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Biomedical subjects

S Nishimura

Publications and source records attributed to S Nishimura.

At least 757 records · Page 42Linked to original sources

Characterization of a rat tRNA gene cluster: comparison of nucleotide sequences of the gene for tRNALeu newly found in repeating units.

In the rat, DNA carrying a cluster of the genes for tRNAAsp, tRNAGly, and tRNAGlu, aligned in that order, is repeated about 10 times. Seven DNA clones corresponding to the independent repeating units were isolated from a rat gene library. Nucleotide sequence analysis of these clones revealed the presence of a fourth tRNA gene, the gene for tRNALeu, in the cluster. The tRNALeu gene is located about 600 base pairs (bp) upstream from the tRNAAsp gene and its polarity differs from those of the other three tRNA genes. Among the repeating units, the nucleotide sequence of tRNALeu is conserved to a relatively high degree.

Animals↗

Tumor promoters potentiate the adrenomedullary secretion induced by acetylcholine and excess K possibly by stimulating phorbol ester receptors.

Catecholamine secretion from the perfused cat adrenal in response to 15 mM KC1 or acetylcholine was significantly increased by treatment with active tumor promoters. A good correlation was found between potentiation of the secretory response and the phorbol ester receptor binding activity, suggesting that promoters modulate the secretory mechanism via the receptors.

Acetylcholine↗

Dihydropyridine BAY K 8644 enables reduction of Ca concentration to induce catecholamine secretion from the perfused cat adrenal.

Dihydropyridine derivative BAY K 8644 increased the rate of catecholamine secretion from the perfused cat adrenal. The magnitude of the response was inversely proportional to the extracellular concentration of Ca, i.e. the lower the Ca concentration, the larger the response. The response was markedly inhibited by Mg or nifedipine.

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

Action of pirenzepine, a new muscarinic antagonist drug, on human pancreatic secretion.

The action of a new muscarinic antagonist drug on the pancreatic secretion has been studied in 12 healthy subjects. A stable pancreatic secretory plateau was obtained with submaximal hormonal stimulation (0.125 CU/kg/h secretin: 30 ng/kg/h caerulein). The highest dose of pirenzepine (40 mg) inhibited both volume and enzymatic concentration and output (-72.2% and -77.9% of plateau value for chymotrypsin and lipase output, respectively, 30 min after pirenzepine injection). The inhibition appeared immediately, lasted for more than 60 min, and was dose-related. The calcium dose-response curve paralleled those of lipase and chymotrypsin outputs. These results were comparable to those obtained with other anti-acetylcholine drugs and may be associated with the action of certain doses of ethanol on pancreatic secretion. In contrast, the lowest pirenzepine dose used (10 mg) induced a delayed stimulation of bicarbonate output, and bicarbonate concentration was not altered.

Adult↗

Irreversible opiate agonists and antagonists. II. Evidence against a bivalent mechanism of action for opiate azines and diacylhydrazones.

A series of opiate azines, including naloxonazine, naltrexonazine and oxymorphonazine, produce both a wash-resistant inhibition of 3H-opioid binding and prolonged actions in vivo. Opiate diacylhydrazones synthesized from succinic, adipyl and suberic dihydrazides possess similar actions against 3H-opioid binding. Competition studies measuring inhibition of binding in the presence of the compounds revealed little difference between standard, reversible opiates such as naloxone, oxymorphone and naltrexone and our two series of compounds, the diacylhydrazones and the azines. In these assays, the diacylhydrazones, the azines, oxymorphone, naloxone and naltrexone all inhibited 3H-opioid binding with very similar IC50 values, typically under 5 nM. At concentrations under 5 nM, the inhibition of all the compounds was reversible. At higher concentrations, however, much of the inhibition of the diacylhydrazones and azines was not freely reversible, in distinction to oxymorphone, naloxone and naltrexone. Washing after the incubation of membranes with the naloxone, naltrexone or oxymorphone (50 nM) returned binding to control levels. Despite the extensive washing, the diacylhydrazones, on the other hand, lowered binding by as much as 90%. Mu binding was most sensitive to wash-resistant binding. In general, the longer dihydrazide derivatives produced wash-resistant inhibition more effectively than either the shorter dihydrazide derivatives or the corresponding azines. The ability of these compounds to produce wash-resistant inhibition of binding probably did not result from a bivalent attachment of the ligand to two binding sites at once. Additional assymetric azines and diacylhydrazones unable to bind simultaneously to two sites still produced wash-resistant inhibition of binding.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Irreversible opiate agonists and antagonists. III. Phenylhydrazone derivatives of naloxone and oxymorphone.

In view of previous studies indicating that the irreversible properties of opiate azines such as naloxonazine are not due to a bivalent mechanism, we have synthesized a series of opiate hydrazones. In standard competition assays which measure both reversible and irreversible inhibition of binding, the hydrazone derivatives lowered radiolabeled opioid binding almost as well as naloxone and oxymorphone. However, the phenylhydrazone derivatives produced a profound wash-resistant inhibition of binding. The similar potencies of the methylhydrazine and phenylhydrazine derivatives in standard competition studies contrasted significantly with their effectiveness in eliciting wash-resistant inhibition of binding, suggesting the importance of the phenyl group in the production of wash-resistant inhibition. The p-nitrophenyl hydrazones were the most effective wash-irreversible inhibitors. Although oxymorphonazine does not irreversibly inhibit radiolabeled opioid binding as effectively as naloxonazine or naltrexonazine, the oxymorphone phenylhydrazones were as potent as their corresponding naloxone compounds. Incubation of [3H]naloxone-p-nitrophenylhydrazone with albumin demonstrated significant incorporation of radiolabel into the protein after sodium dodecylsulfate gel electrophoresis. This suggests that the phenylhydrazones have significant reactivities toward proteins and might produce their irreversible actions through covalent interactions.

Albumins↗

Activation of c-myc gene transcription by Rous sarcoma virus infection.

Transcription of the c-myc gene in chick embryo fibroblast cells was activated 50- to 100-fold by Rous sarcoma virus (RSV) infection. More than 30-fold activation of c-myc gene transcription was also observed in RSV-transformed rat cells as compared with the control cells. The increased expression of c-myc gene in these cells was not due to gene amplification or gene rearrangement. This striking increase in expression of c-myc gene may be relevant to neoplastic transformation of RSV-infected cells.

Animals↗

[Coronary collaterals in patients with total obstruction of the proximal left anterior descending artery: their pathways and functional significance].

The relationship of patterns of collateral pathways and the functions of collaterals in patients with proximal occlusion of the left anterior descending artery (LAD) was analyzed by coronary arteriography and left ventriculography. Forty-seven patients with dominant right coronary artery (RCA) as anatomic variations had nearly the same filling areas from three major collateral pathways from the RCA to the LAD via conus branches, marginal branches, and septal perforator. The grades of collateral flows were classified as good, fair and poor according to the sizes and numbers of collateral channels, and the filling density of contrast in each collateral and three (basal, mid and apical) segments of the main trunk of the LAD. On left ventriculography in the right anterior oblique projection, the anterior wall was divided into five segments, and the regional ejection fraction in each segment was measured from end-diastolic and end-systolic areas. Three main collateral pathways and connections to the LAD were observed from the RCA. Those were the conus branches to the basal-mid LAD, the marginal branches to the mid-apical LAD, and the posterior descending branches to the basal-mid LAD via the septal perforators. Only seven patients showed normal contraction in all of the segments (Group I). In seven patients with normal contraction in the basal-mid segments and reduced contraction in the apical segment of the anterior wall, the main collateral pathways from the RCA to the LAD were the posterior descending branches via the septal perforators (Group II). In 10 patients with reduced contraction in the basal-mid segments and normal contraction in the apical segment of the anterior wall, the main collateral pathways from the RCA were the conus branches and/or the marginal branches to the LAD (Group III). In the other 23 patients with reduced contraction in entire segments (Group IV), the patterns of segmental contraction were similar to those of either Group II or Group III. These findings indicate that in the majority of cases collateral circulation from the RCA did not preserve wall contraction in all segments perfused by the occluded LAD at rest, and suggest that various patterns of segmental contraction may be influenced by the dominant of collateral pathways.

Collateral Circulation↗