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Biomedical subjects

E Hashimoto

Publications and source records attributed to E Hashimoto.

At least 19 recordsLinked to original sources

Implication of increased NRSF/REST binding activity in the mechanism of ethanol inhibition of neuronal differentiation.

The neuron-restrictive silencer factor (NRSF), or repressor element-1 silencing transcription factor (REST), is a transcription factor that mediates negative regulation of neuronal genes. NRSF represses multiple neuronal target genes in non-neuronal and neuronal precursor cells to regulate the proper timing of neuronal gene expression during neurogenesis. In the present study, we investigated the effects of ethanol and MEK inhibitor U0126 on the DNA binding activity of NRSF in neural stem cells prepared from rat embryos. Both ethanol and U0126 enhanced NRSF binding activity measured by the method based on the principal of electrophoretic mobility shift assay (EMSA) and decreased neuronal differentiation in a concentration dependent manner. Western blot analysis revealed that ethanol suppressed phosphorylation of extracellular signal-regulated kinase (ERK) without affecting expression of total ERK. These results suggest that ethanol-induced potentiation of NRSF binding activity underlies the mechanism of ethanol inhibition of neuronal differentiation and decreased neurogenesis.

Alcohol-Induced Disorders, Nervous System↗

Attenuation of brain derived neurotrophic factor (BDNF) by ethanol and cytoprotective effect of exogenous BDNF against ethanol damage in neuronal cells.

Ethanol-induced cell damage was investigated using human neuroblastomas SH-SY5Y cells, which can be differentiated by retinoic acid. With 100 mM or more of ethanol, cytotoxicity was significantly higher in undifferentiated cells than in differentiated cells. Thus, a severer effect of ethanol was observed in undifferentiated cells. In differentiated cells it was shown that the secreted amount of brain derived neurotrophic factor (BDNF) and the cyclic AMP responsive element binding protein (CREB) activity were significantly reduced by ethanol. These effects may be involved in ethanol-induced cell damage in differentiated cells. It was reported that neurotrophic factors have protective effects and that the hippocampus exclusively was damaged by ethanol. Since SH-SY5Y cell is a cell line (a neuronal cell model) and similar cytotoxic effect of ethanol was observed in both SH-SY5Y and primary culture neuronal cells, it will be favorable to use primary culture cells to test a protective effect of BDNF. Exogenous BDNF was shown to have a protective effect against ethanol-induced damage in primary culture neurons from rat hippocampi.

Alcohol-Induced Disorders, Nervous System↗

Neurotoxic potential of haloperidol in comparison with risperidone: implication of Akt-mediated signal changes by haloperidol.

The neurotoxicity of conventional antipsychotic drugs has emerged as a potential pathogenic event in extrapyramidal side effects (EPS) and in their limited efficacy for negative-cognitive symptoms in schizophrenic patients. The atypical antipsychotics, recently developed, have superior therapeutic efficacy to treat not only positive symptoms but negative symptoms and cognitive dysfunctions with much lower potentials of side effects, although the influence of atypical antipsychotics on the regulation of neuronal survival has been less investigated. It is important to clarify the effects of typical and atypical antipsychotics on neuronal survival and their contributions to the therapeutic development and understanding of the pathophysiology of schizophrenia. We measured the neurotoxicity of two antipsychotic drug treatments, haloperidol and risperidone, in primary cultured rat cortical neurons. Immunoblotting and pharmacological agent analyses were used to determine the signal transduction changes implicated in the mechanisms of the neurotoxicity. Haloperidol induced apoptotic injury in cultured cortical neurons, but risperidone showed weak potential to injure the neurons. Treatment with haloperidol also led the reduction of phosphorylation levels of Akt, and activated caspase-3. The D2 agonist bromocriptine and 5-HT2A antagonist, ketanserin attenuated the haloperidol-induced neuronal toxicity. Moreover, brain-derived neurotrophic factor (BDNF) reduced the caspase-3 activity and protected neurons from haloperidol-induced apoptosis. BDNF also reversed the reduced levels of phosphorylation of Akt caused by treatment with haloperidol. Haloperidol but not risperidone induces caspase-dependent apoptosis by reducing cellular survival signaling, which possibly contributes to the differential clinical therapeutic efficacy and expression of side effects in schizophrenia.

Animals↗

Impairment of G(salpha) function in human brain cortex of Alzheimer's disease: comparison with normal aging.

We examined the quantity and quality of G proteins in membrane preparations of post-mortem human brain, i.e. in parietal, temporal and occipital cortical regions, from normal subjects over age (17-89 years old) and with Alzheimer's disease (AD) in comparison with aged-matched controls. In normal aging, the immunoreactivities determined of G(ialpha), G(qalpha) and G(beta) were inversely correlated with age. The function of G proteins was examined by photoaffinity GTP analogue [azidoanilido GTP (AAGTP)] labelling. AAGTP labelling to G(salpha) and G(i/oalpha), and the ratio of G(salpha) to G(i/oalpha) AAGTP labelling showed no age-dependent changes. In AD compared to age-matched controls, there were no significant differences in the levels of G(sHalpha), G(sLalpha), G(ialpha), G(oalpha), G(qalpha) and G(beta) subunits. Functional effects of G proteins, however, as measured by AAGTP labelling to G(salpha), but not to G(i/oalpha), was significantly decreased in AD compared to controls in the parietal and temporal cortex, but not in the occipital cortex. These results suggest that the disturbances of post-receptor trans-membrane signalling in AD can be attributed to functional changes of G(salpha), and these are independent of alterations in the level for those proteins in normal aging.

Adolescent↗

Disappearance of M(r) 25,000 protein, a new protein kinase substrate, in parallel with a kind of serpin during embryogenesis.

M(r) 25,000 protein (pp25) is a protein kinase substrate detected recently in Xenopus laevis oocytes [Hashimoto, E. et al. (1995) J. Biochem. 118, 453-460], but the physiological role of this protein remains to be determined. In order to elucidate some characteristics of pp25, a polyclonal antibody was raised against it and the distribution and quantitative changes of this protein were examined using various tissues and biological systems. In Western blot analysis, pp25 was detected only in Xenopus oocytes and not in other frog tissues when the heat-stable cytosolic fraction from each tissue was examined. Although the amount of pp25 apparently did not change during oocyte maturation induced by progesterone, pp25 disappeared in embryos around Nieuwkoop/Faber stages 45-48 in parallel with the change of pNiXa (a kind of serpin). These results suggest that pp25 plays some specific role(s) in Xenopus oocytes and that the level of pp25 changes dramatically during embryonic development.

Animals↗

Association of AIM, a novel apoptosis inhibitory factor, with hepatitis via supporting macrophage survival and enhancing phagocytotic function of macrophages.

A hallmark of many inflammatory diseases is the destruction of tissue cells by infiltrating hematopoietic cells including lymphocytes, neutrophils, and macrophages. The regulation of apoptosis of both target tissue cells and the infiltrating cells is one of the key events that defines the initiation and the progression of inflammation. However, the precise picture of the apoptosis regulation of the cells at the inflammatory sites is still unclear. We recently isolated a novel apoptosis inhibitory factor, termed AIM, which is secreted exclusively by tissue macrophages. In this report, we present unique characteristics of AIM associated with liver inflammation (hepatitis), identified by introducing an experimental hepatitis in both AIM-transgenic mice, which overexpress AIM in the body, and normal mice. First, endogenous AIM expression in macrophages is rapidly increased in response to inflammatory stimuli. Second, AIM appears to inhibit the death of macrophages in the inflammatory regions, judging by the remarkably increased number of macrophages observed in the liver from transgenic mice. In addition, we show that AIM also enhances the phagocytosis by macrophages, which emphasizes the multifunctional character of AIM. All these findings strongly provoke an idea that AIM may play an important role in hepatitis pathogenesis in a sequential manner; first AIM expression is up-regulated by inflammatory stimuli, and then in an autocrine fashion, AIM supports the survival of infiltrating macrophages as well as enhances phagocytosis by macrophages, which may result in an efficient clearance of dead cells and infectious or toxic reagents.

Animals↗

Living-related partial liver transplantation for decompensated hepatitis B without reactivation of hepatitis B in the following 30 months.

We report a case of living-related partial liver transplantation for decompensated hepatitis B without reactivation of hepatitis B in the following 30 months, and we analyze the factors that indicate a favorable prognosis for transplantation. The 42-year-old female patient received continuously administered lamivudine before transplantation, and hepatitis B virus immunoglobulin (HBIG) from the anhepatic phase to the present. Currently, she shows a normal aminotransferase level and is negative for hepatitis B surface antigen and hepatitis B virus (HBV) DNA by polymerase chain reaction amplification. Sequence analysis was performed. The entire precore/core region and part of the polymerase region of HBV were sequenced by a direct sequencing method after polymerase chain reaction. No specific mutation was found in these regions. These observations show that the key factors in the long-term successful treatment of this patient appear to be the combination therapy of lamivudine and HBIG that the patient received from around the time of the transplantation. Furthermore, the lack of specific mutations, including lamivudine resistant-mutations, is likely to represent an additional factor in the effectiveness of this treatment.

Adult↗

Changes in the cAMP-related signal transduction mechanism in postmortem human brains of heroin addicts.

Immunoreactivities of adenylyl cyclase (AC) type I (AC-I), and basal, forskolin- and Mn2+-stimulated AC activities with or without calcium and calmodulin (Ca2+/CaM) were estimated in temporal cortex (TC)-and nucleus accumbens (NAc) membranes from brains of heroin addicts and controls. Immunoreactivity of AC-I was significantly decreased in TC from brains of heroin addicts, but that did not change in NAc. Ca2+/CaM-sensitive AC activity was significantly lower in TC from brains of heroin addicts, but that activity in NAc did not show significant difference compared with the control. Some previous reports demonstrated that Ca2+/CaM-sensitive AC activity in membranes from postmortem human brain reflected the function of AC-I. Therefore, the downregulation of AC-I in TC plays an important role in the molecular mechanism of chronic opiate addiction in human brain.

Adenylyl Cyclases↗

Epidemiological studies of tobacco smoking and dependence in Japan.

In this study, we attempted to determine the prevalence of tobacco or nicotine dependence in current smokers in Japan and to assess the relationship between alcoholism and tobacco or nicotine dependence. The subjects consisted of 246 alcohol-dependent and 1,111 non-alcohol-dependent individuals. We used a questionnaire, consisting of items obtained from the World Health Organization's The ICD-10 Classification of Mental and Behavioural Disorders: Clinical Descriptions and Diagnostic Guidelines (ICD-10) and the American Psychiatric Association's Diagnostic and Statistical Manual of Mental Disorders (4th ed.; DSM-IV) criteria for tobacco or nicotine dependence. The prevalence of tobacco dependence diagnosed according to the ICD-10 criteria was 23.9% among all subjects. The prevalence of tobacco dependence diagnosed according to the ICD-10 criteria was higher in alcohol-dependent individuals (58.1%) than in nondrinkers or social drinkers (12.8%). Alcohol-dependent subjects consumed significantly more nicotine per day than did nondrinkers or social drinkers. The prevalence of nicotine physical dependence diagnosed by using DSM-IV criteria for nicotine withdrawal was 2.4% in alcohol-dependent individuals, whereas only 0.3% of nondrinkers or social drinkers exhibited nicotine physical dependence. These results indicate to us that the potential for nicotine physical dependence is not much stronger than that reported among current smokers.

Adult↗

Disease recurrence after living liver transplantation for primary biliary cirrhosis: a clinical and histological follow-up study.

We describe the recurrence of primary biliary cirrhosis (PBC) in recipients of living liver transplants. We are not aware of similar previous reports. Because most donors for living liver transplantation (LLT) are blood relatives with close HLA matches, the recurrence of PBC in transplant recipients might offer additional insights in the pathogenesis of the condition. We studied 6 women (age, 29 to 61 years) with PBC who survived LLT for at least 1 year. Tests for antimitochondrial autoantibody (AMA), antipyruvate dehydrogenase complex-E2, immunoglobulin G (IgG) anti-M2, and IgM anti-M2 had confirmed the diagnosis. Donors were blood relatives in 5 instances, and one donor who was not a blood relative still had multiple HLA matches with the recipient. After LLT, we observed a decrease in AMA titers, but within 1 year, these titers increased again in 5 of the 6 patients to pre-LLT levels or greater. Immunoblotting analysis of the anti-M2 protein profile failed to show loss of bands and showed new bands in 3 of 6 patients. Histologically, strong evidence of recurrent PBC was found in 2 patients, and findings compatible with PBC were present in 1 additional patient. All 6 patients are doing well, without symptoms of recurrent PBC (median time post-LLT, 35.5 months; range, 12 to 50 months).

Adult↗

A serpin with M(r) 43,000 is a binding protein of M(r) 25,000 protein, a substrate for protein ser/thr kinase detected in Xenopus laevis oocytes.

In an attempt to get some clue as to the function of M(r) 25,000 protein, a protein Ser/Thr kinase substrate detected in Xenopus laevis oocytes [Hashimoto, E. et al. (1995) J. Biochem. 118, 453-460], the binding protein was surveyed using the (32)P-labeled protein by casein kinase II as a screening probe. When the cytosolic proteins from oocytes were transferred to a polyvinylidene fluoride membrane and incubated with the labeled protein, only one protein with M(r) 43,000 was visualized on autoradiography. This protein was purified to a nearly homogeneous state through several column chromatography steps. The amino acid sequence of the amino-terminal region of this protein identified it as a kind of serine protease inhibitor (serpin) [Holland, L.J. et al. (1992) J. Biol. Chem. 267, 7053-7059]. However, the M(r) 25,000 protein did not have any effect on the inhibitory action of this serpin on alpha-chymotrypsin. In addition, several binding proteins were also detected in the particulate fraction of oocytes, although the exact identity of these proteins is not clear at this time. These results suggest that the M(r) 25,000 protein may play some role(s) by interacting with these binding proteins in Xenopus oocytes.

Amino Acid Sequence↗

Alteration of annexin IV expression in alcoholics.

Western blot analysis was performed by using a specific antibody to measure annexin IV in human postmortem brain samples from alcoholic subjects. The analysis showed a significantly augmented expression in the hippocampus compared with controls, whereas the expression in the frontal cortex was equivalent in both groups. Annexin IV expression in the occipital cortex tended to increase in alcoholics. It was shown further that autoantibodies to annexin IV were increased significantly in alcoholic patients compared with controls. Thus, annexin IV may become a novel biological marker for alcoholics.

Adult↗

Hypoxic induction of adrenomedullin in cultured human umbilical vein endothelial cells.

OBJECTIVES: The current study evaluated the hypoxic induction of adrenomedullin gene expression and secretion, and its mechanism in cultured human umbilical vein endothelial cells (HUVEC). METHODS: HUVEC were exposed to hypoxia or normoxia as controls for 1 to 24 h. Using Northern blot analysis and a radioimmunoassay, we evaluated adrenomedullin expression in HUVEC. The transcriptional component of adrenomedullin gene regulation was assessed by nuclear run-off experiments, and adrenomedullin mRNA half-life was measured by actinomycin D experiments. RESULTS: We found that hypoxic conditions (1-3% oxygen) significantly increased adrenomedullin mRNA and protein in HUVEC. This increase was inversely proportional to oxygen tension and was reversible upon re-exposure to a 21% oxygen environment Nuclear run-off experiments revealed the enhanced transcriptional rate of adrenomedullin gene. Next, actinomycin D experiments revealed the enhanced adrenomedullin mRNA stability. CONCLUSIONS: These results indicate that hypoxia increases adrenomedullin gene expression and secretion in HUVEC by transcriptional and post-transcriptional mechanisms. Hypoxic induction of adrenomedullin may play a pathophysiological role in the vascular systems.

Adrenomedullin↗

A prospective study of interferon therapy modified by pre-treatment viral load in cirrhotic patients. Tokyo-Chiba Hepatitis Research Group.

BACKGROUND/AIMS: The relative role of hepatitis C virus (HCV) load and subtype as predictors of the efficacy of interferon therapy has been clarified in patients with chronic hepatitis C, but the effectiveness of interferon therapy in cirrhotic patients is still unclear. METHODS: To resolve this issue, we undertook a multicenter, randomized, and prospective study of 114 cirrhotic patients with hepatitis C virus infection. The patients were selected to undergo two different periods (6 or 12 months) of IFN therapy according to viral load. Patients with "low" viral load (< or = 10(5.8) copies/ml serum) were randomly divided into three groups, receiving 6 or 9 million units (MU) interferon three times a week for 6 months (total dose: 468 or 702 MU), or of a modified regimen using 6MU of IFN over 6 months (total dose 564 MU), while patients with "high" viral load (< or = 10(6.3) copies/ml serum) were also randomly divided into two groups of 6 or 9 MU of IFN three times a week for 12 months (total dose: 936 or 1,404 MU). RESULTS: HCV-RNA negativity rate at the completion of treatment with 6 or 9 MU IFN was 65% in patients with "low" viral load, in contrast to 14% in patients with "high" viral load. Sustained virological response was found in 40% of patients with "low" viral load irrespective of the three different regimens, in contrast to only 1 out of 35 patients (3%) with "high" viral load. Viral eradication was found in approximately 50% of patients having a low virus load (< or = 10(4.3) copies/ml) and with HCV subtype 2a. Univariate and multivariate analysis revealed that pretreatment viral load was a significant factor contributing to efficacy of IFN therapy. CONCLUSIONS: Sustained response was scarcely achieved in cirrhotic patients with high viral loads even after a 12-month course of intensive IFN therapy. This result indicates that there is a certain cut-off level of HCV RNA load which can not be eradicated.

Adult↗

Significance of soluble TNF receptor-I in acute-type fulminant hepatitis.

OBJECTIVE: Fulminant hepatitis is associated with apoptosis of hepatocytes, which is mediated via Fas and tumor necrosis factor (TNF) receptors. The clinical significance of apoptotic factors and these receptors was investigated in fulminant hepatitis. METHODS: Serum levels of TNF-alpha, soluble TNF receptor-I and -II, soluble Fas antigen, and Fas ligand were measured. Then, the relationships between these parameters and the severity or prognosis of fulminant hepatitis were studied. RESULTS: Serum levels of TNF-alpha, soluble TNF receptor-I, and soluble TNF receptor-II were increased in acute-type fulminant hepatitis. In particular, soluble TNF receptor-I was significantly higher than in patients with subacute-type fulminant hepatitis, severe acute hepatitis, acute hepatitis, or healthy controls. The soluble TNF receptor-I level continued to increase or remained high in patients who died of acute-type fulminant hepatitis, and eight of nine patients had a level >10 ng/ml. In contrast, the soluble TNF receptor-I level remained <10 ng/ml in survivors. Soluble Fas and soluble Fas ligand levels tended to increase in all types of acute liver disease and were not specific to fulminant hepatitis. CONCLUSION: Our findings suggested that monitoring the soluble TNF receptor-I level may help to assess the prognosis of acute-type fulminant hepatitis and that TNF might be associated with massive hepatic necrosis.

Acute Disease↗

(-)-Epigallocatechin gallate inhibits mos activation-mediated xenopus oocyte maturation induced by progesterone.

(-)-Epigallocatechin gallate (EGCG), one of the constituents of green tea known to have a tumor preventing effect, inhibited maturation of Xenopus laevis oocytes induced by progesterone when this polyphenol was microinjected into oocytes at a final concentration of about 1 mM. Western blot and activity measurement analyses showed that Mos translation and the subsequent activations of mitogen-activated protein kinase and p90(rsk), probably by protein phosphorylation, seemed to have been inhibited by the microinjection of EGCG. These results suggest that EGCG may have the ability to control Xenopus oocyte maturation at least during the stage of Mos activation.

Animals↗

Quantitative reduction of type I adenylyl cyclase in human alcoholics.

The amounts of adenylyl cyclase type I (AC I) were examined in various parts of the postmortem brains from alcoholics who prior to death had been abstinent from alcohol for at least 6 months and compared with controls using immunoblot analysis with anti-AC I specific antibody. It was revealed that a significant reduction of AC I was observed in both frontal and temporal cortices. On the other hand, in other areas (occipital cortex, caudate nucleus, putamen, and hippocampus) the amounts were comparable between alcoholics and controls. In the next step, we examined two subtypes of human AC mRNA levels (AC I and AC VIII) in blood cells by quantitative RT-PCR using [alpha-32P]dCTP with two sets of the synthetic oligonucleotide primers based on the DNA sequences reported elsewhere (Villacres, E.C. et al., Genomics 16 (1993) 473-478; J. Parma et al., Biochem. Biophys. Res. Commun. 179 (1991) 455-462). The amounts of amplified DNAs of both AC I and AC VIII were significantly smaller in alcoholics than in controls. On the other hand, the amounts of amplified DNA of beta-actin DNA were almost equal between alcoholics and controls. It appears from these results that a reduction in the amount of AC subtypes may be a biological marker for alcoholics.

Adenylyl Cyclases↗