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Biomedical subjects

A Endo

Publications and source records attributed to A Endo.

At least 253 records · Page 14Linked to original sources

Regulation of cholesterol synthesis in cultured mouse mammary carcinoma FM3A cells.

Mouse mammary carcinoma FM3A cells, which are able to grow in a serum-free medium, have novel characteristics that could be valuable in biochemical and somatic cell genetic studies. In FM3A cells grown in the presence of serum, both sterol synthesis and the activity of 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase, the major rate-limiting enzyme in the cholesterol biosynthetic pathway, were strongly suppressed by human low density lipoprotein (LDL). The addition of LDL (50 micrograms protein/ml) resulted in a 50% decrease in the reductase activity within 3 h and a 95% reduction after 24 h. Similarly, over 90% suppression of the reductase activity was obtained by the addition of LDL or mevalonolactone when the cells were grown on a serum-free medium. ML-236B (compactin), a specific inhibitor of HMG-CoA reductase, inhibited sterol synthesis from [14C]acetate by 80% at 1 microM. Reductase activity in FM3A cells was increased by 2.5- to 5-fold when the cells were treated with ML-236B (at 0.26-2.6 microM for 24 h). Thus, in FM3A cells, HMG-CoA reductase activity responded well to LDL, as is observed in human skin fibroblasts. Along with other novel features of this cell line, the present observations indicate that FM3A cells should be useful in biochemical and somatic cell genetic analysis of cholesterol metabolism, especially as regards the regulation of HMG-CoA reductase activity.

Animals↗

Dihydromonacolin L and monacolin X, new metabolites which inhibit cholesterol biosynthesis.

Dihydromonacolin L and monacolin X those are structurally related to monacolin K, a potent inhibitor of cholesterol biosynthesis, were isolated from cultures of a mutant of Monascus ruber. The structures of these two metabolites were determined by a combination of physical techniques. Data for dihydromonacolin L and monacolin X as inhibitors of hydroxymethylglutaryl-CoA reductase and sterol biosynthesis in vitro are also given.

Animals↗

Microbial phosphorylation of compactin (ML-236B) and related compounds.

Several fungal strains were found to convert compactin (ML-236B) to 5'-phosphocompactic acid. The product was isolated by solvent extraction and column chromatography, and identified by IR, UV, 1H NMR, 13C NMR and 31P NMR spectroscopy. Related structures (monacolin K, L and X) were also transformed to their corresponding phosphorylated analogues. The products were re-converted back to respective parental compounds by treatment with alkaline phosphatase of calf intestine.

Alkaline Phosphatase↗

Acetyl CoA carboxylase inhibitors from the fungus Gongronella butleri.

Four active metabolites that specifically inhibit acetyl CoA carboxylase, the late-limiting enzyme in fatty acid biosynthesis, have been isolated from a strain of Gongronella butleri mating type (+). Their chemical structures were determined to be octyl pentanedioic acid, 9-decenyl-1-pentenedioic acid, decanyl-1-pentenedioic acid, decanyl-2-pentenedioic acid, respectively. These compounds inhibited rat liver acetyl CoA carboxylase 50% at a concentration of 30 approximately 55 micrograms/ml.

Acetyl-CoA Carboxylase↗

Microbial hydroxylation of compactin (ML-236B) and monacolin K.

The Basidiomycete Schizophyllum commune was found to transform compactin (ML-236B) to 8a-hydroxycompactin. This compound was isolated by solvent extraction and column chromatography, and its structure was determined by a combination of IR, UV, 1H NMR and 13C NMR spectroscopy. Monacolin K was also converted to the corresponding hydroxylated analogue. Data on the inhibition of 3-hydroxy-3-methylglutaryl co-enzyme A reductase and sterol biosynthesis in vitro are presented for these hydroxylated compounds.

Agaricales↗

Specific inhibition of glyceraldehyde-3-phosphate dehydrogenase by koningic acid (heptelidic acid).

A sesquiterpene named koningic acid has been isolated from a strain of Trichoderma koningii as a potent inhibitor of ATP generation in the glycolytic pathway. From experiments with both cultured mouse carcinoma FM3A cells and isolated enzymes, it was shown that koningic acid is a specific inhibitor of glyceraldehyde 3-phosphate dehydrogenase that catalyzes the conversion of glyceraldehyde 3-phosphate to 3-phosphoglycerate.

Adenosine Triphosphate↗

Effects of compactin on the levels of 3-hydroxy-3-methylglutaryl coenzyme A reductase in compactin-resistant C100 and wild-type cells.

A cell line, C100, resistant to 225 microM compactin, has been isolated which overproduces 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase approximately 100-fold compared to the parental cell line [E. Hardeman, H. Jenke and R. Simoni (1983) Proc. Natl. Acad. Sci. U.S.A. 80, 1516-1520]. It is demonstrated that the overproduction of HMG-CoA reductase in these cells is the result of increased enzyme synthesis due to elevated levels of translatable mRNA. Furthermore, the apparent molecular weight of the in vitro translation product is 94,000, which agrees with the molecular weight of the in vivo synthesized HMG-CoA reductase protomer in C100 cells. However, a comparison of the Staphylococcus aureus V8 proteolysis patterns between the in vitro and in vivo translation products reveals structural differences which suggests in vivo post-translation modification(s). It is also demonstrated unequivocally, by comparing proteolytic cleavage patterns and pulse-chase experiments, that the previously reported 63,000-, 52,000-, and 38,000-Da polypeptides recognized by HMG-CoA reductase antiserum derive from the 94,000-Da protomer as a result of nonphysiological proteolysis. Finally, the types of regulatory mechanisms involved in both the induction and repression of the enzyme in the presence or absence of compactin were determined. Four biochemical parameters of HMG-CoA reductase were examined in variant and parental cells grown in the presence and absence of compactin: enzymatic activity, degradation rate, synthesis rate, and concentration of translatable mRNA. These studies revealed that changes in cellular HMG-CoA reductase content are a function of concurrent changes in the rates of enzyme degradation and synthesis. Changes in enzyme synthesis are due to alterations in the level of translatable mRNA.

Animals↗

Teratogenic effects of avidin-induced biotin deficiency in mice.

Teratogenic effects of maternal biotin deficiency were examined at different levels of severity by adding three levels of avidin (10, 20, or 40 mg/kg) in the basal diet. There was a considerable increase of fetuses with multiple congenital malformations (micrognathia, cleft palate, and micromelia) with increasing amounts of avidin. The dose-response relationship was observable in the incidence of each malformation as well. The body weight of live fetuses was also significantly reduced. However, the dams did not exhibit any typical signs of biotin deficiency, such as loss of hair, dermatitis, or nervous irritability. These results suggest that biotin is important for early embryonic development in the mouse.

Abnormalities, Multiple↗

The SCE test as a tool for cytogenetic monitoring of human exposure to occupational and environmental mutagens.

The sister chromatid exchange (SCE) test system using human peripheral lymphocytes is proposed as a valuable tool for the cytogenetic monitoring of exposure to potential chemical mutagens in the occupational environment. We examined the SCE frequencies in organic solvent-exposed workers and reviewed the effects of occupational and environmental chemicals on SCE frequencies. The results obtained in these exposed populations are rather contradictory, which may be related to confounding factors, such as personal life style (smoking, drinking, and drugs) of the examinees, tissue culture conditions and the number of subjects examined. We discussed some practical problems for exposure estimation and sample size determination and are led to the following conclusions. 1) The possible combined effects of potential mutagens and cigarette smoking should be taken into consideration when using the SCE test system. 2) Cell cycle kinetic analysis by differential chromatid staining would provide valuable information as a biological indicator for the monitoring of the workers exposed to xenobiotics. 3) By appropriately setting the number of examinees, monitoring would become more efficient in detecting an increased SCE frequency in the exposed populations. Further studies are also required to enhance the sensitivity of the SCE test system for monitoring purposes.

Benzene↗

Chromosome aberrations and sister chromatid exchanges in styrene-exposed workers with reference to their smoking habits.

The incidences of chromosome aberrations and the frequencies of sister chromatid exchanges (SCE) were investigated in cultured lymphocytes of 18 styrene-exposed workers in comparison with six controls. There was a marginal increase in the incidence of structural chromosomal aberrations in first-division metaphases in the styrene-exposed workers, as compared with the nonexposed controls. However, there was no difference in SCE frequencies. When each group was divided into smokers and nonsmokers, styrene-exposed smokers tended to have higher SCE frequencies than styrene-exposed nonsmokers. Furthermore, cell proliferation was inhibited in styrene-exposed workers (both smokers and nonsmokers) and control smokers.

Adolescent↗

[Clinical investigation of intratumoral OK-432 administration].

The clinical effect of intratumoral administration of OK-432 was evaluated. The patients with nonresectable advanced cancer were divided into three groups according to administration method of OK-432 at laparotomy: Group I; Intratumoral administration, Group II; Scattering to the abdominal cavity, and Group III; No OK-432, administration. Improvement in suppression of tumor progression was more frequently noticed in the Group I compared to the Group II and III, but there was no significant difference in terms of survival time and rate among the three groups.

Adenocarcinoma↗