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Biomedical subjects

H Ohmori

Publications and source records attributed to H Ohmori.

At least 199 records · Page 11Linked to original sources

Ion channels for the mechano-electrical transduction and efferent synapse of the hair cell.

Auditory and vestibular information is applied to the hair cell hair bundle as mechanical energy, and is transduced into electrical energy by gating ion channels. The m-e.t. channel has a unitary conductance of 50 pS and a broad selectivity to monovalent cations and to divalent cations. Ca ions are the most permeable through the channel. The angular displacement of the hair bundle is the primary gating factor. Circumstantial evidence indicates the possibility of the direct gating of channels by the membrane deformation itself. The transduction potential activates voltage gated Ca channel and leads to the release of neurotransmitters which activate afferent neurones. Cholinergic muscarinic receptors likely mediate the inhibitory efferent innervation to the hair cell.

Animals↗

Selective regulation of antigen-specific IgE response by cyclic AMP level in murine lymphocytes.

We have reported that prostaglandin E2 (PGE2) is a selective stimulator of the antigen-specific IgE response [6]. Because PGE2 is known to elevate intracellular cAMP, we investigated the regulatory role of cAMP in the production of antigen-specific IgE. Anti-TNP IgE response was induced by stimulating TNP-KLH-primed BALB/c spleen cells with the same antigen in vitro. Addition of 10-100 microM dibutyryl cAMP (DBcAMP) to the lymphocyte culture resulted in a 2-3-fold increase in anti-TNP IgE response without affecting the production of anti-TNP IgG1 or IgM. Forskolin, a stimulator of adenylate cyclase, also specifically augmented the IgE response. In contrast, 2',5'-dideoxyadenosine, an inhibitor of adenylate cyclase, suppressed IgE production in an isotype-specific manner. These results suggest that IgE synthesis can be selectively modulated by intracellular cAMP level. Enhancement of IgE production by DBcAMP was observed, particularly in highly primed spleen cells, suggesting that IgE-committed B cells are subjected to regulation by cAMP.

Animals↗

Suppression of interleukin 4 production from type 2 helper T cell clone by antisense oligodeoxynucleotide.

Type 2 helper T cell (Th2) clone has been reported to secrete interleukin (IL) 4 and IL5 in response to the specific antigen presented by syngeneic antigen-presenting cells. In the present report, we synthesized phosphorothioate analogue of an antisense oligodeoxynucleotide complementary to nucleotide 17-36 of IL4 mRNA (S-oligo), and tested its ability to inhibit IL4 production from a Th2 clone, D10.G4.1. (D10). D10 cells were cultured with mitomycin C-treated C3H spleen cells in the presence of 100 micrograms/ml conalbumin for 48-72 h. Secreted IL4 and IL5 were assayed biologically using HT2 cells and dextran sulfate-stimulated murine B cells, respectively. When 5-10 micrograms/ml S-oligo was added to the culture, IL4 production from D10 was suppressed by 70-90%. The same concentrations of S-oligo inhibited neither the antigen-induced proliferation of D10 nor the secretion of IL5 from the Th2 clone. These results suggest that this S-oligo is useful for inhibiting the production of IL4 preferentially without affecting other functions of Th2 cells.

Animals↗

Direct proof that the primary site of action of cytochalasin on cell motility processes is actin.

We have previously described the isolation of a mutant KB cell (Cyt 1 mutant) resistant to the cytotoxic effect of cytochalasin B (CB). The Cyt 1 mutant carries an altered form of beta-actin (beta'-actin) and lacks normal beta-actin (Toyama, S., and S. Toyama. 1984. Cell. 37:609-614). Increased resistance of the Cyt 1 mutant to CB in vivo is reflected in altered properties of beta'-actin in vitro (Toyama, S., and S. Toyama. 1988. J. Cell Biol. 107:1499-1504). Here, we show that the mutation in beta-actin is solely responsible for the cytochalasin-resistant phenotype of the Cyt mutant. We have isolated a cDNA clone encoding beta'-actin from Cyt 1 cells. Sequence analysis reveals two mutations in the coding region that substitute two amino acid residues (Val139----Met and Ala295----Asp). Expression of the beta'-actin cDNA confers cytochalasin resistance upon transformed cytochalasin-sensitive KB cells. Levels of resistance to CB in the transformed cell clones correlate well with amounts of beta'-actin polypeptide. Both of the two mutations in beta'-actin are necessary for the high level expression of cytochalasin resistance. Overall, we conclude that the primary site of action of cytochalasin on cell motility processes in vivo is actin.

Actin Cytoskeleton↗

Comparison of Ki-ras gene mutation among simultaneously occurring multiple urethan-induced lung tumors in individual mice.

Mouse lung tumors were induced in C57BL/6J(female) x A/J(male) F1 mice by a single s.c. injection of urethan. About 6 months later, multiple small-sized lung tumors were detectable in almost all mice. After a further 6 months, some of these tumors became larger than the rest. We examined whether there were any mutational differences among multiple lung tumors in a single mouse. Direct DNA sequencing of a separately amplified Ki-ras gene by polymerase chain reaction (PCR) was carried out with 25 DNA samples from multiple tumors in four mice. Twenty-four of 25 tumors (96%) had mutations at the codon 61 of the Ki-ras gene. The major mutations involved were either AT to GC transition (44%) or AT to TA transversion (44%) at the second base of codon 61. We compared the types of these gene mutations among the tumors from each of two mice from two different groups of siblings and then compared the two groups. Interestingly, in the first group of siblings, we detected CTA in 5/6 tumors in the first mouse and again CTA in 4/6 tumors in the second one. In the second group of siblings, we detected CGA in 5/7 tumors in one mouse and CGA again in 3/5 tumors in the second mouse. These results show that the pattern of Ki-ras codon 61 mutations in urethan-induced lung tumors is similar in tumors developing in siblings, suggesting that host factors have an effect on the carcinogen-induced mutational pattern. There was no major mutational difference between small and large tumors. The results suggested that other event(s) in addition to the mutation of the Ki-ras gene might play a role during the development of large-sized tumors.

Amino Acid Sequence↗

The effect of caged calcium release on the adaptation of the transduction current in chick hair cells.

1. Intracellular Ca2+ concentration ([Ca2+]i) was raised by photolysis of a caged calcium compound, nitr-5, and its effects on the mechano-electrical transduction (MET) current were studied by a whole-cell patch electrode voltage clamp technique in dissociated hair cells of a chick. Nitr-5 was loaded into the hair cell by incubation with the membrane-permeable form of the compound (nitr-5 AM). 2. Photolysis of nitr-5 by ultraviolet (UV) light irradiation induced outward currents at -50 mV when recorded with a KCl-based intracellular medium without Ca2+ chelating compounds. The average amplitude of the photo-activated outward current was 115 +/- 82 pA (mean +/- S.D., n = 5). 3. The MET current generated at -50 mV showed a decay after step displacement of the hair bundle. This adaptation was accelerated after UV exposure of the cell. The adaptation was further accelerated by hyperpolarization of the membrane and was eliminated in 20-100 microM Ca2+ extracellular media. 4. The displacement-response relationship was shifted towards the positive direction after the UV irradiation. 5. The recovery of the transducer current after step displacement of the hair bundle was accelerated after UV irradiation, for both the inward-going MET current recorded at -50 mV and the outward-going MET current at +54 mV. However, the adaptation was not observed at positive membrane potentials even after the photolysis of nitr-5. 6. The extent of MET current decay was reduced or disappeared in 20-100 microM Ca2+ extracellular media and the offset time course was prolonged at the membrane potential of -50 mV. The current decay was not observed even after the photo-release of intracellular Ca2+ in 50-100 microM Ca2+ extracellular media. 7. These results (paragraphs 3-6) suggest that the MET current adaptation is accelerated by the increase of [Ca2+]i, and that Ca2+ ions entering through MET channels are essential in the development of adaptation. 8. The adaptation of the MET current was reversibly reduced in a dihydrostreptomycin (DHSM, 20-50 microM) medium. The time course of the adaptation changes lagged the changes in the MET current amplitude. 9. The adaptation developed or disappeared with a delay of 10-20 s after the introduction of either the normal-Ca2+ (2.5 mM) or the low-Ca2+ (50-100 microM) extracellular medium, respectively. These delays in the development and the subsidence of adaptation suggest a presence of a Ca2+ buffer site intracellularly between the adaptative site and the MET channel.

Adaptation, Physiological↗

[Prophylactic intravesical instillation therapy in patients with superficial bladder cancer--results of a randomized prospective study].

A randomized prospective study was conducted for the purpose of investigating the efficacy of intravesical chemoprophylaxis of superficial bladder cancers. Eligible patients were randomized into three groups: 1) adriamycin (ADM) group; intravesical instillation with 50 mg of ADM dissolved in 100 ml physiological saline, 2) mitomycin C (MMC) group; intravesical instillation with 30 mg of MMC dissolved in 100 ml of physiological saline, 3) control group; transurethral resection or transurethral coagulation only. The characteristic features of our protocol consisted of frequent (six times) instillations of the drugs within two weeks after transurethral resection, followed by instillations on two consecutive days at four-week intervals for two years. Furthermore, large quantities (100 ml) of instillation fluid containing relatively low concentrations of the drugs (500 micrograms/ml for ADM or 300 micrograms/ml for MMC) were employed. One hundred and forty-four patients have been submitted to the study; 110 patients were fully evaluable for recurrence and 34 patients were eliminated as non-evaluable patients. The cumulative five-year non-recurrence rates of the patients with multiple tumors were 32% in the MMC group, 25% in the ADM group and 7% in the control group. The cumulative non-recurrence rates of the ADM and MMC groups were significantly higher than that of the control group. It is considered that this instillation therapy with ADM and MMC is useful for preventing the recurrence of superficial bladder cancers.

Administration, Intravesical↗

[Histopathological study of metallothionein in bladder cancer and renal cell carcinoma].

Metallothionein (MT) is a low molecular-metal binding protein with multiple biological functions. Recently, MT has been implicated as a factor involved in resistance to anticancer drugs, which presumably inactivates anticancer drugs, including cisplatin, and doxorubicin. In this report, we investigated the relationship of MT expression with the clinical features in bladder cancer and renal cell carcinoma. In 35 cases of bladder cancer, 10 cases of renal cell carcinoma and 3 cases of normal mucosa of bladder, the expression of MT was immunohistologically examined by avidinebiotin-peroxidase (ABC) staining of paraffin-embedded tissue specimens with anti-MT antibody. Intense MT expression was noted in all cases of normal mucosa of bladder. MT was detected in 10 of 35 cases of bladder cancer, with the incidence of MT expression being significantly higher increases with lower pathological tumor grade. MT was detected in 8 of 10 cases of renal cell carcinoma, and all of the their normal renal tubules showed more intense staining. A number of hypotheses can be proposed from these observations. First, our observation of decreased MT expression in poorly differentiated carcinomas, which are the more proliferating tumors, this suggests correlation of MT expression with proliferative status of cancer. Second, the higher incidence of MT expression in renal cell carcinoma than in bladder cancer may suggest that it is a factor responsible for the lower efficacy of chemo-therapy in renal cell carcinoma than in bladder cancer.

Aged↗

Cadmium causes increases of N-myc and multidrug-resistance gene mRNA in neuroblastoma cells.

Since cadmium exposure results in neuropathological alterations in central nervous system, we investigated the effects of cadmium on the gene expression of neuroblastoma (GOTO) cells. We observed an increase in mRNA levels of heat-shock protein (hsp) 70, hsp 90, hsp 32 and metallothionein after treatment of GOTO cells with cadmium, although the time courses of the changes of individual mRNA of the heat-shock proteins and metallothionein were somewhat different from each other. An accumulation of N-myc and multidrug-resistance gene (MDR1) mRNA was detected in the presence of cadmium. This is contrary to the previous report, in which an inverse correlation between the expression of MDR1 gene and N-myc oncogene in human neuroblastoma had been described. However, the increase of N-myc and MDR1 mRNA in the present study is not likely due to the loss of regulatory mechanism of these genes by cytotoxic effects of cadmium, because active protective mechanisms such as heat-shock proteins and metallothionein could be induced under these conditions.

Cadmium↗

[Evaluation of renal function by dynamic CT].

Dynamic CT scans of the kidney were conducted in 57 persons with varied renal function. The results of dynamic CT were used to obtain time-density curves for renal cortex, medulla and aorta. Various parameters were calculated from these time-density curves. Among them, CA ratio, the ratio of the area under the renal cortex curve to the area under the aortic curve, showed the best correlation with creatinine clearance. With these parameters, dynamic CT studies are believed to be useful in evaluating renal function.

Adult↗

Induction of glutathione-S-transferase and heat-shock proteins in rat liver after ethylene oxide exposure.

Defense mechanisms in rat liver against depletion of glutathione (GSH) and cellular injuries induced by ethylene oxide (EO) were studied. Rats were exposed to EO under either high dose (1300 ppm for 4 hr, once) or low dose (500 ppm for 6 hr, three times a week for 6 weeks) conditions. The hepatic content of GSH decreased dramatically after EO treatment, probably due to detoxication of EO. After the high dose treatment the hepatic GSH content fell by 90% of the control values but recovered within 10 to 15 hr. EO reacts directly with a variety of cellular macromolecules but all rats survived the exposure. Since the metabolites of EO are ethylene glycol and GSH-conjugates, the enzymatic activities of epoxide hydrolase and glutathione-S-transferase (GST) were determined. Only GST activity was found to occur after low dose chronic exposure. The defense mechanism at mRNA level was investigated using probes for GST and several heat-shock proteins (hsps). Enhanced accumulation of GST mRNA was detectable during the recovery period of rats after both high and low dose exposure to EO. Interestingly, both hsp32 (less than 40-fold) and hsp90 (less than 3-fold) mRNA increased after high dose exposure but the mRNA level of one of the major heat-shock proteins, hsp70, did not change under these conditions. Diethylmaleate, which is known to be a GSH depleter in liver, induced hsp32 mRNA only in rat liver, while hsp70 and hsp90 mRNA levels did not change when GSH was depleted. These results suggest that individual heat-shock proteins are induced in different ways under unphysiological conditions such as EO exposure.

Animals↗

Synaptic bodies and vesicles in the calix type synapse of chicken semicircular canal ampullae.

Calix afferent fibers generate depolarizing DC (direct current) and superimposed AC (alternating current) potentials in response to a vibrating stimulation of the hair bundle in an isolated preparation of a chicken semicircular canal ampulla. The wave form of the postsynaptic potential appears similar to the transduction potential of hair cells, which suggests electrical transmission in the calix type synapse. However, synaptic bodies and vesicles were found by EM observation instead of gap junctions in the hair cell presynaptic to the calix afferent. The number of synaptic body was 11-12/hair cell. These structures support chemical transmission in the calix type synapse.

Animals↗

Down modulation of N-myc, heat-shock protein 70, and nucleolin during the differentiation of human neuroblastoma cells.

Cultured human neuroblastoma (GOTO) cells were induced to differentiate by dibutyryl cyclic AMP (Bt2cAMP) and/or retinoic acid (RA). A combination of Bt2cAMP (1 mM) and RA (1 microM) yielded the most significant networks of neurites after 3 to 4 days, this being associated with the reduction of N-myc mRNA levels. Next, we examined several cellular genes that were possibly linked with changes in N-myc gene expression under these conditions. Among the genes examined, both nucleolin and a major heat-shock protein (hsp70) mRNAs showed changes concomitant with those in N-myc mRNA levels when induced by Bt2cAMP and RA. Dibutyryl cAMP alone induced several short cellular processes and caused a marked decrease in N-myc mRNA within 2 days. RA alone induced a few long and straight neurites along the longitudinal axis of individual cells and a significant decrease in growth rate but showed neither network formation nor a decrease in N-myc gene expression. These results indicate differential effects of Bt2cAMP and RA on the regulatory mechanisms of both cell proliferation and differentiation and also indicate a possible association of expression of N-myc gene with those of hsp70 and nucleolin genes.

Bucladesine↗

Muscarinic receptor hyperpolarizes cochlear hair cells of chick by activating Ca(2+)-activated K+ channels.

1. Electrical responses to extracellularly applied acetylcholine (ACh) and to intracellularly introduced substances were studied in isolated short and tall hair cells from the chick cochlear organ by a whole-cell voltage clamp technique using a patch electrode. These cells were isolated without using proteolytic enzymes. 2. Short hair cells generated a transient outward current at -50 mV in normal saline in response to puff-applied 100 microM-ACh, when the patch electrode was filled with a 160 mM-K+ and 100 microM-EGTA-based intracellular medium. The amplitude was 317.1 +/- 97.1 pA (n = 32). When ACh was applied ionophoretically, the outward current was generated with a delay of about 10 ms. 3. The amplitude of ACh-induced current was dose dependent with a KD of 19 microM and a Hill coefficient of 1.6 when measured at -50 mV. 4. The ACh (100 microM)-induced current was suppressed by 1 microM-atropine. ACh-induced current was generated in a Ca(2+)-free extracellular medium; however, the second ACh puff in the Ca(2+)-free medium generated a much reduced response. ACh-induced current was suppressed reversibly by 100 microM-quinine. 5. Intracellular injections of guanosine-5'-O-(3-thiotriphosphate) (GTP gamma S), inositol 1,4,5-trisphosphate (IP3) or Ca2+ (1 microM) via the patch pipette activated outward currents at -50 mV. 6. When the internal medium with strong Ca(2+)-buffering capacity (5 mM-EGTA) was used, the ACh-induced current was reduced to 39.3 +/- 6.8 pA (n = 4) at -50 mV (12.3% of the response in the low-EGTA medium). 7. The reversal potential of the ACh-induced current was -85.7 +/- 4.2 mV (n = 3) in normal saline containing 5 mM-K+. The reversal potential was dependent on the extracellular K+ concentration ([K+]o) and was shifted 57 mV by a 10-fold increase in [K+]o at room temperature (20-25 degrees C). 8. These results (points 4-7) indicate that ACh induces a K+ conductance by releasing Ca2+ intracellularly, probably by activating the pathway of muscarine receptor, G-protein and IP3. 9. Channel activities were recorded using cell-attached patch electrodes. Channel activities were rarely observed when ACh was applied to the extra-patch membrane, while robust channel activities were observed when ACh was included in the patch pipette medium. It is therefore suggested that Ca(2+)-activated K+ channels exist in the membrane in close vicinity to muscarinic receptor molecules and intracellular Ca2+ release sites.(ABSTRACT TRUNCATED AT 400 WORDS)

Acetylcholine↗

Delta pH-dependent accumulation of tetracycline in Escherichia coli.

The effects of ionophores on tetracycline accumulation in Escherichia coli cells were investigated in the presence of polymyxin B nonapeptide. Accumulation was inhibited by nigericin but not by valinomycin. Tetracycline accumulation was stimulated by decreasing the pH of the medium and inhibited by the addition of magnesium ions. These results indicated that tetracycline enters cells through diffusion as a protonated form (TH2) and is accumulated as a membrane-impermeable magnesium-tetracycline chelate complex (THMg+). This noncarrier diffusion hypothesis was confirmed by the fact that tetracycline accumulated in protein-free liposomes through an artificially imposed pH difference.

Escherichia coli↗

Ketone body utilization and its metabolic effect in resting muscles of normal and streptozotocin-diabetic rats.

By using an in situ rat hindquarter perfusion, we evaluated ketone body utilization and its metabolic effects in the resting muscle of 24 h fasted normal and streptozotocin (STZ)-diabetic rats. Under the perfusion with ketone body-supplementation (1 mM each of acetoacetic acid (AcAc) and 3-hydroxybutyric acid (3-OHB], the AcAc and 3-OHB uptake of STZ-diabetic rats was significantly (P less than 0.05) smaller than that of normal rats. This might be explained by the low enzyme activity of 3-oxoacid CoA transferase demonstrated in the hindlimb muscles of STZ-diabetic rats and this reduced ketone body uptake would be one of the causes of the development of diabetic ketoacidosis. The glucose uptake and the phosphofructokinase (PFK) activity of normal rats were significantly (P less than 0.05) higher than those of STZ-diabetic rats. In both normal and STZ-diabetic rats, the glucose utilization and PFK activity of the muscles in the ketone body-supplemented condition were significantly (P less than 0.05) lower than those in the non-supplemented condition. This inhibition of glucose utilization by ketone bodies should be due to the mechanism by which the oxidation of ketone bodies inhibits PFK in the muscle.

Animals↗