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Biomedical subjects

T Noguchi

Publications and source records attributed to T Noguchi.

At least 703 records · Page 39Linked to original sources

Rat pyruvate kinase M gene. Its complete structure and characterization of the 5'-flanking region.

Genomic clones containing the rat pyruvate kinase M gene, which encodes the M1- and M2-type isozymes, were isolated and their exon sequences were determined. This gene contains 12 exons and 11 introns and is 20 kilobases (kb) long. The sequences specific to the M1- and M2-types exist in exons 9 and 10, respectively (Noguchi, T., Inoue, H., and Tanaka, T. (1986) J. Biol. Chem. 261, 13807-13812). The seventh intron begins with the GC dinucleotide instead of the consensus GT dinucleotide, but other exon-intron boundaries are consistent with the "GT-AG" rule. S1 mapping analysis showed that M1- and M2-type mRNAs had multiple, but the same transcription initiation sites. Thus, the M1- and M2-type isozyme mRNAs are concluded to be produced from the same M gene transcript by alternative RNA splicing. RNA blot hybridization analysis indicated that developmental changes of the isozymes in brain and skeletal muscle were regulated at the level of RNA splicing. The 5'-flanking region of the gene has no "TATA box" or "CAAT box," but contains potential Sp1 binding sites. Bacterial chloramphenicol acetyltransferase assay revealed that a fragment of about 0.5 kb of the 5'-flanking region of the gene was sufficient for promotor activity in the rat hepatoma cell line, dRLh-84. This activity was not present in adult rat hepatocytes, indicating that the 0.5-kb fragment has tissue-specific promoter activity. A processed-type pseudogene that resembles the M2-type pyruvate kinase cDNA was also characterized.

Animals↗

Aspartic acid at position 57 of DQ beta chain does not protect against type 1 (insulin-dependent) diabetes mellitus in Japanese subjects.

HLA DQ beta chain, in particular amino acid at position 57, has been reported to contribute to susceptibility and resistance to Type 1 (insulin-dependent) diabetes mellitus in Caucasians. Resistance has been proposed to be conferred by aspartic acid at this position. To ascertain the association of HLA DQ beta and DR beta genes with Type 1 diabetes in Japanese subjects, ten Japanese Type 1 diabetic patients were investigated at DNA level. Genomic DNA was amplified by polymerase chain reaction, and dot blot analysis was carried out using the amplified DNA with allele specific oligonucleotide probes. All patients had aspartic acid at position 57 of at least one of their two DQ beta chains, and there was no significant difference of amino acids at the same position of DR beta chain in patients compared to control subjects. These data indicate that the protective role of aspartic acid at position 57 of DQ beta chain is less significant in Japanese compared with Caucasian subjects.

Aspartic Acid↗

Factors contributing to cerebral hypomyelination in the growth hormone-deficient little mouse.

We attempted to delineate the events leading to hypomyelination in the brain of the little mouse, a promising murine model of isolated growth hormone deficiency. At 20 days of age, the mutant mouse brain weighed less than its normal counterpart, and this difference in brain weight persisted. Increase in CNPase activity was found to be suppressed in the cerebrum throughout the developmental stage, but not in the other parts of the brain. Differences in cerebral DNA content between the little and normal mice first became apparent on the 10th day of age. Thereafter, the rate of increase in the little brain consistently lagged behind the normal. [3H]Thymidine incorporation into the DNA fraction in vivo on the 7th day of age, when glial cell proliferation in the normal cerebrum is most active, was approximately half that of the controls in all parts of the little brain. These findings indicate that the hypomyelination of the mutant cerebrum might result from reduced oligodendroglial proliferation due to growth hormone deficiency.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

The influence of liver dysfunction on cyclosporine pharmacokinetics--a comparison between 70 per cent hepatectomy and complete bile duct ligation in dogs.

The influence of experimentally induced hepatic dysfunction on the pharmacokinetics of Cyclosporine A (CsA) was determined in dogs. The pharmacokinetics of oral (PO) and intravenous (IV) CsA were studied before and after 70 per cent hepatectomy or complete bile duct ligation (CBDL). Changes in liver function were monitored by serial measurements of serum bilirubin, and by the maximum removal rate (Rmax) and plasma disappearance rate (ICG-K) of indocyanine green (ICG). Concentrations of CsA in whole blood were measured by HPLC. Seventy per cent hepatectomy caused significant liver dysfunction: the ICG-Rmax decreased by 47.7 +/- 7.1 per cent (mean +/- SD) and the ICG-K decreased by 61.3 +/- 9.7 per cent during the first week after hepatectomy. At the same time, the systemic clearance (CLs) of IV-CsA decreased by 43.9 +/- 8.2 per cent, the area under the concentration curve (AUC) of IV-CsA increased by 35.4 +/- 20.8 per cent and the bioavailability of CsA decreased by 26.4 +/- 14.8 per cent. CBDL also induced significant liver dysfunction: the ICG-Rmax decreased by 39.1 +/- 12.8 per cent and the ICG-K decreased by 65.6 +/- 3.6 per cent in the second week after the operation. During the same period, the AUC of PO-CsA decreased by 69.9 +/- 10.7 per cent and the bioavailability of CsA also decreased markedly by 73.9 +/- 15.6 per cent. These data indicate that hepatic impairment significantly influences the pharmacokinetics of CsA, not only by the changes in intestinal absorption, but also by those in hepatic metabolism.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

The effects of bestatin, a microbial aminopeptidase inhibitor, on epidermal growth factor-induced DNA synthesis and cell division in primary cultured hepatocytes of rats.

We investigated the effects of microbial protease inhibitors, in particular the aminopeptidase inhibitor bestatin, on DNA synthesis and cell division induced by epidermal growth factor (EGF) in hepatocytes. Although bestatin did not significantly affect binding of EGF to hepatocytes, it inhibited EGF-induced DNA synthesis and cell division. DNA synthesis in rat hepatocytes was maximal 24-26 h after EGF addition to the medium. The time required for maximal DNA synthesis was not affected if bestatin was removed less than 12 h after addition, but synthesis was partially inhibited if bestatin was added to the medium several hours after EGF addition, depending on the time of bestatin addition. Our results suggest that bestatin arrests the new cell cycle induced by EGF at about 12 h after the initiation. Considering also our results obtained by employing other protease inhibitors, we concluded that specific proteases play important roles in hepatocyte DNA synthesis and cell division induced by EGF.

Aminopeptidases↗

Effect of some essential amino acid deficiency in the medium on the action of insulin on primary cultured hepatocytes of rats. Hepatocytes do not respond to insulin in some essential amino acid-deficient medium.

1. The effects of insulin, glucagon and dexamethasone on the amino acid consumption by primary cultures of rat hepatocytes were studied in a medium containing all essential amino acids or in those deficient in some essential or nonessential amino acids. 2. The cells which were cultured in a medium containing all the essential amino acids responded to insulin by enhancing the consumption of amino acids and augmenting protein synthesis. 3. However, the cells did not respond to insulin significantly when they were cultured in a medium deficient in lysine or some other essential amino acids. 4. The results suggest that some essential amino acid deficiency impairs the transmission of the signal of insulin to the site of the metabolic changes induced by the hormone.

Amino Acids↗

Degradation of endogenous proteins and internalized asialofetuin in primary cultured hepatocytes of rats.

1. The effects of various metabolic and enzyme inhibitors on the degradation of endogenous proteins and internalized asialofetuin were examined in the primary cultured hepatocytes of rats. 2. The results showed the important physiological role of bestatin-sensitive aminopeptidases in the degradation of endogenous and internalized proteins as well as in the degradation of both long- and short-lived proteins.

Amino Acids↗

Microinjection of endogenous and exogenous proteins into primary cultures of rat hepatocytes and the degradation of the injected proteins.

1. A method to microinject proteins into cells through packaging proteins to erythrocyte ghosts (erythrocyte-mediated microinjection) was modified partially in order to apply the method to primary cultures of rat hepatocytes. 2. Degradation of the microinjected proteins was examined employing the improved method. The mean half-life of the injected endogenous liver protein was 20 hr. The data suggested that the injected proteins are degraded through both lysosomal and non-lysosomal proteolytic pathways probably depending on their structure. 3. The present method to microinject exogenous proteins into primary cultures of rat hepatocytes can be employed usefully for the investigations of protein metabolism in liver.

Animals↗

Effect of chronic renal failure on the level of albumin messenger RNA.

The effects of chronic renal failure on the level of albumin mRNA and the transcription rate of the albumin gene were studied in seven of eight nephrectomized rats. A paired feeding procedure was employed to eliminate a nutritional difference between sham-operated control and uremic rats. Total RNA was isolated from the livers of control and uremic rats fasted for 24 or 48 hours. The mRNA level was measured by RNA-cDNA dot blot hybridization, and the transcription rate was measured by the "run-on" transcription assay in isolated nuclei. The albumin mRNA levels in uremic rat livers were reduced to 75% at the 24-hour fasted state, and to 45% at 48-hour fasted state compared with those in the respective control groups. There was no difference in the level of beta-actin mRNA between these groups. However, there was no difference in the transcription rate of the albumin gene between control and uremic rats. Northern analysis showed that albumin mRNA isolated from uremic rat liver was identical in size with that from the control. These results suggested that a posttranscriptional process, involving the destabilization of cytoplasmic mRNA, is responsible for the uremia-induced repression of albumin synthesis.

Animals↗

The effects of sex hormones on the synthesis of prostacyclin (PGI2) by vascular tissues.

The effects of estradiol and testosterone on prostacyclin (PGI2) release (measured as 6-keto-PGF1 alpha) by vascular tissues using rat aortic rings and cultured rabbit aortic smooth muscle cells (SMC) were investigated. Aortic SMC were prepared from either explants of atherosclerotic intima or those of normal media. Aortic rings obtained from male and female rats which had been treated with estradiol resulted in increased PGI2 synthesis. Furthermore, PGI2 synthesis by cultured medial SMC was significantly increased in the presence of estradiol (10(-7), 10(-9) M). An increased tendency in PGI2 synthesis was also observed in intimal SMC. On the other hand, aortic rings obtained from female rats treated with testosterone resulted in a significant decrease in PGI2 synthesis. However, aortic rings from testosterone-treated male rats and cultured medial and intimal SMC treated with testosterone (10(-6), 10(-8) M) for 48 hr did not show any significant changes in PGI2 synthesis. We also found greater PGI2 synthesis by intimal SMC compared with that by medial SMC. These results suggest that estradiol and testosterone may have opposite functions in the development of atherosclerosis, that is, estradiol for anti-atherosclerotic and testosterone for atherogenic, by modulating PGI2 synthesis by vascular tissues.

Animals↗

Comparison of therapeutic efficacy of neuroses between CM6912 (ethyl loflazepate) and diazepam in a double-blind trial.

1. The therapeutic efficacy on several neuroses between CM6912 and diazepam (DZP) was comparatively investigated by means of intergroup comparison method in a double-blind trials. CM6912 was given to CM-1 group on the basis of twice daily dose of 1 mg each in the morning and evening and to CM-2 group on the basis of once daily dose of 2 mg only in the evening and DZP was given to another group on the basis of three times each dose of 2 mg. 2. As for the overall evaluation, no significant differences were found in the percentages of final global improvement rating among three groups. It resulted in "markedly improved" by 22% in CM-2 group, 18% in CM-1 group and 15% in DZP group in order, and "more than moderately improved" by 62% in CM-2 group, 56% in DZP group and 51% in CM-1 group in order. 3. As for the overall safety rating, no differences were found in the incidence of adverse reactions. 4. As for the global utility rating, it resulted in "extremely useful" by 22% in CM-2 group, 14% in CM-1 group and 8% in DZP group in order, showing significant superiority of CM-2 group to DZP group (p less than 0.05). It resulted in "more than useful" by 58% in CM-2 group, 52% in DZP group and 50% in CM-1 group in order.

Anti-Anxiety Agents↗

Identity of alanine:glyoxylate aminotransferase with alanine:2-oxoglutarate aminotransferase in rat liver cytosol.

Rat liver soluble fraction contained 3 forms of alanine: glyoxylate aminotransferase. One with a pI of 5.2 and an Mr of approx. 110,000 was found to be identical with cytosolic alanine:2-oxoglutarate aminotransferase. The pI 6.0 enzyme with an Mr of approx. 220,000 was suggested to be from broken mitochondrial alanine:glyoxylate aminotransferase 2 and the pI 8.0 enzyme with an Mr of approx. 80,000 enzyme from broken peroxisomal and mitochondrial alanine:glyoxylate aminotransferase 1. These results suggest that the cytosolic alanine: glyoxylate aminotransferase activity is due to cytosolic alanine: 2-oxoglutarate aminotransferase.

Alanine Transaminase↗

Effect of insulin on the production of prostacyclin and cell proliferation in cultured smooth muscle cells.

We have investigated the effects of insulin on the synthesis of prostacyclin and cell proliferation in cultured vascular smooth muscle cells, which have been thought to play important roles in the development of atherosclerosis. Prostacyclin was measured as 6-keto-PGF1 alpha in the culture medium, and cell proliferation as incorporation of [3H]thymidine into DNA. Our studies showed that insulin reduced production of prostacyclin and stimulated cell proliferation in SMC. Like insulin, dibutyryl cAMP inhibited the production of prostacyclin, whereas it did not stimulate cell proliferation. No significant changes in cAMP levels were found on the addition of insulin into the culture medium. Therefore, cAMP does not appear to be involved in the mechanisms of these insulin effects. These results again suggest that hyperinsulinemia could be one of the important factors in atherosclerosis.

1-Methyl-3-isobutylxanthine↗

Differential regulation of the degradation of myofibrillar and total proteins in skeletal muscle of rats: effects of streptozotocin-induced diabetes, dietary protein and starvation.

In order to examine the effects of streptozotocin-induced diabetes, dietary protein, and starvation on protein degradation in skeletal muscle of perfused rat hindquarters, rates of myofibrillar and total protein degradation were estimated from the release of 3-methylhistidine (N tau-methylhistidine, 3-MH) and tyrosine, respectively. In rats fed a 20% protein diet (controls), the fractional degradation rate of myofibrillar protein was approximately 56% of the total muscle protein. In streptozotocin-induced diabetic rats, 3-MH release by perfused muscle increased significantly on d 1 of treatment and sustained a high level thereafter. By contrast, tyrosine release did not change. Feeding a 50% protein diet for 1 wk altered neither 3-MH nor tyrosine release. Protein-free feeding, though, suppressed tyrosine release to 49% of controls, but did not affect 3-MH release. Starvation for 3 d did not affect tyrosine release, but did increase 3-MH release to 203% of controls. These results indicate that in diabetic and starved rats myofibrillar protein is preferentially degraded, while in protein-deficient rats, non-myofibrillar protein degradation is selectively suppressed. From these observations, we conclude that the degradation of myofibrillar and non-myofibrillar proteins in skeletal muscle can be differentially regulated.

Animals↗

Purification and characterization of human microsomal dipeptidase.

Human microsomal dipeptidase (MDP, formerly referred to as dehydropeptidase-I or renal dipeptidase) [EC 3.4.13.11] was solubilized from the membrane fraction of kidney by treatment with octyl-beta-D-glucoside and purified by a procedure including ion exchange chromatography and affinity chromatography on cilastatin-immobilized Sepharose. The purified human MDP was found to be homogeneous on sodium dodecyl sulfate (SDS)-polyacrylamide gel electrophoresis. The apparent molecular weight (Mr) was estimated by SDS-polyacrylamide gel electrophoresis under non-reducing conditions to be 130 kDa, comprising a homodimer of two subunits. After treatment with endoglycosidase F, human MDP showed a single band with an apparent Mr of 42 kDa on SDS-polyacrylamide gel electrophoresis. Human MDP was found to bind to Con A-Sepharose and the activity was eluted with methyl-alpha-D-mannopyranoside, suggesting that human MDP is a glycoprotein. We also examined the substrate specificity of human MDP and found that human MDP catalyzed the hydrolysis of S(substituent)-L-cysteinyl-glycine adducts such as L-cystinyl-bis(glycine) and S-N-ethylmaleimide-L-cysteinyl-glycine, as well as the conversion of leukotriene D4 to leukotriene E4. These results suggest that MDP might play an important role in the metabolism of glutathione and leukotriene.

Amino Acids↗

Antitumor activities of a novel 9-aminoanthracycline (SM-5887) against mouse experimental tumors and human tumor xenografts.

The antitumor effects of SM-5887, a totally synthetic 9-aminoanthracycline derivative, were evaluated in six murine experimental tumor systems (P388, Ehrlich carcinoma, sarcoma 180, Lewis lung carcinoma, B16 melanoma and colon 38) and nine human tumor-nude mouse systems (one breast cancer, two lung cancers and six gastric cancers). Characteristically SM-5887 showed excellent antitumor activities, superior to adriamycin (ADR), against human tumor xenografts, although its activities against murine experimental tumors were almost equal to those of ADR. When the human tumors were implanted sc in female athymic mice (BALB/c, nu/nu) and their volume reached 100-300 mm3, SM-5887 and ADR were injected iv. All nine human tumors tested showed statistically significant responses to SM-5887, and 7 of them were strongly suppressed in their growth by SM-5887 so that minimum T/C values were less than 30% at the maximum tolerated dose (MTD, 25 mg/kg) with a single iv injection. Compared with ADR, SM-5887 was statistically more effective in five tumors (one breast, one lung and three gastric), equal in two tumors (two gastric), and less potent in two tumors (one lung and one gastric). In addition, the 10-day-interval repeated iv treatments with SM-5887 at the MTD (25 mg/kg) resulted in remarkably potent antitumor effects (including complete regression) against human gastric cancer, 4-1ST, implanted in nude mice without enhancement of toxic effects. SM-5887 was also effective against ip-inoculated P388 by oral administration as well as iv injection.

Administration, Oral↗