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Biomedical subjects

M Niwa

Publications and source records attributed to M Niwa.

At least 19 recordsLinked to original sources

Identification and isolation of common and tissue-specific geranylgeranylated gamma subunits of guanine-nucleotide-binding regulatory proteins in various tissues.

Heterotrimeric guanine-nucleotide-binding regulatory proteins (G proteins) have been classified into several subtypes on the basis of the properties of their alpha subunits, though a notable multiplicity of gamma subunits has also been demonstrated. To investigate whether each subtype of alpha subunit is associated with a particular gamma subunit, various oligomeric G proteins, purified from bovine tissues, were subjected to gel electrophoresis in a Tricine buffer system. All G proteins examined were shown to have more than two kinds of gamma subunit. Of the brain G proteins, GoA, GoB, and Gi1 contain the same set of three gamma subunits, but Gi2 contains only two of these subunits. Lung Gi1 and Gi2 and spleen Gi2 and Gi3 had similar sets of two gamma subunits, one of which was distinct from the gamma subunits of brain G proteins. These observations indicate that each subtype of alpha subunit is associated with a variety of beta gamma subunits, and that the combinations differ among cells. For analyses of the structural diversity of the gamma subunits, beta gamma subunits were purified from the total G proteins of each tissue and subjected to reverse-phase HPLC under denaturing conditions, where none of the beta subunits were eluted from the column. Three distinct gamma subunits were isolated in this way from brain beta gamma subunits. In contrast, lung and spleen beta gamma subunits contained at least five gamma subunits, the elution positions and electrophoretic mobilities of which were indistinguishable between the two tissues. Among several gamma subunits, two subspecies appeared to be common to the three tissues. In fact, in each case, the partial amino acid sequence of the most abundant gamma subunit in each tissue was identical, and the sequences coincided exactly with that of 'gamma 6' [Robishaw, J. D., Kalman, V. K., Moomaw, C. R. & Slaughter, C. A. (1989) J. Biol. Chem. 264, 15758-15761]. Fast-atom-bombardment mass spectrometry analysis indicated that this abundant gamma subunit in lung and spleen was geranylgeranylated and carboxymethylated at the C-terminus, as was 'gamma 6' from brain. In addition to abundant gamma subunits, other tissue-specific gamma subunits were also shown to be geranylgeranylated by gas-chromatography-coupled mass spectrometry analysis of Raney nickel-treated gamma subunits. These results suggest that most gamma subunits associated with many different subtypes of alpha subunit are geranylgeranylated in a variety of tissues, with the single exception being the retina where the G protein transducin has a farnesylated gamma subunit.

Amino Acid Sequence

Are vertebrate exons scanned during splice-site selection?

Pairwise recognition of splice sites as a result of a scanning mechanism is an attractive model to explain the coordination of vertebrate splicing. Such a mechanism would predict a polarity-of-site recognition in the scanned unit, but no evidence for a polarity gradient across introns has been found. We have suggested that the exon rather than the intron is the unit of recognition in vertebrates and that polyadenylation and splicing factors interact during recognition of 3'-terminal exons. Interaction is reflected in maximal rates of in vitro polyadenylation. If scanning across the exon is operating during this interaction, then insertion of a 5' splice site should depress polyadenylation. Here we report recognition in vitro and in vivo of a 5' splice site situated within a 3'-terminal exon, and a concomitant depression of polyadenylation and ultraviolet crosslinking of a polyadenylation factor. Decreased crosslinking was only found when the 3' and 5' splice sites were within 300 nucleotides of each other. These results are consistent with an exon scanning mechanism for splice-site selection.

Adenoviridae

Nucleotide sequence and expression in Escherichia coli of the cephalosporin acylase gene of a Pseudomonas strain.

The gene encoding cephalosporin acylase, which hydrolyzes 7-beta-(4-carboxybutanamido)-cephalosporanic acid (GL-7ACA) to 7-aminocephalosporanic acid (7ACA) and glutaric acid, was cloned from a Pseudomonas sp. strain V22 and expressed in Escherichia coli, in a two-cistron system, and the enzyme was purified and characterized. The purified enzyme was composed of two non-identical subunits, their molecular weights were estimated by SDS-PAGE to be 40,000 and 22,000, and had a pI of 4.6. The amino acid sequence of the enzyme, deduced from the nucleotide sequence, showed high similarity (97%) with that of a previously reported acyI-encoded cephalosporin acylase. Cephalosporin acylase also resembles the bacterial gamma-glutamyl transpeptidases (GGTs) with respect to their molecular organization and amino acid sequence, but differs from them with respect to catalytic and immunological properties. Purified enzyme exhibited not only cephalosporin acylase activity, but also GGT activity. The Km values of the enzyme for GL-7ACA and L-gamma-glutamyl-p-nitroanilide were 6.1 and 3.8 mM, respectively. Cephalosporin acylase was not recognized by antibodies prepared against bacterial GGTs.

Amidohydrolases

Bacterial gamma-glutamyltranspeptidases: comparison of Escherichia coli and Pseudomonas gamma-glutamyltranspeptidase.

A high-level expression system for the Escherichia coli HB101 gamma-glutamyltranspeptidase (GGT) gene was constructed to obtain a sufficient amount of the enzyme for structural studies. About 300 mg of the enzyme was purified from 2 1 of culture broth. Both subunits were needed to reconstitute GGT activity. The E. coli GGT and the Pseudomonas GGT were compared with respect to catalytic properties and immunological relationships. Both enzymes showed different acceptor specificities. Relatively high immunocross-reactivity was observed between the small subunits of both enzymes by Western blot analysis using antibodies prepared against either enzyme.

Base Sequence

In vitro quantitative autoradiography of [125I]alpha-bungarotoxin binding at the motor end-plates of experimental autoimmune myasthenia gravis.

A quantitative evaluation was made of nicotinic acetylcholine receptors (AChR) at the motor end-plates in experimental autoimmune myasthenia gravis (EAMG). Female Lewis rats were immunized with AChR protein purified from electric organs of Narke japonica. The forelimb digit extensor muscle obtained in the chronic stage of the controls and EAMG were studied using [125I]alpha-bungarotoxin, in vitro and autoradiographically. The maximum binding capacity (Bmax) values of the controls and EAMG were calculated to be 237.7 +/- 13.0 fmol/mg (n = 4) and 42.0 +/- 4.1 fmol/mg (n = 4), respectively (P less than 0.001), and the dissociation constant (Kd) values were 11.7 +/- 1.6 nM and 7.6 +/- 0.9 nM, respectively. This in vitro autoradiographic method revealed a quantitative reduction of AChR at the motor end-plates in EAMG.

Animals

C-type natriuretic peptide-22 differentiates between natriuretic peptide receptors in rat choroid plexus and subfornical organ.

Atrial natriuretic peptide (ANP) receptors in the rat choroid plexus and subfornical organ were characterized with C-type natriuretic peptide-22 (CNP-22) and 125I-Tyr0-CNP-22. The receptor autoradiographic method we used revealed that 125I-Tyr0-CNP-22 specifically bound to the choroid plexus, but only slightly to the subfornical organ, areas densely labeled with 125I-alpha-rat ANP (125I-rANP). CNP-22 significantly inhibited 125I-rANP binding to the choroid plexus; however, the peptide did not affect 125I-rANP binding to the subfornical organ. Thus, the characteristics of ANP receptors in the rat choroid plexus and subfornical organ are probably different.

Amino Acid Sequence

Specific binding sites for 125I-endothelin-1 in the porcine and human spinal cord.

Specific binding sites for 125I-endothelin-1 (125I-ET-1) in the spinal cord were investigated using quantitative receptor autoradiographic and chemical cross-linking methods. The binding sites were highly concentrated in porcine and human spinal cord areas corresponding anatomically to the dorsal horn (Rexed's laminae I-III), an area around the central canal (lamina X) and the principal part of the intermediolateral nucleus (IMLp). The localization of the binding sites differed from those of 125I-omega-conotoxin GVIA (125I-CgTx) and 125I-Bolton-Hunter substance P (125I-BH-SP), with the exception that the IMLp shared 125I-ET-1 with 125I-CgTx and 125I-BH-SP binding sites. Specific 125I-ET-1 binding sites in the areas examined were characteristically single and of high affinity. There were no differences between the potencies of unlabeled ET family peptides, ET-1, ET-2, ET-3 and sarafotoxin S6b at inhibiting 125I-ET-1 binding to the areas. Chemical cross-linking studies showed that 125I-ET-1 and 125I-ET-3 mainly bound to a protein with molecular mass of 43 kDa in the porcine and human thoracic spinal cord membranes. The present finding shows the neuronal significance of this newly discovered peptide in the spinal cord.

Aged

Endothelin-3 stimulates the release of catecholamine from cortical and striatal slices of the rat.

Endothelin-3 (ET-3) evoked the release of dopamine/noradrenaline from cortical slices and dopamine from striatal slices in a concentration-dependent manner. This action peaked slowly and was long-lasting in real-time monitoring, being different from the high K(+)-evoked response. The striatal response to 10 microM of ET-3 was reduced by extracellular Ca2+ depletion to 40% of control and by Ca2+ antagonists, especially nifedipine and flunarizine, to 40% of control. Our findings suggest that ET has a physiological significance in the brain as a neuromodulator for catecholaminergic transmission.

Animals

Effect of opioids on delayed neuronal death in the gerbil hippocampus.

The effect of opioids on delayed neuronal death was evaluated in the gerbil hippocampus. Male Mongolian gerbils were subjected to transient forebrain ischemia and neuronal density was evaluated in the hippocampus 7 days following ischemia. When hypothermia during and after ischemia was prevented, treatment with morphine, U-50488H, or naloxone provided no significant protection. In contrast, a spontaneous drop in rectal temperature to 32 degrees C at the end of ischemia produced near-complete protection of CA1 pyramidal neurons. No opioids modulate the protective effect of hypothermia.

3,4-Dichloro-N-methyl-N-(2-(1-pyrrolidinyl)-cycloh

The amplified long genomic sequence (ALGS) located in the centromeric regions of mouse chromosomes.

We reported previously that the haploid genome of standard strains of laboratory mice contains approximately 70 copies of an amplified long genomic sequence, designated ALGS, that includes a retroposon of the gene for elongation factor 2 (MER). The length of each repeating unit is more than 60 kb, and the sequence of the unit is highly conserved among the repeats. In the present study, Southern blot analysis of the genomes of wild rodents demonstrated that the ALGS is present in all subspecies of Mus musculus and is abundant in M. spicilegus, whereas it is absent in M. spretus as well as in Rattus and other closely related genera. This result indicates that the amplification occurred after the species differentiation with the genus Mus and at least prior to the differentiation of subspecies of M. musculus. To locate chromosomal positions of the ALGS, in situ hybridization was carried out with laboratory strains and wild mice. It appears that the ALGS is located in the centromeric regions of most chromosomes in laboratory mice, M. musculus and M. spicilegus, whereas no positive signals were observed with M. spretus, in accordance with the results from the Southern blotting analysis.

Animals

Activation of protein kinase C suppresses the gamma-aminobutyric acidB receptor-mediated inhibition of the vesicular release of noradrenaline and acetylcholine.

Modulation of the gamma-aminobutyric acidB (GABAB) receptor-mediated response by protein kinase C (PKC) was examined with regard to inhibition by stimulation of the GABAB receptor of stimulation-evoked release of noradrenaline (NA) from slices of cerebellar cortex and of acetylcholine (ACh) from strips of ileum. 12-O-Tetradecanoylphorbol 13-acetate (TPA) potentiated the high K(+)-evoked Ca2+-dependent release of NA and ACh, but not the ouabain-evoked release, even in the presence of external Ca2+. The potentiating effect was antagonized by sphingosine, thereby suggesting that PKC participates in the exocytotic-vesicular release of neurotransmitters, but does not do so in case of a nonvesicular release. GABA inhibited the high K(+)-evoked release of NA and ACh, but not the ouabain-evoked Ca(2+)-independent release. The effect of GABA was mimicked by baclofen and was antagonized by phaclofen, thereby suggesting that stimulation of the GABAB receptor inhibits the vesicular but not the nonvesicular release of neurotransmitters. TPA suppressed the GABAB receptor-mediated inhibition of high K(+)-evoked release of NA and ACh. The effect of TPA was antagonized by sphingosine. These results indicate that stimulation of the GABAB receptor inhibits the stimulation-evoked Ca(2+)-dependent release of neurotransmitters and that activation of PKC suppresses the GABAB receptor-mediated response.

Acetylcholine

[Affinity of Z-105 to the 1,4-dihydropyridine type calcium channel and several other receptor bindings in the central nervous system].

The affinity of a 1,4-dihydropyridine (DHP) type calcium channel blocker, NZ-105 ((+/-)-2-[benzyl (phenyl) amino] ethyl 1,4-dihydro-2, 6-dimethyl-5- (5,5-dimethyl-2-oxo-1,3,2-dioxaphosphorinan- 2-yl)-4-(3-nitrophenyl)-3-pyridinecarboxylate hydrochloride ethanol), on the DHP-binding site in the central nervous system and various receptor sites were compared with nicardipine and diltiazem by the use of a receptor binding assay technique. NZ-105 exhibited a displacement effect against [3H]nimodipine in the rat brain DHP-binding site with a potency similar to that of nicardipine. Nicardipine also inhibited the specific binding of several other [3H]-labelled ligands to their receptor such as adrenergic alpha 1, alpha 2, beta, dopamine D1, D2, opioid mu, delta, and kappa-type receptors. Diltiazem also showed a similar inhibitory property. However, NZ-105 showed only weak inhibition against the binding to these receptors. These results suggest that Z-105 has strong affinity to the DHP-binding site in voltage-dependent calcium channels with higher specificity.

Animals

Nebracetam (WEB 1881FU) prevents N-methyl-D-aspartate receptor-mediated neurotoxicity in rat striatal slices.

The effects of nebracetam were investigated on N-methyl-D-aspartate (NMDA) receptor- and voltage-operated Ca2+ channels (VOCC)-mediated neural dysfunction by directly monitoring the real-time dynamics of dopamine released from rat striatal slices. Nebracetam (10(-5) and 10(-4) M) completely protected against striatal dopaminergic impairment induced by L-glutamate and NMDA, respectively. BAY K-8644-evoked striatal dysfunction was not blocked by nebracetam (10(-4) M). Therefore, nebracetam seems to produce a neuroprotective action by interacting, at least in part, with NMDA receptor-operated Ca2+ channels.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy

[The effects of long-term intake of a low concentration of sodium fluoride on bone loss in the growing senescence-accelerated mouse (SAM-P/6)].

The long-term effects of low concentrations of sodium fluoride (0, 1 and 5 mg/l) in drinking water on bone metabolism were examined in the growing senescence accelerated mouse (SAM-P/6) as a spontaneous experimental model of senile osteoporosis. In 4 and 8 months of age respectively, there were almost no differences in body weight, and serum calcium, phosphorus and alkaline phosphatase levels between controls and fluoride groups. Calcium contents per dry weight of femoral bone were higher in fluoride groups than in controls. The bone mass of the trabecular was not affected by the low-concentration sodium fluoride intake. However, sodium fluoride decreased the rate of bone mass loss associated with aging in the cortical bone in SAM-P/6 compared with the control. The results of this study suggest that, in growing SAM-P/6 mice, a long-term low-concentration sodium fluoride intake affects the skeletal metabolism.

Animals

[Central autonomic mechanism and neurotransmitters].

Neurotransmitters involved in the central regulation of the autonomic function have, to some extent, been elucidated. Substance P, adrenaline and glutamate neurons originating from the rostral ventrolateral medulla oblongata (VLM) produce a tonic excitation of sympathetic preganglionic neurons. The A1 noradrenaline neurons in the caudal VLM inhibit sympathetic activity by inhibiting neurons in the rostral VLM. In the dorsal medulla, the baroreceptor afferents with substance P converge to the adrenaline-neuropeptide Y (NPY) interneurons located in the dorsal strip of the nucleus tractus solitarius (NTS). These interneurons suppress neuronal activity of the A2 noradrenaline neurons, a vasopressor system, by interacting with alpha 2-adrenergic and NPY receptors. The area postrema, a circumventricular organ devoid of the blood-brain barrier, has access to regulatory information of blood-borne angiotensin II and atrial natriuretic peptide at specific receptors on the neuronal elements. The information is then transmitted to the NTS and dorsal motor nucleus of the vagus. Studies focusing on the physiological and pharmacological profiles of neurotransmitters are expected to enhance our knowledge of the central regulation of the autonomic function.

Autonomic Nervous System

[A study of DNA ploidy pattern, proliferation index and PCNA in duodenal carcinoma].

12 cases of duodenal carcinoma were studied for nuclear DNA ploidy patterns, the proliferation index (PI), proliferating cell nuclear antigen (PCNA) positive score (1 = 0-25%, 2 = 26-50%, 3 = 51-75%, 4 = 76-100%) and PCNA positive rate. DNA aneuploidy was observed in 9 cases (75%) and PCNA staining was positive in 11 cases (91.6%). DNA ploidy patterns, PI, PCNA positive scores and positive rates were not related to each other. No relationship DNA ploidy patterns for PCNA positive scores and PCNA positive rates could be found. The relationship between PI and PCNA positive score was found not to be significant (P less than 0.10). PI was revealed to correlate significantly (P less than 0.05) to PCNA positive rate.

Aneuploidy

[Borrmann 4 gastric cancer treated with l-LV and 5-FU combination--a case report].

The patient was a 44-year-old female who had Borrmann type 4 gastric cancer with enlarged intra-abdominal lymph node metastasis. L-leucovorin (l-LV, 100 mg/m2/day by intravenous bolus for a period of one minute) and fluorouracil (5-FU, 370 mg/m2/day by intravenous bolus) was administered for 5 consecutive days, with a 28-day interval. Dysphagia was subsided 4 weeks after the initial treatment. After 11 weeks, abdominal lymph node metastasis had been reduced in its size (reduced rate 89%). After 16 weeks, gastric structure were remarkably improved (62.2% enlarged in its focus space) in upper GI X-ray. Therefore, total gastrectomy was performed 20 weeks after the initial combination therapy. She has been alive for the past year after the initial treatment. We concluded a combination therapy of l-LV and 5-FU was effective in this patient.

Adenocarcinoma

Cloning and nucleotide sequence of a human Zn-alpha 2-glycoprotein cDNA and chromosomal assignment of its gene.

A cDNA clone of Zn-alpha 2-glycoprotein (Zn alpha 2gp) was isolated from a human prostate library. The amino acid sequence of prostate Zn alpha 2gp deduced from the nucleotide sequence was identical to the one previously reported on the Zn alpha 2gp protein purified from human blood plasma, except at three positions: the 65th and 222nd amino acid residues were Gln (----Glu) and Glu (----Gln), and there was a two amino acid insertion (Ile-Phe) between the 75th (Glu) and 76th (Met) amino acids. Southern blot analysis of human genomic DNA, however, suggested a single gene encoding Zn alpha 2gp. Using a panel of rodent-human somatic cell hybrids, the Zn alpha 2 gp gene was assigned to human chromosome 7.

Amino Acid Sequence