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Biomedical subjects

A Endo

Publications and source records attributed to A Endo.

At least 163 records · Page 9Linked to original sources

Inhibition of the acidification of endosomes and lysosomes by the antibiotic concanamycin B in macrophage J774.

The antibiotic concanamycin B was found to inhibit oxidized-low-density-lipoprotein(LDL)-induced accumulation of lipid droplets in the macrophage J774 at a concentration of 5-10 nM. Concanamycin B inhibited cholesteryl-ester synthesis from [14C]oleate by 50% at 14 nM without affecting the synthesis of triacylglycerol and polar lipids. Degradation of internalized oxidized 125I-LDL was inhibited by about 80% in cells treated with 25 nM concanamycin B, while cell-surface binding of oxidized 125I-LDL at 4 degrees C, uptake of surface-bound oxidized 125I-LDL and microsomal acyl-CoA:cholesterol acyltransferase activity were not significantly affected by the antibiotic at 25 nM. When J774 cells were treated with 25 nM concanamycin B at 37 degrees C for 60 min, there was a reduction of about 50% in the activity of cell-surface receptors. This reduction appeared to be due to partial trapping of the receptors within the cells. Concanamycin B significantly inhibited ATP-dependent acidification of endosomes and lysosomes of the J774 cells at a concentration of 4 nM. Since acidic condition of these organelles is required for receptor recycling and hydrolysis of lipoproteins, the results demonstrate that concanamycin-B inhibition of oxidized-LDL-induced accumulation of lipid droplets and cholesteryl esters in macrophages J774 is associated with reduced ATP-dependent acidification of these organelles.

Adenosine Triphosphate↗

Inhibition of the accumulation of lipid droplets in macrophage J774 by bafilomycin B1 and destruxin E.

Two microbial metabolites, bafilomycin B1 and destruxin E, have been found to inhibit significantly the oxidized low density lipoprotein (LDL)-induced accumulation of lipid droplets at 3 nM and 0.5 microM, respectively, in macrophage J774. The incorporation of [14C]oleate into cholesteryl esters in the cells incubated with oxidized LDL was inhibited to the same extent by the two compounds. Both compounds had no effect on the cell surface binding at 4 degrees C and the internalization of oxidized 125I-LDL as well as on the activity of acyl-CoA:cholesterol acyltransferase. However, when incubated with these compounds at 37 degrees C, receptors for oxidized LDL were partially trapped within the cell. In accordance with receptor accumulation, ATP-dependent acidification of endosomes and lysosomes was significantly inhibited by 50 nM bafilomycin B1 and 1 microM destruxin E, respectively. From these results it was concluded that the inhibition of ATP-dependent acidification of endosomes and lysosomes by bafilomycin B1 and destruxin E resulted in the reduction of oxidized LDL-induced synthesis of cholesteryl ester and thereby caused a reduced accumulation of lipid droplets in macrophage J774.

Animals↗

Inhibition of the uptake of oxidized low-density lipoprotein in macrophage J774 by the antibiotic ikarugamycin.

The antiprotozoal antibiotic ikarugamycin was found to significantly inhibit oxidized low-density lipoprotein(LDL)-induced accumulation of cholesteryl ester in macrophage J774 at a concentration over 1-4 microM. Cholesteryl ester synthesis from [14C]oleate in the macrophages was similarly inhibited by the antibiotic, while the synthesis of triacylglycerol and polar lipids was not affected. The internalization of oxidized [125I]LDL in macrophages was reduced to 50% by 2 microM ikarugamycin, while cell-surface binding of oxidized [125I]LDL, lysosomal hydrolysis of the internalized oxidized [125I]LDL and microsomal acyl-coenzyme A:cholesterol acyltransferase was not detectably inhibited by 5 microM ikarugamycin. The results demonstrated that ikarugamycin inhibited cholesteryl ester accumulation in macrophage J774 by specifically inhibiting the uptake of oxidized LDL.

Adenosine Triphosphate↗

Growth and differentiation schedule of mouse embryos obtained from delayed matings.

We previously showed that digit formation in mouse embryos from early morning mating seemed to progress faster than those from overnight mating. In this study, to confirm this phenomenon, we examine whether the embryos from normal (0 hr from ovulation to fertilization) and delayed matings (3, 6, or 9 hr from ovulation to fertilization) respond differently to some acute teratogens when they are treated at the same time point from mating. Five mg/kg of cytosine arabinoside (Ara-C) was given to pregnant mice intraperitoneally at 246, 249, or 252 hr (day of gestation (dg) 10) after mating. The patterns of Ara-C induced digit malformations in embryos from the delayed mating groups were those of more advanced stages, when compared with normal mating groups with the same time intervals from mating to Ara-C treatment. In other words, oocytes fertilized up to 9 hr after the presumed time of ovulation could grow similarly to those of normally fertilized oocytes. This catch-up phenomenon suggests that the ovulation clock should be used for the startpoint of the time scale of the growth and differentiation of embryos rather than fertilization clock.

Animals↗

Evolutionary pattern of the H 3 haemagglutinin of equine influenza viruses: multiple evolutionary lineages and frozen replication.

The nucleotide and deduced amino acid sequences of the haemagglutinin genes coding for the HA 1 domain of H3N8 equine influenza viruses isolated over wide regions of the world were analyzed in detail to determine their evolutionary relationships. We have constructed a phylogenetic model tree by the neighbour-joining method using nucleotide sequences of 15 haemagglutinin genes, including those of five viruses determined in the present study. This gene tree revealed the existence of two major evolutionary pathways during a twenty five-year period between 1963 to 1988, and each pathway appeared to consist of two distinct lineages of haemagglutinin genes. Furthermore, our analysis of nucleotide sequences showed that two distinct lineages of equine H3N8 viruses were involved in an equine influenza outbreak during the period of December 1971-January 1972 in Japan. The number of nucleotide changes between strains was proportional to the length of time (in years) between their isolation except for three of the HA genes. However, there are three exceptional strains isolated in 1971, 1987, and 1988, respectively. The haemagglutinin gene in these strains showed a small number of nucleotide substitutions after they branched off around 1963, suggesting an example of frozen replication. Although the estimated rate (0.0094/site/year) of synonymous (silent) substitutions of the haemagglutinin gene of equine H3N8 viruses was nearly the same as that of human H 1 and H 3 haemagglutinin genes, the rate of nonsynonymous (amino-acid changing) substitutions of the former equine virus gene was estimated to be 0.00041/site/year--that is about 5 times lower than that estimated for the human H 3 haemagglutinin gene. The present study is the first demonstration that multiple evolutionary lineages of equine H3N8 influenza virus circulated since 1963.

Amino Acid Sequence↗

Susceptibility to teratogenicity of hypervitaminosis-A in X-monosomy mice.

We previously showed that the incidence of external malformations induced by biotin deficiency did not differ either between XO and XX dams or between XO and XX fetuses. To clarify whether this phenomenon is specific to biotin deficiency or more generally associated with other teratogens, we examined whether XO mice are more susceptible to teratogenic effects of hypervitaminosis-A. Pregnant XO and XX mice were given an excessive vitamin A diets (1.0 to 1.5 x 10(6) IU/kg) from days 0 to 17 of gestation. Maternal hypervitaminosis-A produced a high incidence of external malformations (65 to 80%), skeletal anomalies (33 to 47%), and variations (99 to 100%) in the fetuses. However, there is no difference in their incidences between XO and XX dams or between XO and XX fetuses. Together with previous findings, this suggests that developmental stability of the mouse embryo is not affected by missing of one whole X chromosome even with exposure to teratogens.

Aneuploidy↗

Primary culture of liver cancer tissues with or without transcatheter arterial embolization and establishment of a cell strain.

More epithelial-like cells are found in primary cultures of transcathetel arterial embolization (TAE)-untreated human liver cancer tissues than in those of TAE-treated tissues. A new cell strain, HUH-33, established from the former, grows slowly and is untransplantable into nude mice and secretes alpha-fetoprotein, albumin and some other tumor markers. Chromosome numbers are widely distributed. HUH-33 expresses hepatocyte type keratin and contains desmosome- or intermediate filament bundle-like structures.

Aged↗

Development of a chemical form discrimination system for 14C species in gaseous waste.

A new system was developed for discriminating the chemical form of 14C species in gaseous waste from nuclear facilities. The system consists of an air sample reservoir, a concentration apparatus, a radio-gas chromatograph, and microcomputers. An air sample, which is part of the gaseous effluent released from a stack of a facility, is automatically collected in the tank by trigger signals of stack monitors. After passing the air through a silica gel column, carbon species contained in it are recovered in an activated carbon-supported palladium trap held at -120 degrees C. The recovered species are swept with helium gas and analyzed by the radiogas chromatograph using an activated carbon column and gas-flow counters. Output signals of the gas-flow counters are continuously recorded by the microcomputer. By using this system, the chemical forms of 14C, such as CO, CO2, CH4, C2H4, C2H6, and C3H8 are identified and quantified. A detectable concentration of 0.3 mBq cm-3 for 14CO2 can be obtained. The system has been used to monitor the gaseous waste released from the radioisotope production laboratory and the Japan Research Reactor 2 at Japan Atomic Energy Research Institute.

Air Pollutants, Radioactive↗

Origin and evolutionary characteristics of antigenic reassortant influenza A (H1N2) viruses isolated from man in China.

During the 1988/1989 influenza season, five antigenic reassortant influenza A (H1N2) viruses not previously isolated from man were isolated in Hebei province, People's Republic of China. All isolates contained haemagglutinins (HAs) and neuraminidases (NAs) which were antigenically similar to those of the recent Russian (H1N1) and Hong Kong influenza A (H3N2) viruses, respectively. The results of antigenic and nucleotide sequence analyses revealed that the genes encoding the polymerase, nucleoprotein, NA, matrix and non-structural proteins of the reassortant A/Hebei/24/89 (H1N2) virus were derived from the H3N2 parent virus, whereas its HA gene was from the H1N1 parent virus. The nucleotide sequences of the HA (encoding the HA1 subunit) and NA genes of the reassortant viruses were also determined. Phylogenetic trees constructed from these data by the neighbour-joining method revealed that the HA gene of the reassortant virus was closely related to those of recent human H1N1 viruses, whereas the NA gene was related to a recent human Hong Kong (H3N2) virus lineage.

Antigens, Viral↗

GC/MS analysis of urine in 3-hydroxy-3-methylglutaryl-CoA lyase deficiency.

A patient with 3-hydroxy-3-methylglutaric aciduria was diagnosed using gas chromatography mass spectrometry. The patient had severe metabolic acidosis, hypoglycemia and hyperammonemia and excreted abnormal amounts of 3-methylglutaconic, 3-hydroxy-3-methylglutaric, 3-methylglutaric, 3-hydroxyisovaleric and glutaric acids in the urine. 3-Hydroxy-3-methylglutaric acid appeared as two peaks on the chromatogram after trimethylsilylation. One was a tri-trimethylsilyl and the other a di-trimethylsilyl derivative. 3-Methylglutaconic acid appeared as three peaks: cis-, trans- and cyclic cis-isomers. The structure of these derivatives was elucidated by deuterium-labeled trimethylsilyl derivatization. The di-trimethylsilyl derivative of 3-hydroxy-3-methylglutaric acid and the cyclic cis-isomer of 3-methylglutaconic acid do not appear to have been previously described. After treatment with leucine restriction milk, the excretion of leucine catabolites decreased but 3-methylglutaconic and 3-hydroxy-3-methylglutaric acids continued to be excreted at abnormally high levels. It is concluded that these two metabolites are necessary for the chemical diagnosis of HMG-CoA lyase deficiency. This patient is the first case of HMG-CoA lyase deficiency to be reported in Japan.

Acidosis↗

Isolation, characterization and biological activities of concanamycins as inhibitors of lysosomal acidification.

Four new analogues of concanamycin family, designated concanamycins D, E, F G, were isolated from the mycelium of Streptomyces sp. A1509 by solvent extraction, silica gel column chromatography and HPLC. Structures of these compounds were identified by the combination of spectroscopic analyses. All of these compounds were structurally related to concanamycins A, B and C, which had been isolated previously, and inhibited the acidification of rat liver lysosomes at 10(-11)-10(-9) M concentration. The structure-activity study showed that the 18-membered macrolide ring and the 6-membered hemiketal ring portions of the molecules of concanamycin family are responsible for potent inhibitory activity.

Animals↗

Acaterin, a novel inhibitor of acyl-CoA: cholesterol acyltransferase produced by Pseudomonas sp. A92.

Acaterin, a novel inhibitor of acyl-CoA: cholesterol acyltransferase (ACAT), was isolated from a culture broth of Pseudomonas sp. A92 by Diaion HP-20 column chromatography, solvent extraction and reverse phase HPLC. Spectroscopic analyses of the compound yielded 3-(1-hydroxyoctyl)-5-methyl-2(5H)-furanone as the proposed structure. In the presence of oxidized low density lipoprotein, acaterin inhibited the synthesis of cholesteryl ester in macrophage J774 by 50% at a concentration of 45 microM. Acaterin also inhibited ACAT activity in the rat liver microsomes by 50% at a concentration of 120 microM. Kinetic studies suggested that inhibition of ACAT by acaterin was noncompetitive with respect to oleoyl-CoA.

Animals↗

Effects of prodigiosin 25-C on cultured cell lines: its similarity to monovalent polyether ionophores and vacuolar type H(+)-ATPase inhibitors.

Prodigiosin 25-C inhibited the proliferation of various cultured cell lines more strongly when concanavalin A (Con A) was added to the cultures. The increase in sensitivity was most evident in T lymphoma YAC-1 cells. The combination of prodigiosin 25-C and Con A induced characteristic morphological changes in these cells. In the presence of Con A, monovalent polyether ionophores and vacuolar type H(+)-ATPase inhibitors induced effects similar to those of prodigiosin 25-C on YAC-1 cells. Prodigiosin 25-C had neither K+ionophore activity nor inhibitory effect on vacuolar type H(+)-ATPase. A Golgi mannosidase II inhibitor, swainsonine, inhibited the proliferation of YAC-1 cells only when Con A was added. Prodigiosin 25-C and swainsonine increased Con A binding receptors on the surface of YAC-1 cells. These results suggest that prodigiosin 25-C affects the intracellular transport and/or processing of glycoproteins.

Biological Transport↗

Unstable amplification of the chromosomal gene for 3-hydroxy-3-methylglutaryl coenzyme A reductase in compactin-resistant CR200 cells.

CR200 cells, a compactin-resistant clone of mouse FM3A cells, overaccumulate 3-hydroxy-3-methylglutaryl coenzyme A reductase. The elevated reductase activity is not regulated normally by low-density lipoprotein, mevalonate and 25-hydroxycholesterol. The amounts of reductase protein and mRNA were elevated in CR200 cells by 40- to 60-fold, as compared to those in parental FM3A cells and the rate of reductase transcription and the number of copies of reductase gene were increased in CR200 cells by 20- to 50-fold. In the parental cells, mevalonate and 25-hydroxycholesterol suppressed reductase transcription by greater than 90%, while that in the mutant cells was suppressed by only 20-50%, suggesting a regulatory alteration in the gene transcription in CR200 cells. When CR200 cells were grown for 10-20 weeks in the absence of compactin, levels of the gene amplification were reduced from approx. 50-fold to approx. 2-fold, along with a marked decrease in reductase activity and compactin-resistance of the cells. While the gene amplification was unstable, minute chromosomes were not seen in the cells and centrifugal fractionation and in situ analysis demonstrated that the amplified reductase gene was present on 2-3 chromosomes in the pseudotetraploidal CR200 cells having approx. 78 chromosomes. From these results it was concluded that the amplified reductase gene, which is responsible for overaccumulation of reductase, is located on chromosomes but is unstable in CR200 cells.

Animals↗

Identification of koningic acid (heptelidic acid)-modified site in rabbit muscle glyceraldehyde-3-phosphate dehydrogenase.

The sesquiterpene antibiotic koningic acid (heptelidic acid) has been previously demonstrated to modify glyceraldehyde-3-phosphate dehydrogenase in specific manner, probably by binding to the sulfhydryl residue at the active site of the enzyme (Sakai, K., Hasumi, K. and Endo, A. (1988) Biochim. Biophys. Acta 952, 297-303). Rabbit muscle glyceraldehyde-3-phosphate dehydrogenase labeled with [3H]koningic acid was digested with trypsin. Reverse-phase HPLC revealed that the label is associated exclusively with a tryptic peptide having 17 amino acid residues. Microsequencing and fast atom bombardment mass spectrometry demonstrated that the peptide has the sequence Ile-Var-Ser-Asn-Ala-Ser-Cys-Thr-Thr-Asn-Cys-Leu-Ala-Pro-Leu-Ala-Lys. In comparison to the amino acid sequence of glyceraldehyde-3-phosphate dehydrogenase from other species, this peptide is in a highly conserved region and is part of the active site of the enzyme. The cysteine residue corresponding to the Cys-149 in the pig muscle enzyme, which has been shown to be an essential residue for the enzyme activity, was shown to be the site modified by koningic acid. Structural analyses of the reaction product of koningic acid and L-cysteine suggested that the epoxide of koningic acid reacts with the sulfhydryl group of cysteine residue, resulting in a thioether.

Amino Acids↗