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Biomedical subjects

Y Endo

Publications and source records attributed to Y Endo.

At least 127 records · Page 7Linked to original sources

Effective suppression of HIV-1 gene expression by a mammalian tRNA 3' processing endoribonuclease and external guide sequence oligozymes.

We examined the suppression of virus expression by cleavage of the HIV-1 RNA gene using a mammalian tRNA 3' processing endoribonuclease and an External Guide Sequence Oligozyme (EGS) in vivo. We constructed an EGS expression vector that used the tRNA(met) promoter as an expression cassette for EGS. The EGS expression vector was targeted to the upstream region of gag, region. The EGS expression vector was co-transfected into COS cells with the HIV-1 gene plasmid vector. As compared with the EGS non-expressing cells and the EGS expressing cells, the EGS expressing cells with the targeted gag start codon had a clearly decreased amount of the HIV-1 gag p24 protein. The EGS expressing cells with the targeted gag start codon showed effective suppression of HIV-1 gene expression. Thus, these studies describe novel gene targeting agents for the inhibition of gene expression and antiviral activity.

Animals↗

Some properties and the possible role of intrinsic ATPase of rat liver 80S ribosomes in peptide bond elongation.

The properties and role in peptide elongation of ATPase intrinsic to rat liver ribosomes were investigated. (i) Rat liver 80S ribosomes showed high ATPase and GTPase activities, whereas the GTPase activity of EF-1alpha and EF-2 was very low. mRNA, aminoacyl-tRNA, and elongation factors alone enhanced ribosomal ATPase activity and in combination stimulated it additively or synergistically. The results suggest that these translational components induce positive conformational changes of 80S ribosomes by binding to different regions of ribosomes. Translation inhibitors, tetracyclin and fusidic acid, inhibited ribosomal ATPase with or without elongational components. (ii) Two ATPase inhibitors, AMP-P(NH)P and vanadate, did not inhibit GTPase activities of EF-1alpha and EF-2 assayed as uncoupled GTPase, but they did inhibit poly(U)-dependent polyphe synthesis of 80S ribosomes. (iii) Effects of AMP-P(NH)P and ATP on poly(U)-dependent polyphe synthesis at various concentrations of GTP were examined. ATP enhanced the activity of polyphe synthesis even at high concentrations of GTP, suggesting a specific role of ATP. At low concentrations of GTP, the extent of inhibition by AMP-P(NH)P was very low, probably owing to the prevention of the reduction of the GTP concentration. (iv) Vanadate inhibited the translocation reaction by high KCl-washed polysomes. These findings together indicate that ribosomal ATPase participates in peptide translation by inducing positive conformational changes of mammalian ribosomes, in addition to its role of chasing tRNA from the E site.

Adenosine Triphosphatases↗

An ATPase center of rat liver 30S-5SRNP particles.

Treatment of 30S-5SRNP with 1 M Cs(2)SO(4) at 2 degrees C overnight followed by sucrose density-gradient centrifugation yielded particles smaller than 30S-5SRNP, designated as CsS-particles. CsCl density-gradient centrifugation of CsS-particles showed the homogeneity of the particles containing about half the amount of proteins in 30S-5SRNP particles. The particles contained 18SrRNA, 5SRNP and about half the number of proteins in 30S-5SRNP. The ATPase activity of freshly prepared CsS-particles was about half the original 30S-5SRNP level although it was unstable even at 2 degrees C. Poly(U) slightly enhanced the activity, and phe-tRNA(phe) stimulated it concentration-dependently. EF-1a alone enhanced it, and in combination with poly(U) and phe-tRNA(phe) stimulated it markedly. EF-2 alone markedly increased it. The activity with the full components for elongation described above became very high, being comparable to that of the original 30S-5SRNP and twice that of 40S subunits. A two-dimensional electrophoretogram of the protein in CsS-particles revealed 9 small subunit protein species, in addition to L5, which included proteins interacting with mRNA and two elongation factors. Taken together with the results of our preceding study indicating the participation of ATPase of 80S ribosomes in peptide elongation, the present results indicate CsS-particles may be a part of the ATPase centre of 80S ribosomes.

Adenosine Triphosphatases↗

Studies on ATPase(GTPase) intrinsic to E. coli ribosomes.

(1) Escherichia coli 70S ribosomes showed intrinsic ATPase and GTPase activities, although they were much lower than those of rat liver ribosomes. The latter activity was higher than the former one. (2) The ATPase activity was inhibited by GTP and GMP-P(NH)P, and the GTPase activity was inhibited by ATP and AMP-P(NH)P, indicating a close relationship between the two enzymes. (3) Elongation components alone or in combination enhanced the ATPase activity, indicating the possible correlation of ribosomal ATPase with elongational components. (4) Vanadate at the concentrations that did not inhibit the GTPase activities of EF-Tu and EF-G, depressed the poly(U)-dependent polyphe synthesis, suggesting that ribosomal ATPase (GTPase) participates in peptide elongation by inducing positive conformational changes of ribosomes required for the attachment of elongational components.

Adenosine Triphosphatases↗

Bacterial translocation and tumor necrosis factor-alpha gene expression in experimental hemorrhagic shock.

OBJECTIVE: To investigate whether bacterial translocation is the causative mechanism underlying cytokine production during hemorrhagic shock. DESIGN: Prospective, randomized, unblinded animal study. SETTING: Surgical research laboratories of Shiga University of Medical Science. SUBJECTS: Male Sprague-Dawley rats. INTERVENTIONS: The rats were randomly divided into three groups. Each animal was anesthetized with pentobarbital, given a continuous infusion of 0.9% saline, and monitored for blood pressure. The normoxic and sham shock groups breathed room air, whereas the hyperoxic shock group was administered 100% oxygen. Except in the sham shock group, blood was withdrawn to induce a hemorrhagic shock state, then the shed blood was reinfused. Sixty minutes after the induction of hemorrhagic shock, arterial blood cultures were performed in all three groups. The animals were then killed, and their mesenteric lymph nodes (MLNs) were harvested for bacterial culture. The terminal ileum, liver, spleen, kidney, lung, and MLNs were also collected for histologic study by in situ hybridization. MEASUREMENTS AND MAIN RESULTS: In the bacteriologic study, the prevalence of bacterial translocation was 0% (0/11) in the hyperoxic shock group, 55% (6/11) in the normoxic shock group, and 0% (0/9) in the sham shock group. In the in situ hybridization study, tumor necrosis factor-alpha gene expression was detected only in the ileal tissue, MLNs, and spleens of the normoxic shock group. Blood cultures were sterile in all three groups. CONCLUSIONS: Bacterial translocation occurred in MLNs within 1 hr of hemorrhage. Hemorrhagic shock causes tumor necrosis factor-alpha gene expression as well as bacterial translocation in MLNs, but not in the liver, in this model. Bacterial translocation was prevented by hyperoxia early in the course of hemorrhagic shock. Hyperoxia also prevented tumor necrosis factor-alpha gene expression along the bacterial invasion route.

Animals↗

Short- and long-term clinical outcomes in rhesus monkeys inoculated with a highly pathogenic chimeric simian/human immunodeficiency virus.

A highly pathogenic simian/human immunodeficiency virus (SHIV), SHIV(DH12R), isolated from a rhesus macaque that had been treated with anti-human CD8 monoclonal antibody at the time of primary infection with the nonpathogenic, molecularly cloned SHIV(DH12), induced marked and rapid CD4(+) T cell loss in all rhesus macaques intravenously inoculated with 1.0 50% tissue culture infective dose (TCID(50)) to 4.1 x 10(5) TCID(50)s of virus. Animals inoculated with 650 TCID(50)s of SHIV(DH12R) or more experienced irreversible CD4(+) T lymphocyte depletion and developed clinical disease requiring euthanasia between weeks 12 and 23 postinfection. In contrast, the CD4(+) T-cell numbers in four of five monkeys receiving 25 TCID(50)s of SHIV(DH12R) or less stabilized at low levels, and these surviving animals produced antibodies capable of neutralizing SHIV(DH12R). In the fifth monkey, no recovery from the CD4(+) T cell decline occurred, and the animal had to be euthanized. Viral RNA levels, subsequent to the initial peak of infection but not at peak viremia, correlated with the virus inoculum size and the eventual clinical course. Both initial infection rate constants, k, and decay constants, d, were determined, but only the latter were statistically correlated to clinical outcome. The attenuating effects of reduced inoculum size were also observed when virus was inoculated by the mucosal route. Because the uncloned SHIV(DH12R) stock possessed the genetic properties of a lentivirus quasispecies, we were able to assess the evolution of the input virus swarm in animals surviving the acute infection by monitoring the emergence of neutralization escape viral variants.

Amino Acid Substitution↗

Elevation of histidine decarboxylase activity in skeletal muscles and stomach in mice by stress and exercise.

The effects of different types of stress (water bathing, cold, restraint, and prolonged walking) on histidine decarboxylase (HDC) activity in masseter, quadriceps femoris, and pectoralis superficial muscles, and in the stomach were examined in mice. All of these stresses elevated gastric HDC activity. Although water bathing, in which muscle activity was slight, was sufficiently stressful to produce gastric hemorrhage and to increase gastric HDC activity, it produced no detectable elevation of HDC activity in any of the muscles examined. The other stresses all elevated HDC activity in all three muscles. We devised two methods of restraint, one accompanied by mastication and the other not. The former elevated HDC activity in the masseter muscle, but the latter did not. These results suggest that 1) HDC activity in the stomach is an index of responses to stress, 2) the elevation of HDC activity in skeletal muscles during stress is induced partly or wholly by muscle activity and/or muscle tension, and 3) stress itself does not always induce an elevation of HDC activity in skeletal muscles.

Animals↗

Renin expression in COX-2-knockout mice on normal or low-salt diets.

Experiments were performed in mice to investigate whether cyclooxygenase-2 (COX-2) in epithelial cells near the tubulovascular contact point (macula densa and TAL cells) may regulate renin gene expression in juxtaglomerular granular cells. Renin activity, afferent arteriolar granularity, and renin mRNA were determined in wild-type mice and in COX-2-knockout mice on control and low-NaCl diets. Renin activity in microdissected glomeruli assessed as angiotensin I formation in the presence of excess substrate and afferent arteriolar granularity determined by direct visualization and immunostaining were significantly reduced in COX-2 -/- compared with wild-type animals. Similarly, renal cortical mRNA levels were lower in COX-2 -/- than in wild-type mice. Maintaining mice on a low-salt diet for 14 days induced an increase in renin mRNA, afferent arteriolar granularity, and renin activity in wild-type mice. In contrast, renin mRNA and renin granularity did not significantly increase in low-salt-treated COX-2 -/- mice, whereas the increase in juxtaglomerular renin enzyme activity was markedly attenuated, but not fully blocked. In additional experiments we found that COX-2 mRNA was increased in angiotensin type 1A receptor-knockout mice compared with wild-type mice. We conclude that COX-2 in the tubulovascular contact region is a critical determinant of renin synthesis in granular cells under resting conditions and that it participates in the stimulation of renin expression caused by a low-NaCl intake.

Animals↗

Identification of protein disulfide isomerase as a phorbol ester-binding protein.

A specific binding protein for 12-O-tetradecanoylphorbol 13-acetate (TPA), different from protein kinase C (PKC) and histone H1, was purified from HeLa cell extract by the use of affinity gel pendanted with phorbol ester (TPA-GEL). The purified binding protein was identified as protein disulfide isomerase (PDI, EC 5.4.3.1) by peptide sequence analysis. The dissociation constants (Kd's) of TPA to PDI, histone H1 and PKCalpha were determined to be 1.03 x 10(-6) M, 5.70 x 10(-7) M, and 4.00 x 10(-7) m, respectively, by the surface plasmon resonance (SPR) method. TPA moderately inhibited PDI activity assessed in terms of reactivation of denatured RNase A.

Amino Acid Sequence↗

Enhancing effect of tumor promoters, phorbol esters and teleocidins on nuclear receptor-mediated transcription.

Interaction between a tumor promoter, 12-O-tetradecanoylphorbol 13-acetate (TPA), and ligands of nuclear receptors has been interpreted as the result of crosstalk between the nuclear receptors and oncogenic transcription factor AP-1. We examined the effects of various tumor promoters on transcription mediated by several nuclear receptors (RAR, TR, and ROR) by using thymidine kinase promoter-based reporter systems. TPA-type and other types of tumor promoters (okadaic acid, thapsigargin) enhanced reporter gene transcription independently of the cognate ligands for the receptors. Various kinds of TPA-type tumor promoters, teleocidine and its synthetic derivatives (indolactam, benzolactams) enhanced reporter gene transcription in proportion to their differentiation-inducing activities. Although TPA is known to activate protein kinase C (PKC), some PKC inhibitors did not inhibit the effect of TPA on reporter gene transcription. Interestingly, staurosporin, a strong PKC inhibitor and also a tumor promoter, enhanced the effect of TPA and weakly enhanced the reporter transcription itself. These results suggest this reporter system is useful for the evaluation of effects on the gene expression of various tumor promoters, including non-TPA type.

Animals↗

Dependence of estrogenic activity on the shape of the 4-alkyl substituent in simple phenols.

The ability of certain chemicals to mimic the effects of natural steroid hormones and their potential to disrupt the delicate balance of the endocrine system in animals has attracted much interest in recent years. Alkylphenolic chemicals have been reported to be weakly estrogenic. Estrogen receptor (ER) binding is primarily the result of interaction of the receptor with both a phenolic residue, and a hydrophobic pharmacophore. We have prepared and screened various phenols having a bulky 4-alkyl group, which may interact hydrophobically with the receptor, for estrogenic activity by using a previously described reporter gene assay employing COS-1 cells transfected with rat ER alpha-expression plasmid and an appropriate reporter plasmid. Some of the tested compounds, such as 4-(1-adamantyl)phenol and 4-cycloalkylphenols, exhibited much more potent activity than the typical estrogenic alkylphenol, 4-tert-octylphenol.

Animals↗

Modulators of tumor necrosis factor alpha production bearing dicarba-closo-dodecaborane as a hydrophobic pharmacophore.

Previous studies on the structural development of tumor necrosis factor alpha (TNF-alpha) production regulators derived from thalidomide (N-alpha-phthalimidoglutarimide) revealed that a hydrophobic substituent at the nitrogen atom of the phthalimide ring is critical for potent activity. We have designed and prepared phthalimide derivatives bearing a boron cluster, dicarba-closo-dodecaborane (carborane), which has a hydrophobic character and spherical geometry, as a novel candidate of biological response modifiers. These compounds were shown to regulate TNF-alpha production by HL-60 cells, as expected. The result provides a further example of the application of carborane as a hydrophobic pharmacophore of biologically active molecules.

Enzyme-Linked Immunosorbent Assay↗

New estrogenic antagonists bearing dicarba-closo-dodecaborane as a hydrophobic pharmacophore.

We have designed and synthesized estrogen antagonists bearing dicarba-closo-dodecaborane (carborane) as a hydrophobic pharmacophore based on the structure of 1-(4-hydroxyphenyl)-1,12-dicarba-closo-dodecaborane, a potent estrogen agonist that we reported previously. Compounds with a long alkyl chain bearing an amide moiety on the carborane skeleton (6, 7) showed estrogen antagonistic activity in a luciferase reporter gene assay using COS-1 cells transfected with a rat ER alpha-expression plasmid and as an appropriate reporter plasmid.

Animals↗

Improvement of productivity of active horseradish peroxidase in Escherichia coli by coexpression of Dsb proteins.

Coexpression of two classes of folding accessory proteins, molecular chaperones and foldases, can be expected to improve the productivity of soluble and active recombinant proteins. In this study, horseradish peroxidase (HRP), which has four disulfide bonds, was selected as a model enzyme and overexpressed in Escherichia coli. The effects of coexpression of a series of folding accessory proteins (DnaK, DnaJ, GrpE, GroEL/ES, trigger factor (TF), DsbA, DsbB, DsbC, DsbD, and thioredoxin (Trx)) on the productivity of active HRP in E. coli were examined. Active HRP was produced by very mild induction with 1 microM isopropyl-beta-D-thiogalactopyranoside (IPTG) at 37 degrees C, whereas the amount of active HRP produced by the induction with 1 mM IPTG was negligibly small. Active HRP production was increased significantly by coexpression of DsbA-DsbB (DsbAB) or DsbC-DsbD (DsbCD), while coexpression of molecular chaperones did not improve active HRP production. The growth of E. coli cells was inhibited significantly by the induction with 1 mM IPTG in a HRP single expression system. In contrast, when HRP was coexpressed with DsbCD, the growth inhibition of E. coli was not observed. Therefore, coexpression of Dsb proteins improves both the cell growth and the productivity of HRP.

Journal Article↗

Malignant fibrous histiocytoma in a Djungarian hamster.

A subcutaneous malignant fibrous histiocytoma (MFH) was observed in the region between the right posterior trunk and right hind limb of a 2-year-old male Djungarian hamster weighing 45 g. Histologically, the tumor consisted of bizarre multinucleated giant cells, histiocytic cells, and fibroblastic cells with a storiform pattern, and was considered to be of the storiform-pleomorphic type of MFH. Severe nuclear atypia with prominent nucleoli and many mitotic figures was also observed. Electron microscopy demonstrated fibroblastic cells and histiocytic cells. The fibroblastic cells were spindle-shaped, and sometimes had an invaginated nucleus. The histiocytic cells were polygonal with an oval or kidney-shaped nucleus. The cytoplasm of both cells contained numerous free ribosomes, small amounts of rough endoplasmic reticulum, and round mitochondria. Tumor cells were immunohistochemically positive for vimentin, and were thought to be of undifferentiated mesenchymal cell origin. This is the first report of spontaneous MFH in a hamster.

Animals↗

Simple and rapid determination of Gtpase activity by capillary electrophoresis without radioisotope.

In order to determine guanosine-5'-triphosphatase (GTPase) activity, we developed a simple, rapid and reliable method that utilizes capillary electrophoresis without radioisotope. Tubulin-GTPase was used for simple measurement of GTPase activity utilizing capillary electrophoresis. Tubulin, a component of microtubules, was incubated with guanosine-5'-triphosphate (GTP) in 100 mM 2-(N-morpholino) ethanesulfonic acid (MES) buffer (pH 6.5). Guanosine-5'-diphosphate (GDP) was determined as the hydrolyzed product of GTP. Guanosine-5'-monophosphate, GDP and GTP in the filtrate of the mixture were clearly separated using 10 mM MES buffer (pH 6.5) (migration time, 3.8, 5.5 and 7.2 minutes, respectively) with a fused-silica capillary column. The quantification of GDP was based on the peak area, which increased linearly with the concentration of GDP from 1 to 50 microM (r2=0.995). The peak area and migration time had good reproducibility; the intra-assay coefficient of variation (n=6) was 1.3% for peak area and 0.6% for migration time. As an application of this method, we examined the effect of dimethylarsinic acid, an effective antimitotic agent, on tubulin-GTPase. Dimethylarsinic acid inhibited tubulin-GTPase activity in a dose-dependent manner. The inhibition was not complete and the maximum decrease of the activity was about 50% at 200 microM dimethylarsinic acid. Thus, since this method is clean, simple and rapid, its application to the study of various GTPase proteins is expected to be useful.

Buffers↗