve growth factor (100 ng/ml) and interleukin-6 (50 ng/ml) had a synergetic effect on the survival of acetylcholinesterase-positive neurons in culture. Our data suggest that the survival of cultured tyrosine hydroxylase-positive, mesencephalic, and acetylcholinesterase-positive, septal neurons from postnatal two-week-old rats was supported by interleukin-6, just as there was a different dose dependency of interleukin-6 on the cultured postnatal neurons compared with embryonic neurons.

Animals↗

Studies on egg zona pellucida-binding molecule (ligand) of mouse sperm. I. Sperm maturation and zona-binding ability.

The epididymis has three major regions; the caput, corpus and cauda. Sperm were obtained from each region, and their binding ability to egg zona pellucida was assayed. In the case of intact sperm: cauda sperm bound in high number, corpus sperm bound at an intermediate level (an average of 30% of cauda sperm binding level), and caput sperm bound rarely (1% of cauda sperm binding level). In the case of sperm immobilized by pretreatment with LaCl3, when eggs and sperm were shaken in order to allow them to come into collision with each other, the caput and corpus sperm were able to bind to zona pellucida as well as the caudal sperm could. These results suggest that the difference in binding efficiency of the native caput and corpus sperm to bind to the zona pellucida was not due to a defect in a ligand molecule on the plasma membrane but rather to their lack of motility. When a sperm-egg binding assay was done in the presence of a binding inhibitor of caudal sperm, the binding of caudal sperm was significantly inhibited by fetuin or N-acetylgalactosamine, but the binding of caput and corpus sperm was only slightly inhibited by them. We prepared a plasma membrane fraction from each epididymal sperm, and solubilized it with sodium dodecyl sulfate (SDS). Each SDS-solubilizable fraction inhibited the binding of corresponding epididymal sperm to egg zona pellucida but didn't inhibit the binding of sperm from different regions of epididymis. These results suggested that a ligand molecule of caudal sperm was different from that of caput and corpus sperm.

Animals↗

Studies on mouse sperm binding molecule (ligand) to egg zona pellucida. II. Purification of ligand molecule from cauda epididymal sperm.

One of the ligand molecules was purified from mouse cauda epididymal sperm for an indication of its inhibitory activity in sperm-egg binding. It was isolated in an electrophoretically homogeneous form by ionophore A23187 treatment of sperm, sedimentation by ultracentrifugation, solubilization by 2% Nonidet P-40 (NP-40), repeated ion exchange chromatography on DEAE-Sepharose CL-6B and gel filtration on Sephacryl S-200. The purified ligand exhibited a molecular mass of 60,000 dalton by gel filtration and 67,000 dalton by sodium dodecyl sulfate polyacrylamide-gel electrophoresis (SDS-PAGE). This molecule was radioiodinated by the lactoperoxidase method and assayed the binding ability to egg zona pellucida. The labeled ligand specifically bound to both cumulus-free egg zona pellucida and isolated-zona pellucida of unfertilized egg in a similar extent, but didn't bind to 2-cell egg zona pellucida. The maximal binding site of ligand per egg zona pellucida was estimated about 660000 molecules by Scatchard plot analysis.

Animals↗

Studies on mouse sperm lectin; the existence and the participation in sperm-egg binding.

Mouse sperm bound to egg zona pellucida and attached to unfixed rabbit erythrocytes specifically, but not to fixed-erythrocytes. When mouse sperm were treated with ionophore A23187, the sperm lost both the binding ability to the zona pellucida and the attachment ability to rabbit erythrocytes. The membrane vesicles released from A23187-treated sperm agglutinated rabbit unfixed erythrocytes. Sperm binding to egg zona pellucida was also inhibited by the membrane vesicles. The inhibition spectrum of a hemagglutination and of an inhibitory activity of sperm-egg binding by various carbohydrates was studied. The hemagglutination was inhibited by N-acetyl-glucosamine, N-acetylgalactosamine and glyco-proteins, such as fetuin and orosomucoid, but not by N-acetylneuraminic acid (NeuNAc) in saccharides and asialo-transferrin in glycoproteins. On the other hand, the sperm-egg binding was inhibited most effectively by NeuNAc and also by asialo-transferrin. The inhibition spectrum of hemagglutination and sperm-egg binding didn't agree with each other. These results suggest that a lectin-like molecule is expressed on mouse sperm surface but is not directly concerned in sperm-egg binding.

Animals↗

[Effects of levocarnitine chloride, a new mitochondrial function reactivating agent, on fatty acid and glucose oxidation under hypoxic condition in homogenates from rat heart].

The effects of levocarnitine chloride [LC-80, (-)-(R)-(3-carboxy-2-hydroxypropyl)-trimethylammonium chloride] on the oxidation of [U-14C]palmitate, [U-14C]glucose and [2-3H]glucose under hypoxic conditions in homogenates from the rat heart were investigated. LC-80 at concentrations of 0.5 and 1.0 mM caused significant and concentration-dependent increases in the depressed 14CO2 production from [U-14C]palmitate or [U-14C]-glucose oxidation under hypoxia up to 50 min after the addition of LC-80. In contrast, a marked increase in 3H2O production from [2-3H]glucose oxidation under hypoxia was observed, and LC-80 at concentrations of 0.5 and 1.0 mM caused further significant and concentration-dependent enhancement of 3H2O production up to 50 min after the addition of LC-80. Moreover, LC-80 at a concentrations of 1.0 mM significantly restored the marked depression of pyruvate dehydrogenase complex activity and mitochondrial respiratory function under hypoxia. These results suggested that LC-80 has an improving effect on myocardial metabolism under ischemia by enhancing fatty acid and glucose metabolisms.

Animals↗

Purification and properties of dipeptidyl peptidase IV from human urine.

Dipeptidyl peptidase IV (DPP-IV) (EC 3.4.14.5) has been purified from normal human urine using immunoaffinity chromatography. The purified enzyme was homogeneous as judged by polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate. The molecular mass of urinary DPP-IV was estimated to be 280 kDa by gel filtration. The Km value for the hydrolysis of (Gly-L-Pro)-4-methylcoumaryl-7-amide tosylate was calculated to be 1.25 +/- 0.25 X 10(-4) M; the pH optimum and pI were 8.7 and 6.5, respectively. These properties were the same as those of renal DPP-IV. Both renal and this urinary DPP-IV were inhibited by diisopropylfluorophosphate and activated by phospholipid. From these results we suppose that urinary DPP-IV may be derived from the kidney rather than from the blood

Adult↗

Interleukin-6 as a neurotrophic factor for promoting the survival of cultured basal forebrain cholinergic neurons from postnatal rats.

Human recombinant interleukin-6 (IL-6, B-cell stimulating factor-2) was capable of supporting neuronal survival in cholinergic neuron culture, prepared from 10-day-old rat brain septal region. Cell survival of the cultured cholinergic neurons was estimated by measuring the remaining choline acetyltransferase (ChAT) activities after 6 days of culture. IL-6 at a concentration of 5 ng/ml maintained a more than 3-fold higher ChAT activity in the culture as compared with that in cultures without IL-6. The maximal dose of IL-6 was near 50 ng/ml. The concomitant addition of mouse nerve growth factor (NGF) and IL-6, both at maximal doses, had a synergistic effect on cholinergic cell survival. These results indicate that IL-6 can act as a neurotrophic agent, independent of the action of NGF, supporting neuronal survival of cultured postnatal rat septal cholinergic neurons. On the other hand, IL-6 did not affect the differentiation of the cultured embryonic rat septal cholinergic neurons, differently from the differentiation action by NGF.

Animals↗

Identification of Nsp100 as elongation factor 2 (EF-2).

The nerve growth factor-sensitive phosphoprotein from PC12 cells, previously designated Nsp100, has been shown to be elongation factor 2 (EF-2). The criteria used for this identification include: (i) similarity of N-terminal sequence; (ii) phosphorylation by the same kinase; (iii) ADP-ribosylation mediated by diphtheria toxin; (iv) comparable function in cell-free protein synthesis. According to these criteria, Nsp100 and EF-2 are identical and the kinase that phosphorylates Nsp100 in PC12 cells is calcium/calmodulin kinase III.

Adenosine Diphosphate Ribose↗

Flow cytometric analysis of mouse sperm using monoclonal anti-sperm antibody OBF13.

The variable reactivity of OBF13 monoclonal antibody to mouse sperm was studied using a fluorescein activated cell sorter. Sperm from cauda epididymis were incubated with ionophore A23187, subjected to indirect immunostaining and analyzed by a cell sorter. Three peaks showing different fluorescence intensities were observed. These peaks contained (i) not stained (N), (ii) acrosomal cap or anterior region stained (A) and (iii) head stained (H) sperm, respectively. H type sperm showed more intense integral fluorescence than A type sperm. It was also noted that the H type were observed when cauda epididymal sperm were incubated with A23187, but not among non-incubated, or A23187 treated caput epididymal sperm. When sperm were pre-categorized as "dead" or "alive" by propidium iodide staining, no A type were observed in the "live" population. These results suggest that the sperm exhibiting the OBF13 antigen in the acrosome region lost their viability before they accomplished a "true" acrosome reaction.

Acrosome↗

K-252a: a specific inhibitor of the action of nerve growth factor on PC 12 cells.

K-252a, a kinase inhibitor isolated from the culture broth of Nocardiopsis sp., selectively inhibits the actions of nerve growth factor (NGF) on PC 12 cells. At a concentration of 200 nM, K-252a prevents neurite generation initiated by NGF, but not neurite generation produced by fibroblast growth factor or outgrowth produced by dibutyryl cAMP. K-252a also inhibits the induction of ornithine decarboxylase by NGF, but stimulates ornithine decarboxylase induction by epidermal growth factor. Stimulation of phosphatidylinositol breakdown by NGF was similarly inhibited by K-252a, while stimulation by epidermal growth factor was enhanced. The NGF-induced decrease in the phosphorylation of a soluble protein, Nsp 100, was prevented by K-252a. K-252a blocks the NGF-induced heterodown-regulation of the epidermal growth factor receptor, but not the epidermal growth factor-induced homodown-regulation of the epidermal growth factor receptor. K-252a, then, provides a new tool for the dissection and study of NGF-requiring processes.

Adrenal Gland Neoplasms↗

Effects of extraneuronal uptake inhibitors on the positive chronotropic response to isoprenaline and on the accumulation of isoprenaline in perfused rat heart after inhibition of catechol-O-methyl transferase.

Experiments were carried out in isolated perfused rat hearts. The presence of tropolone (100 mumol/l), an inhibitor of catechol-O-methyl transferase (COMT), significantly potentiated the positive chronotropic response to isoprenaline (0.1, 1, 3 and 10 nmol/l). Two uptake2 inhibitors, 3-O-methylisoprenaline (100 mumol/l) and normetanephrine (100 mumol/l), induced a positive chronotropic response, but corticosterone (100 mumol/l) and hydrocortisone (100 mumol/l) had no such effect. 3-O-methylisoprenaline (100 mumol/l) and normetanephrine (100 mumol/l) enhanced the positive chronotropic response to isoprenaline (0.1, 1, 3 and 10 nmol/l). Corticosterone (100 mumol/l) potentiated the positive chronotropic response to isoprenaline (0.1 and 1 nmol/l). Hydrocortisone (30 mumol/l) enhanced the response to 0.1 nmol/l isoprenaline but did not affect the positive chronotropic responses to 1, 3 or 10 nmol/l isoprenaline. The addition of uptake2 inhibitors (3-O-methylisoprenaline, 100 mumol/l; normetanephrine, 100 mumol/l; corticosterone, 100 mumol/l) to the perfusion medium significantly reduced the positive chronotropic response to the perfusion with isoprenaline (3 nmol/l) and tropolone (100 mumol/l). The accumulation of 3H-isoprenaline in the heart perfused with 3H-isoprenaline (1, 10 and 100 nmol/l) was significantly increased by the presence of tropolone (100 mumol/l): the accumulation for 1, 10 and 100 nmol/l of 3H-isoprenaline was 5.07, 47.0 and 500 pmol/g, respectively. The high accumulation observed during perfusion with 3H-isoprenaline (3 nmol/l) and tropolone (100 mumol/l) was significantly decreased by the addition of an uptake2 inhibitor, 3-O-methylisoprenaline (100 mumol/l), normetanephrine (100 mumol/l) or corticosterone (100 mumol/l), but not by hydrocortisone (30 mumol/l).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Involvement of inflammatory leukocytes in hepatic induction of T-kininogen in rat.

Hepatic synthesis as well as plasma levels of T-kininogen, a protein precursor of T-kinin (Ile-Ser-bradykinin), increase in rats following the induction of acute inflammation. Studies have been undertaken to elucidate an involvement of inflammatory leukocytes in the acute-phase response of T-kininogen. Peritoneal exudate cells (PEC) were prepared from rats six days after the intraperitoneal injection of Freund's complete adjuvant. By transfer of these leukocytes into the peritoneal cavity of normal rats, plasma kininogen levels of these recipients increased about threefold after one day. Secretion of kininogen from rat hepatocytes in primary culture was enhanced about twofold by coculturing with PEC. A similar effect was also obtained by adding culture supernatant of these leukocytes into hepatocytes, and the increased levels of kininogen in culture medium of hepatocytes was due to the increased levels of T-kininogen. From these results, it was concluded that leukocytes in the inflammatory site, probably macrophages, release some substance(s) which stimulate(s) the hepatic synthesis of T-kininogen.

Acute Disease↗

Protein kinase C as a component of a nerve growth factor-sensitive phosphorylation system in PC12 cells.

The treatment of PC12 cells with either nerve growth factor or phorbol 12-myristate 13-acetate caused a decrease in the phosphorylation of a soluble 100-kDa protein (Nsp100). After treatment with nerve growth factor, the activity of Ca2+/phospholipid-dependent protein kinase (protein kinase C) in the cytosol was increased. When the cytosol from untreated PC12 cells was preincubated with purified protein kinase C and its cofactors, the phosphorylation of Nsp100 was decreased. The preincubation of cytosol from nerve growth factor-treated PC12 cells with protein kinase C did not decrease Nsp100 phosphorylation further. Moreover, preincubation of partially purified Nsp100 kinase with protein kinase C decreased its ability to phosphorylate Nsp100. These results suggest that the binding of nerve growth factor to its receptor on PC12 cells causes an increase in the activity of protein kinase C in the cytosol and phosphorylation of Nsp100 kinase, which in turn lowers its ability to phosphorylate Nsp100.

Animals↗