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Biomedical subjects

C Tanaka

Publications and source records attributed to C Tanaka.

At least 181 records · Page 10Linked to original sources

Molecular cloning of two additional members of the neural visinin-like Ca(2+)-binding protein gene family.

We have isolated a rat cDNA clone encoding a neural visinin-like Ca(2+)-binding protein (NVP), which we designate NVP-1. To identify additional molecular forms of NVP, a rat brain cDNA library was screened for their presence using an NVP-1 cDNA probe under low-stringency hybridization conditions. Two types of cDNA clones encoding structurally related proteins, designated NVP-2 and NVP-3, have been isolated. The deduced amino acid sequences of NVP-2 and NVP-3 are 89.0% and 68.6% identical to that of NVP-1, respectively, and contain consensus sequences for EF-hand Ca(2+)-binding sites. Northern blot analysis shows that NVP-1, NVP-2, and NVP-3 mRNAs are most highly expressed in brain and are differentially expressed in various regions of rat brain. These results suggest that NVP-2 and NVP-3 are additional members of the NVP gene family.

Amino Acid Sequence↗

GABA modulates neurotransmission in sinus node via stimulation of GABAA receptor.

The neuromodulator role of gamma-aminobutyric acid (GABA) in the sinus node of the guinea pig heart was examined. GABA inhibited the electrical transmural stimulation (ETS)-evoked release of [3H]norepinephrine (NE) from the sinus node. Muscimol mimicked and bicuculline antagonized the inhibitory effect of GABA. However, the ETS-evoked release of [3H]NE was not inhibited by muscimol in the presence of atropine. The ETS-evoked release of [3H]acetylcholine (ACh) from the sinus node was enhanced by muscimol, and this effect was antagonized by bicuculline. As the ETS-evoked release of [3H]ACh was reduced by bicuculline alone, the endogenous GABA released by ETS is probably involved in the release of ACh. We propose that GABA, as a neuromodulator, inhibits activity of the adrenergic neuron due to stimulation of the cholinergic neuron via the GABAA receptor present in the sinus node.

Acetylcholine↗

Synthesis and characterization of 11C-labeled fluoroclorgyline: a monoamine oxidase A specific inhibitor for positron emission tomography.

A new radioligand for monoamine oxidase type A (MAO-A), [11C]fluoroclorgyline, was synthesized from its desmethyl precursor by N-methylation reaction using [11C]methyl iodide with a radiochemical yield of 75-85%. The radiochemical purity of the product was more than 99% and the specific radioactivity was 7.4-18.5 GBq/micromol. The in vivo tissue distribution studies of [11C]fluoroclorgyline in mice demonstrated its high initial uptake and prolonged retention in the brain, comparable to those of [11C]clorgyline. A selective interaction with MAO-A in the accumulation of [11C]fluorclorgyline was confirmed by a competition experiment performed with the MAO-A specific inhibitor,clorgyline, and MAO-B specific inhibitor, l-deprenyl. These very desirable characteristics of [11C]fluoroclorgyline suggested that its 18F labeled counterpart, [18F]fluoroclorgyline, would have great potential as a longer-lived alternative to 11C labeled clorgyline for in vivo studies of MAO-A in the human brain with positron emission tomography (PET).

Animals↗

In vivo profile of myocardial energy metabolism of pressure-overloaded rat.

Cardiac energy metabolism of pressure-overloaded rat hearts was examined under in vivo and in vitro conditions. Two, 4 and 6 weeks after constriction of the abdominal artery, the hemodynamic and metabolic profiles of hearts in vivo and of perfused hearts were determined. Significant increases in left ventricular weight/body weight (30 to 45% increase relative to the sham group), systolic and diastolic blood pressure (22 to 33% increase) and pressure-rate product (31 to 33% increase) were observed 2, 4 and 6 weeks after the operation, and a slight but significant decrease in heart rate was observed at 2 weeks after the operation. Tissue hydroxyproline content increased (17 to 93%) with time after pressure-overload. These findings are indicators of pressure-overloaded cardiac hypertrophy. The total high-energy phosphates of the in vivo rat myocardium under artificial respiration were lower than those of sham-operated rat myocardium 2 (23%) and 4 weeks (21%), but not 6 weeks after aortic constriction. The maximal oxygen consumption rates of mitochondria, when determined in the skinned cardiac fibers, also decreased 2 (47%) and 4 weeks (36%), but reversed 6 weeks after pressure-overload. However, the myocardial ATP, a utilizing form of high-energy phosphate, of pressure-overloaded rat myocardium remained normal at all times after cardiac hypertrophy. This suggests that alterations in hemodynamic variables of in vivo pressure-overloaded rats may not be attributable to a reduction in the myocardial energy production. In the perfused hearts isolated from pressure-overloaded rats, tissue ATP levels were similar to those of sham-operated rats, although the tissue creatine phosphate tended to be reduced in the pressure-overloaded animals at all stages of cardiac hypertrophy examined. Only a marginal decrease in the tissue high-energy phosphate (13%) was observed 4 weeks after the operation relative to that of sham-operated rats. In contrast, the developed tension of the perfused pressure-overloaded rat hearts was consistently lower (27 to 36%) than that of the sham-operated rat hearts. The results suggest that the high-energy phosphate levels of pressure-overloaded rat myocardium in vitro are unlikely to account for the observed decline in cardiac contractile function. The reduction of myocardial high-energy phosphates of pressure overloaded rats may be due to an adaptative change rather than a causal events.

Adenosine Triphosphate↗

Second messenger systems in brains of patients with Parkinson's or Huntington's disease.

Alterations in protein kinase C (PKC) and myo-inositol 1,4,5-trisphosphate (IP3) receptors were studied in the autopsied human striata from 21 patients with Parkinson's disease (PD) (Yahr III, IV, and V), 8 patients with Huntington's disease (HD), and 23 age-matched and postmortem time-matched nonneurological controls. The concentrations of PKC and IP3 receptors were determined using [3H]4 beta-phorbol 12,13-dibutyrate (PDBu) and [3H]IP3 as respective ligands. Both the specific [3H]-PDBu and [3H]IP3 bindings were significantly reduced in the striata of Yahr V patients with dementia (PDD) and in that of HD patients, as compared to findings in the controls. These bindings were unchanged when all the PD patients without dementia, Yahr (III plus IV) patients, or Yahr V patients without dementia were compared with evidence from the controls. Immunoquantification of four PKC subspecies (alpha, beta I, beta II, and gamma) in the HD putamen revealed a selective reduction in the beta II-PKC immunoreactions. These results are supported by immunohistochemical findings in the rat brain that beta II-PKC is expressed in the striatal gabaergic efferent pathway, while the alpha-PKC is present in the nigrostriatal dopaminergic neurons. The neurochemical pathophysiology of PD differs between patients with and without dementia.

Aged↗

Augmentation of retinoic acid-induced granulocytic differentiation in HL-60 leukemia cells by serine/threonine protein phosphatase inhibitors.

To evaluate the involvement of protein phosphatases (PP) in differentiation of human myelogenous leukemia HL-60 cells, we made use of potent inhibitors of PP1 and PP2A, calyculin-A (CAL-A) and okadaic acid (OKA). CAL-A and OKA could augment all-trans retinoic acid (ATRA)-induced granulocytic differentiation, whereas the differentiation toward macrophage lineage by 12-o-tetradecanoylphorbol acetate (TPA) was unchanged in the presence of CAL-A. CAL-A augmented the phosphorylation of 18K, 23K and 30K proteins induced by ATRA. The PP1 and PP2A were identified and were present mainly in the cytosol of HL-60 cells. These results suggest that either PP1 or PP2A or both may be involved in regulating granulocytic differentiation of HL-60 cells.

Cell Adhesion↗

Molecular cloning and characterization of the promoter region of the calcineurin A alpha gene.

The 5'-flanking region of the calcineurin A alpha gene was isolated from a rat genomic library. It lacked TATA and CAAT boxes but contained G+C-rich regions, and was demonstrated to function as a strong promoter in neuronal cell lines (NG108-15 mouse neuroblastoma x rat glioma hybrid cells or N1E115 mouse neuroblastoma cells), but not in nonneuronal cell lines (C6 rat glioma or L-M mouse fibroblastoid cells) in a transient chloramphenicol acetyltransferase expression assay. Deletion analysis of the 5'-flanking region revealed that the core promoter region, as well as the sequence critical for cell-type-specific-promoter function, reside within the fragment -107 to +157 with respect to the major transcription initiation site.

Amino Acid Sequence↗

The loss of beta II-protein kinase C in the striatum from patients with Huntington's disease.

We have examined the levels of protein kinase C (PKC) in autopsied brains of patients with Huntington's disease (HD), using [3H]4-beta-phorbol-12,13-dibutyrate ([3H] PDBu) and antisera against the PKC subspecies. In the caudate nucleus and putamen from patients with HD, the specific binding for [3H]PDBu was significantly decreased by 74 and 68%, respectively, as compared to findings in controls. The beta II-PKC immunoreactivities were significantly reduced by 65%, whereas the alpha-PKC immunoreactivities increased by 146%, in the putamen. There were no differences in the beta I- or gamma-PKC immunoreactivities in the putamen between HD and controls. These results suggest the differential localization of four PKC subspecies in human striatum and the involvement of four subspecies in different aspects of HD pathophysiology.

Brain↗

Molecular structure of the C beta catalytic subunit of rat cAMP-dependent protein kinase and differential expression of C alpha and C beta isoforms in rat tissues and cultured cells.

A full-length cDNA clone encoding the C beta catalytic subunit of cAMP-dependent protein kinase (PKA) was isolated from a rat brain cDNA library. A 1.1 kb cDNA containing the entire coding region encodes for a protein of 351 amino acids that shows more than 95% sequence homology to the C beta subunits in mouse, bovine and human. Northern blot analysis showed distinct patterns of C alpha and C beta mRNA expression in the brain and various peripheral tissues. The C alpha mRNA was widespread and highly expressed in brain, heart, adrenal gland, testis, lung, kidney, spleen and liver, whereas the C beta mRNA was unevenly expressed in the brain and adrenal gland and in much lesser amounts in other tissues. The C alpha mRNA was evenly distributed and highly expressed through various regions of the brain, while the C beta mRNA was expressed in lesser amounts and was unevenly distributed. In neuronal and glial cultured cells, C alpha mRNA was also predominantly expressed but C beta mRNA was undetectable. The differential distribution between the C subunit isoforms of PKA suggests that individual subunits are involved in specialized functions.

Amino Acid Sequence↗

cDNA cloning of a neural visinin-like Ca(2+)-binding protein.

A 21,000-dalton Ca(2+)-binding protein (Walsh, M.P., Valentine, K.A., Ngai, P.K., Carruthers, C.A., and Hollengerg, M.D. (1984) Biochem. J. 224, 117-127) was purified from the rat brain and through the use of oligonucleotide probe based on partial amino acid sequence, cDNA clones were obtained from rat brain cDNA library. The complete amino acid sequence deduced from the cDNA contains 191 residues and has a calculated molecular mass of 22,142 daltons. There are three potential Ca(2+)-binding sites like the EF hands in the sequence. It displays striking sequence homology with visinin and recoverin, retina-specific Ca(2+)-binding proteins. Northern blot analysis revealed that the protein is highly and specifically expressed in the brain.

Amino Acid Sequence↗

The suppression of olfactory bulbectomy-induced muricide by antidepressants and antihistamines via histamine H1 receptor blocking.

The effects of antidepressants [(+)-oxaprotiline, (-)-oxaprotiline, imipramine, maprotiline, and trazodone] and antihistamines (mepyramine, dimethindene, ketotifen, methapyrilene, and antazoline) on muricidal behaviour in olfactory bulbectomized rats were investigated. All drugs except for dimethindene, which only minimally passes across the blood-brain barrier, suppressed muricide. The drugs which have high affinity for histamine H1 receptor showed potent suppressive effect on muricide. It is suggested that the central histaminergic system is involved via H1 receptors in the expression of muricide in olfactory bulbectomized rats.

Aggression↗

Localization of subspecies of protein kinase C in the mammalian central nervous system.

Activation of protein kinase C (PKC) is regulated by dual second messengers; diacylglycerol (DG) produced by receptor mediated hydrolysis of phosphatidylinositol and Ca2+ which is released by inositol 1,4,5-triphosphate (IP3) from intracellular stores in the endoplasmic reticulum. In the mammalian central nervous system, available evidence suggests that PKC plays a prominent role in the processing of neuronal signals and in the short-term or long-term modulation of synaptic transmission. This enzyme is a member of a family consisting of at least eight subspecies, alpha, beta I, beta II, gamma, delta, epsilon, zeta and eta. The homologous structure of each subspecies makes difficult resolution of the enzymological properties of the enzyme. The distinct functional roles of PKC subspecies in mammalian tissues have been elucidated by defining the localization of each subspecies. We identified alpha-, beta I-, beta II- and gamma-PKC subspecies in the rat brain by in situ hybridization and by light and electron microscopic immunohistochemistry, using antibodies specific for each subspecies. Most immunoreactions of the alpha, beta I, beta II and gamma subspecies were evident in neurons and there were few, if any, in glial cells. In this article, we summarize known cellular and subcellular localizations of PKC subspecies in mammalian CNS and some aspects of current studies in neuronal functions regulated by this enzyme are discussed.

Amino Acid Sequence↗

cDNA cloning and tissue distribution of a rat ubiquitin carboxyl-terminal hydrolase PGP9.5.

We have isolated a cDNA clone encoding ubiquitin carboxyl-terminal hydrolase PGP9.5 from a rat brain cDNA library and examined the tissue distribution. The primary structure of the cDNA consists of 856 nucleotides including the entire coding region for 223 amino acids, and the calculated molecular mass is 24,782 Da. The rat PGP9.5 is strikingly homologous to the human PGP9.5, 75.2% of nucleic acids and 95.1% of amino acids being identical. The mRNA of PGP9.5 is most abundant in the rat brain and to a lesser degree in the testis. In other peripheral tissues we tested, the mRNA was undetectable. Western blotting using an anti-rat PGP9.5 antibody revealed the parallel distribution of mRNA and protein in various brain regions and testis. The availability of the rat PGP9.5 clone provides a new approach to examine the function of PGP9.5 and the role that it plays in the pathology of neurodegenerative diseases.

Amino Acid Sequence↗

Distinct cellular expression of calcineurin A alpha and A beta in rat brain.

Specific polyclonal antibodies that distinguish the two distinct isoforms of the catalytic subunit of calmodulin-dependent protein phosphatase, calcineurin A alpha and A beta, were prepared, and the distribution of calcineurin A alpha and A beta in rat brain was studied using immunochemical and immunocytochemical techniques. Immunochemical measurement revealed that the regional distributions of the two isoforms differed and that A alpha was more abundant than A beta in the rat brain. The subcellular distribution patterns of both isoforms were similar. Both isoforms were highly enriched in cytosolic fractions, including the synaptosomal cytosol. Immunocytochemical analysis revealed that both A alpha and A beta immunoreactivities differed in regional and cellular localizations. These different patterns of expression suggest that the two isoforms of calcineurin A may each have specific functions in modulating neuronal activity in particular cell types.

Animals↗

Evidence for distinct neuronal localization of gamma and delta subunits of Ca2+/calmodulin-dependent protein kinase II in the rat brain.

Localization of the gamma and delta types of mRNAs for Ca2+/calmodulin-dependent protein kinase II (CaM-kinase II) was determined in the rat brain, making use of in situ hybridization histochemistry. The gamma and delta mRNAs as well as the alpha and beta mRNAs for CaM-kinase II were heterogeneously and distinctly distributed. In the Purkinje cell layer of the cerebellum, alpha, beta, and gamma mRNAs but not delta mRNA were present, whereas beta, gamma, and delta mRNAs were present in the locus coeruleus. These findings provide evidence that CaM-kinase II exists in a variety of forms in different cells composed of a variable number and type of subunits.

Animals↗

Synthesis and evaluation of iodinated benzamide derivatives as selective and reversible monoamine oxidase B inhibitors.

A new series of iodinated analogues of N-(2-aminoethyl)benzamide was synthesized and evaluated for inhibitory potency and specificity toward monoamine oxidase type-B (MAO-B). Among them, N-(2-aminoethyl)-2-chloro-4-iodobenzamide hydrochloride (2d) showed high inhibitory potency and selectivity against MAO-B. The type of MAO-B inhibition by 2d was non-competitive and the inhibition constant (Ki) was 0.80 microM. Strong and selective in vivo MAO-B inhibition by 2d was also confirmed. The brain MAO-B inhibition by 2d was reversible and the enzyme activity completely returned to the control value 24 h after administration. Compound 2d was, therefore, considered to be a candidate for advanced development as a radioiodinated ligand that may be useful for functional MAO-B studies in the living brain using single photon emission computer tomography.

Animals↗

Synthesis and aldose reductase inhibitory activities of benzyl 2-oxazolecarbamate analogues.

Various analogues of benzyl 5-phenyl-2-oxazolecarbamate (1a) were synthesized, and the structure-activity relationship of these analogues as aldose reductase inhibitor was studied. The carbamate group was necessary for the inhibitory activity. The introduction of an alkyl group at the C-4 position of 1a enhanced the inhibitory activity, however, the N-carboxymethyl group on the carbamate moiety counteracted to a hydrophobic interaction between the alkyl group at the C-4 position and the enzyme molecule.

Aldehyde Reductase↗

Follicular bronchiolitis associated with rheumatoid arthritis.

Follicular bronchiolitis is a rare disorder, though it has been recognized as a pulmonary involvement of rheumatoid arthritis in recent years. A 57-year-old woman with rheumatoid arthritis was admitted to the hospital with persistent productive cough and breathlessness on exertion. An open lung biopsy was performed to establish a definite pathologic diagnosis of her disease, and she was diagnosed as having follicular bronchiolitis on the basis of the histopathological findings. It is essential to differentiate this disease from other bronchiolar or lymphoproliferative disorders of the lung.

Arthritis, Rheumatoid↗