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Biomedical subjects

K Ishige

Publications and source records attributed to K Ishige.

At least 37 records · Page 2Linked to original sources

Pharmacological profiles of absence seizure-induced increases in CRE- and AP-1 DNA-binding activities in gamma-butyrolactone-treated mice.

Absence seizures are characterised by a well-defined disturbance of thalamocortical function, and there is no spread to other systems. In this study, we continue our examination of the mechanisms underlying the increased nuclear cyclic AMP responsive element (CRE)- and activator protein 1 (AP-1) DNA-binding activities in a gamma-butyrolactone (GBL)-induced mouse model of absence seizure. The administration of GBL increased CRE- and AP-1 DNA-binding activities in the cerebral cortex and thalamus, but not in other regions such as the hippocampus, cerebellum or pons + medulla oblongata, at doses which induced absence seizures. Not only the absence-seizure behavior but also the increased CRE- and AP-1 DNA-binding activities in the thalamocortical regions were reversibly inhibited by ethosuximide, a typical anti-absence drug, and the GABAB antagonists CGP 35348 and CGP 46381. A gel-supershift assay revealed that the GBL-induced CRE-binding activity was supershifted by an anti-CRE-binding protein (CREB) antibody, and that AP-1 DNA-binding activity was blocked by anti-c-Jun and anti-c-Fos antibodies. These results suggest that increased CRE- and AP-1 DNA-binding activities in the cerebral cortex and thalamus are related to the pathogenesis of generalized absence seizures and that these increases in DNA-binding activity are related to ethosuximide- and GABAB antagonist-sensitive abnormal neuronal activity in the thalamocortical circuit.

4-Butyrolactone↗

Morphological and biochemical evidence of muscle hyperplasia following weight-lifting exercise in rats.

We used a rat model of weight lifting to examine the serial biochemical and morphological changes following muscle fiber hyperplasia during 14 days of exercise. [3H]thymidine and [14C]leucine labeling were used to determine the serial changes in cellular mitotic activity and the level of amino acid uptake and myosin synthesis. Morphological changes were assessed with light and transmission electron microscopy, whereas proliferation of cells was evaluated immunohistochemically with 5-bromo-2'-deoxyuridine (BrdU). The intensity of the exercise and degree of muscle damage were monitored by serum creatine kinase (CK) activity. Damaged fibers were sparsely distributed, and a significant CK leakage was observed 30-60 min after exercise. Anti-BrdU-positive cells were observed in damaged fibers and at the periphery of undamaged fibers. Changes typical of muscle regeneration were observed; however, the formation of new fibers in the interstitial space was also evident. The mitotic activity also changed and reflected the appearance of anti-BrdU-positive cells and activated satellite cells. Amino acid uptake increased during the first week of exercise, probably reflecting muscle hypertrophy and synthesis of other noncontractile related proteins. The uptake also increased during the second week, probably due to hyperplasia, a finding also supported by electron microscopy. Our results suggest that one bout of weight-lifting exercise in untrained rats induced muscle hyperplasia following regeneration. The process of muscle hyperplasia was activated by muscle fiber damage in our model.

Animals↗

Crystallization and preliminary X-ray analysis of a histidine kinase domain of the anaerobic sensor protein ArcB from Escherichia coli.

Crystals of a novel histidine protein kinase domain of the anaerobic sensor protein ArcB from Escherichia coli have been obtained by a hanging-drop vapor-diffusion method with micro- and macroseeding techniques. Preliminary X-ray crystallographic analysis revealed that they belong to space group P2(1)2(1)2(1) with dimensions a = 30.56, b = 34.93 and c = 110.78 A, having one molecule in the crystallographic asymmetric unit. The crystals diffract to at least 2.0 A resolution.

Journal Article↗

gamma-Butyrolactone-induced absence-like seizures increase nuclear CRE- and AP-1 DNA-binding activities in mouse brain.

We examined the involvement of the GABAB receptor and the coordinated induction of nuclear transcriptional factors in experimental generalized absence seizures induced by gamma-butyrolactone (GBL) in mice. Although administration of GBL 50 mg/kg did not show any effects on behavior or ECoG pattern, higher doses of GBL (70 and 100 mg/kg, i.p.) induced behavioral changes associated with 3-6-Hz spike and wave discharges in the mice. CGP 35348, a GABAB receptor antagonist, suppressed both the GBL-induced absence seizures and the spike and wave discharges. The antiepileptic effects of CGP 35348 (200 mg/kg, i.p.) were stronger than those of ethosuximide (200 mg/kg, i.p.). Sodium valproate (100 mg/kg, i.p.) attenuated the early phase but not the late phase of the GBL-induced absence seizures. Gel-mobility assay demonstrated that administration of an effective dose of GBL for eliciting spike and wave discharges dose-dependently increased nuclear cyclic AMP-responsive element (CRE)- and activator protein 1 (AP-1) DNA-binding activities in mouse whole brain. The increases in nuclear CRE- and AP-1 DNA-binding were antagonized by CGP 35348 in a dose-dependent fashion. In addition, GABAB receptor binding assay revealed that GBL or antiepileptic drugs did not displace [3H]baclofen binding in cerebral cortical membranes. In contrast, gamma-hydroxybutyrate (GHB), an active metabolite of GBL, inhibited [3H]baclofen binding in a concentration-dependent manner. These results suggest that GABAB receptor-mediated synaptic responses are involved in GBL-induced generalized absence seizures and that the increases in nuclear CRE- and AP-1 DNA-binding activities are correlated with the GBL-induced generalized absence seizures.

4-Butyrolactone↗

Age-related changes in [3H]baclofen binding in mouse cerebellum.

1. Specific [3H]baclofen binding to cerebellar membranes from 1-month-old (young), 8-month-old (older) and 20-month-old (aged) mice was lower than that to membranes from 3-month-old mice (mature adult), whereas in cerebral cortical membranes there were no age-related changes in [3H]baclofen binding among the four age groups. 2. Scatchard analysis revealed that the density of cerebellar GABAB receptors significantly decreased during aging. 3. There were no age-related changes in the inhibitory effect of Gpp(NH)p on [3H]baclofen binding. 4. These results suggest that the characteristics of GABAB receptors in the cerebellum change during aging without any alteration in the coupling of the receptor to guanine nucleotide regulatory proteins.

Age Factors↗

gamma-Hydroxybutyric acid increases intracellular Ca2+ concentration and nuclear cyclic AMP-responsive element- and activator protein 1 DNA-binding activities through GABAB receptor in cultured cerebellar granule cells.

In primary cultures of mouse cerebellar granule cells, a brief stimulation by gamma-hydroxybutyric acid (GHB, 0.1-3 mM) significantly increased the intracellular Ca2+ concentration ([Ca2+]i) in a concentration-dependent manner. In addition, gel mobility assay showed that exposure of the cells to GHB also increased nuclear DNA-binding activity specific for the cyclic AMP-responsive element (CRE) and activator protein 1 (AP-1) transcriptional element in a concentration-dependent manner. The concentration range of GHB that increased the DNA-binding activity was essentially the same as the concentration range that elicited the increase in [Ca2+]i. The GHB-induced increases in [Ca2+]i and nuclear DNA-binding activity were antagonized by specific GABAB antagonists such as p-[3-aminopropyl]-p-diethoxymethylphosphinic acid (CGP 35 348) and 3-N-[1-(S)-(3,4-dichlorobenzyl)ethanol-2-(S)-hydroxy-P-benzylphosphin ic acid (CGP 55 845). In addition, the GHB-induced increase in [Ca2+]i was abolished by pretreatment of the cells with islet-activating protein. Furthermore, treatment of the cells with 1,2-bis(2'-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid tetraacetoxymethyl ester (BAPTA-AM) and thapsigargin blocked the GHB-induced increase in nuclear DNA-binding activity. GHB inhibited [3H]baclofen binding to cultured cerebellar granule cells and mouse cerebellar membranes. These results suggest that stimulation of GABAB receptors by GHB activates intracellular Ca2+ stores and that the increased [Ca2+]i resulting from release of stored Ca2+ plays an important role in increasing the CRE- and AP-1 DNA-binding activities in cultured cerebellar granule cells.

Activating Transcription Factor 1↗

Phosphotransfer circuitry of the putative multi-signal transducer, ArcB, of Escherichia coli: in vitro studies with mutants.

Recently we demonstrated the occurrence of a novel device of signal transducers in Escherichia coli. This class of bacterial sensory kinases, typified by ArcB and BarA, possesses two phospho-donor (His) sites, together with a phospho-accepting (Asp) site. These multi-phosphorylation sites were suggested to make a phosphotransfer circuit. To clarify this complex circuitry, we carried out a series of in vitro assays involving a set of ArcB mutant proteins which have an amino acid substitution at each putative phosphorylation site (His-292, Asp-576 and His-717). By these in vitro phosphorylation and/or phosphotransfer assays, the followings were assessed: (i) ArcB autophosphorylation; (ii) ArcB-mediated phosphorylation of the cognate response regulator, ArcA; (iii) ArcB-mediated phosphorylation of its truncated form (ArcBc) encompassing only the C-terminal phosphorylation site (His-717); (iv) phosphotransfer from ArcBc to ArcA; and (v) phosphotransfer from ArcBc to ArcB. On the basis of these in vitro results, a complex circuitry was revealed for the signal transducer ArcB. This evidence obtained in vitro supports the view that ArcB can serve as a powerful device for not only propagating multi-signals, but also making up signalling networks, in ways more sophisticated than previously thought.

Bacterial Outer Membrane Proteins↗

A novel device of bacterial signal transducers.

The osmoregulatory expression of ompC and ompF in Escherichia coli is mediated by a pair of bacterial signal transduction proteins, EnvZ (sensory kinase) and OmpR (response regulator). We isolated previously multicopy suppressors which can complement a defect in the phosphotransfer signal transduction caused by an envZ deletion mutation. Among such suppressors, arcB and barA are of particular interest because these gene products are unique in the sense that they contain both an autophosphorylated histidine site (or transmitter module) and a phospho-accepting aspartate site (or receiver module) in their primary amino acid sequences. Here we report that ArcB and BarA possess in the C-terminal region a phosphorylated histidine site which has never been noticed, in addition to the authentic one identified previously. This newly identified histidine in ArcB and BarA was demonstrated to play a crucial role in the observed multicopy suppression. Furthermore, it was demonstrated in vivo and in vitro for ArcB that the C-terminal domain containing the histidine can function as an alternative phosphodonor (or transmitter). This novel type of sensory kinase was therefore revealed to contain two independent phosphodonor sites, together with a phospho-accepting site. These findings suggest that this unique feature of ArcB and BarA, in terms of the signaling modules, make it possible for these sensory kinases to function as dual-signaling transducers.

Amino Acid Sequence↗

Differential effects of Triton X-100 on ligand binding to GABAB receptors in mouse cerebral cortex, cerebellum and whole brain.

1. Pretreatment of whole brain membranes with Triton X-100 (0.01-0.05 v/v%) increased the specific binding of [3H]baclofen without change of non-specific binding. Although the treatment increased the affinity of all the GABAB agonists tested, that of antagonists either tend to be decreased or unchanged. Furthermore, the treatment potentiated Gpp(NH)p-induced inhibition of [3H]baclofen binding. 2. Affinity for [3H]baclofen in the cerebral cortex was increased following Triton X-100 (0.02 v/v%) treatment, whereas binding characteristics in the cerebellum were not significantly changed. 3. These results suggest that the properties of cerebellar and cerebral cortical GABAB receptors differ from each other, and that pretreatment with Triton X-100 not only affects agonist and antagonist binding to GABAB receptors differentially, but also changes the coupling between GABAB receptors and guanine nucleotide regulatory proteins.

Animals↗

Novel members of the two-component signal transduction genes in Escherichia coli.

A variety of adaptive response systems in prokaryotes often involve two families (two components) of signal transduction proteins, namely, sensory kinases and response-regulators. To extend the list of such sensor/regulator genes for Escherichia coli, we adopted a random screening method in this study. In particular, we isolated a series of recombinant plasmids that are able phenotypically to suppress mutational lesions of both the envZ and phoR/creC genes, each of which encodes a well-characterized sensory-kinase. Among the recombinant plasmids thus isolated, two clones (named pSN11 and pSN25) were subjected to characterization in detail. These analyses allowed us to identify the genetic loci specifying novel members of the sensor/regulator families. One (pSN11) is located around 45 min on the E. coli genetic map, that contains two adjacent coding-sequences (baeS and baeR). The other (pSN25) is located around 93 min of the genetic map, that also comprises two adjacent coding-sequences (basS and basR). These two pairs of gene-products, thus newly identified, were revealed to belong to typical members of the sensor/regulator families. Furthermore, they were demonstrated to exhibit the in vitro phosphotransfer reaction in the presence of ATP, that is also a characteristic of the sensory-kinase and response-regulator proteins.

Amino Acid Sequence↗

Inhibitory effects of NaCl and guanyl-5'yl-imidodiphosphate (GppNHp) on [3H]naloxone binding to kappa-opioid receptors in guinea pig cerebellum.

Studies were performed to characterize the opioid receptors in guinea pig brain using the radiolabeled opioid antagonists, [3H]naloxone and [3H]diprenorphine and the kappa-agonist [3H]U-69593. The binding of [3H]U-69593 to guinea pig cerebellar membranes was reduced by NaCl, guanyl-5'yl-imidodiphosphate (GppNHp) and NaCl+GppNHp, and [3H]naloxone binding to cerebellar membranes was also reduced by NaCl and GppNHp. In the guinea pig cerebral cortex and striatum and the rat cerebellum, [3H]naloxone binding was not affected significantly by GppNHp in the presence or absence of 100 nM [D-Ala2,N-Me-Phe4,Gly5-ol]enkephalin (DAMGO) and [D-Ala2, D-Leu5]enkephalin (DADLE). Guinea pig cerebellar [3H]diprenorphine binding was not affected by NaCl, GppNHp or NaCl+GppNHp. Furthermore, [3H]naloxone binding was reduced after pretreating cerebellar membranes with N-ethylmaleimide (NEM), which also attenuated GppNHp-induced inhibition of cerebellar [3H]naloxone binding. These results suggest that the properties of [3H]naloxone binding in guinea pig cerebellum differ from those in other brain regions and rat cerebellum, and that the interaction of [3H]naloxone and [3H]U-69593, but not [3H]diprenorphine, with guinea pig cerebellar opioid receptors is associated with a G-protein.

Animals↗

[THP-adriamycin-based combination chemotherapy in the treatment of non-Hodgkin's lymphoma].

Thirty patients with non-Hodgkin's lymphoma were treated with THP-adriamycin-based combination chemotherapy. Complete remission was obtained in eighteen (72%) of 25 evaluable patients. Nine of 18 patients are still alive in complete remission lasting 9 to 34 months (median 24 mo). Severe side effects such as bone marrow suppression, gastrointestinal symptoms and cardiotoxicity were rare. It was concluded that THP-adriamycin-based combination chemotherapy is relatively mild and safe, so this regimen is useful for elderly patients or patients with complications.

Adult↗

[Clinical application of thymidine kinase activity in patients with acute non-lymphocytic leukemia].

An improved method for the detection of thymidine kinase (TK) activity with the use of 125I-iododeoxyuridine as the substrate. Radioimmunoassay of prolifigen TK "Daiichi", was used for this assay. Eighty-seven serum samples were collected from 40 patients with acute nonlymphocytic leukemia in four institutions. The levels of TK were measured in the time of pretreatment, remission, and recurrence, and the relationship between the levels of TK and either LDH, marrow blasts, or circulating blasts was also examined. The levels of TK were significantly lower in the state of remission than in the pretreatment. However, the level of TK in remission was much elevated in the majority of cases than normal range (less than or equal to 5 units/l). On the contrary, LDH in remission was within normal limits in the majority of cases. The level of TK in the state of relapse was significantly higher than in the remission. The level of TK correlated in some extent with the percentage of marrow blasts (r = 0.508), and the level of TK in more than 5% of marrow blast was most beyond normal range. Correlation coefficient between the percentage of circulating blasts and TK (r = 0.577) was slightly higher than that between the percentage of marrow blasts and TK. Correlation coefficient between the level of TK and the number of marrow blasts was higher than that between LDH and number of marrow blasts. The levels of TK correlated well with serum LDH (r = 0.778), and was more sensitive than LDH. In conclusion, it was suggested that TK could be used as one of an useful and supplemental tumor marker in the follow-up of treatment of acute nonlymphocytic leukemia and to monitor the effect of therapy.

Biomarkers, Tumor↗

An observation on patients' evaluations and nurses' involvements.

From 160 patients receiving hemodialysis treatment (HD) at this dialysis center, information was obtained by questionnaire as to the patients' feeling towards the nurses' presence and demands for nurses, and a study was made on the nurses' future relations with patients. The result showed that more than one half of the patients took the nurses' presence as "understanding and cooperating persons in life." On the other hand, while demand for nurses was first "gentleness and sympathy", fuller "knowledge and technique" became more notable in the extended period of dialysis. Also patients' evaluations of nurses were severer for patients of the longer dialytic history. Therefore, we would like to carry out care with more emphasis on nurse/patient relations to meet patients' demand according the respective dialytic history.

Consumer Behavior↗

[Combination chemotherapy of N(4)-behenoyl-1-beta-arabinofuranosylcytosine, aclarubicin, 6-MP, and prednisolone (BH-AC. AMP therapy) for adult acute non-lymphocytic leukemia].

Sixteen of 20 patients(80%) with adult ANLL treated with B H-AC X AMP therapy attained complete remission (CR). According to the FAB classification, CR rate was 6 out of 8 (75%) for M1, 3 out of 5 (60%) for M2, 2 out of 2 (100%) for M3, and 5 out of 5 (100%) for M4. The median of remission duration in 16 patients who attained CR was 8 months and appeared to be longer in patients with M2, rather than other types, of leukemia than in those with the other types of leukemia. BH-AC X AMP therapy is highly effective for remission induction in adult ANLL and long term disease free survival could be expected by addition of appropriate maintenance therapy.

Aclarubicin↗