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Biomedical subjects

J Satoh

Publications and source records attributed to J Satoh.

At least 19 recordsLinked to original sources

Cloning and characterization of 5'-flanking region of mouse non-selective cation channel 1.

We have previously cloned mouse non-selective cation channel 1 (mNSC1) cDNA inducing cation current, from a mouse insulin secreting beta-cell line, MIN6. The current has characteristics of the Ca2+-activated non-selective (CAN) cation channel, and the mRNA is localized in the brain, heart, and lung. To understand the molecular mechanisms of the transcriptional regulation, we have cloned and characterized the 5'-flanking region of mNSC1. By the PCR method, we obtained 987 bp of mouse genomic fragment. The computer program-based analysis revealed that it contained several consensus motifs; insulin responsive element (IRE), AP-2, PEA3, and GC box-like region. But there were neither typical TATA box nor CAAT box. Primer extension analysis and RNase protection assay were performed to identify the transcription start site. Transient transfection analyses using a series of 5'-end deletion and reporter gene constructs with CHO and LA-4 cells demonstrated some relatively active regions. The significantly active border correlated with IRE consensus with CHO cells. This observation may support that CAN current is activated by insulin.

Animals

Natural killer cells in relapsing-remitting MS: effect of treatment with interferon beta-1B.

OBJECTIVE: To determine the effect of treatment with interferon beta-1b (IFN-beta) on natural killer (NK) cell function and phenotype in relapsing-remitting MS (RRMS) patients, and their relationship to disease activity assessed both clinically and with serial MRI. BACKGROUND: NK cells may play a role in the immunopathogenesis of MS. Previously the authors reported a positive relationship between mean NK cell functional activity (FA) and total number of active lesions on MRI in a serial study of RRMS. Cycles in NK cell FA over time created a series of peaks and valleys, and a significant relationship has been identified between the valleys and the appearance of active lesions on MRI or onset of clinical attacks. The development of valleys in NK cell FA before the appearance of active lesions on MRI was statistically significant. METHODS: The authors studied the effect of alternate-day therapy with 8.0 mIU (high dose [HD]) or 1.6 mIU (low dose [LD]) IFN-beta on NK cell FA, assessed by an in vitro 51Cr release K-562 target cell assay, and phenotype determination in RRMS patients. RESULTS: Treatment with HD IFN-beta results in an inverse relationship between mean NK cell FA and total number of active lesions on MRI over 2 years. A stronger inverse relationship was found in those patients who did not develop neutralizing antibodies to IFN (HD-) compared with a positive relationship in those who did (HD +). Treatment with IFN-beta did not affect the cyclic nature of NK cell FA, mean NK cell FA, variability around the mean, mean length of the cycle, time spent in valleys and peaks, or the significant relationship between the appearance of active lesions on MRI/onset of clinical attacks and valleys in NK cell FA. In contrast, treatment with HD but not LD IFN-beta did result in a significant reduction in CD57+ (a cell surface marker for subsets of NK cells) peripheral blood lymphocytes (PBL) compared with placebo. This effect, which originated largely from the HD- group of patients, developed shortly after treatment was initiated and was maintained throughout the study. CONCLUSIONS: RRMS patients with higher mean NK cell FA may be not only at greater risk for the development of active lesions but also may be more likely to respond to IFN-beta. Development of neutralizing antibodies to IFN-beta could interfere with this effect. This effect may be mediated through an action on a CD57+ subset of PBL.

Adjuvants, Immunologic

Inhibition of tumor necrosis factor-alpha with anti-diabetic agents.

It has recently been indicated that tumor necrosis factor-alpha (TNF-alpha) production is increased under chronic hyperglycemia and TNF-alpha has harmful effects on insulin sensitivity and possibly on chronic diabetic complications. Therefore it will be favorable for diabetes treatment if anti-diabetic agents also have anti-TNF-alpha activities. In this study, we have investigated effects of hypoglycemic sulfonylureas (gliclazide and glibenclamide) and a thiazolidinedione (troglitazone) on lipopolysaccharide-induced TNF-alpha production, which was evaluated by immunoassay and bioassay, in vivo using mice and partly in vitro using human peripheral blood mononuclear cells. Gliclazide significantly inhibited TNF-alpha production in vivo and also in vitro at a concentration of 10(-3) mol/l. However, glibenclamide had neither effect on TNF-alpha production nor action. On the other hand, troglitazone inhibited action rather than production of TNF-alpha in vivo. In vitro troglitazone (10(-4) mol/l) significantly reduced cytolytic activity of TNF-alpha against LM cells. These results indicate that gliclazide and troglitazone have inhibitory effect on TNF-alpha.

Animals

Pathological study on sibling autopsy cases of the late infantile form of neuronal ceroid lipofuscinosis.

We report autopsy cases of two brothers with the late infantile form of neuronal ceroid lipofuscinosis (LINCL) and examine apoptotic cell death in autopsied brains. Both patients showed psychomotor developmental delay, cerebellar ataxia, convulsions, visual disturbance and myoclonus, and they became bedridden around the age of 6-7 years. Macular changes, mimicking cherry-red spots, were observed on funduscopy, but conjunctival biopsy failed to disclose storage materials. In these cases, the autopsies demonstrated severe atrophy with neuronal loss and gliosis throughout the brain and spinal cord, except the hypothalamic neurons and motor neurons in the brain-stem and spinal cord, and autofluorescent lipofuscin-like materials of two types, fine granular deposits and coarse round bodies, were stored in the remaining neurons and glial cells, and in the epithelial cells of various visceral organs. Immunostaining for mitochondrial subunit C visualized the fine granular deposits but not the coarse round bodies. The nuclei of neurons and glia cells were stained by in situ nick end labeling, which was more pronounced in the younger case, although the expression of both bcl-2 and bcl-x was not significantly altered in these cases. It is suggested that immunohistochemistry for subunit C may be useful for diagnosis of NCL, and further investigations are necessary to clarify the relationship between LINCL and apoptosis, especially in severely affected cases.

Atrophy

Developmental stage-specific multi-subunit plastid RNA polymerases (PEP) in wheat.

Most photosystem I and II plastid genes are transcribed by a plastid encoded Escherichia coli-like RNA polymerase (PEP). In this study, we show that both promoter selectivity and light-dependency of PEP change dramatically during development in wheat leaves. In the leaf tip, psbA and psbD promoter activities are light induced, whilst psbC, psbE and 16S rRNA promoters do not function efficiently irrespective of light conditions. In contrast to the leaf tip, in the basal portion all PEP promoters studied function in the dark as well as the light, except for psbD. Using in vitro transcription, we found that PEP in the illuminated leaf tip can initiate transcription from the -35 destructed psbA promoter, but the -35 element is essential for transcription in the basal portion. There is an extended -10 element in the psbA promoter, recognized by the PEP in the illuminated leaf tip or purified sigma 70-type Escherichia coli RNA polymerase but not by the PEP in the leaf base. These results suggest that during wheat leaf development, PEP in the leaf base that is functional for most PEP promoters even in the dark is replaced by the light-dependent PEP selectively transcribing the psbA and psbD promoters.

Base Sequence

Vasculitis confined to the peripheral nerve and skin: a variant of non-systemic vasculitic neuropathy.

We describe a patient presenting with vasculitic neuropathy associated with cutaneous vasculitis in the absence of other clinical or laboratory evidence of the underlying systemic vasculitis, and showing a favourable prognosis. Although the early proposed criteria for the diagnosis of non-systemic vasculitic neuropathy (NSVN) exclude the involvement of extraneural tissues, the condition observed in our patient might represent a variant of NSVN, with the vasculitis confined to the small vessels in both the peripheral nerve and the skin.

Aged

The 14-3-3 protein detectable in the cerebrospinal fluid of patients with prion-unrelated neurological diseases is expressed constitutively in neurons and glial cells in culture.

The 14-3-3 protein belongs to a family of 30-kD proteins originally identified by two-dimensional analysis of brain protein extracts. Recently, the detection of the 14-3-3 protein in the cerebrospinal fluid (CSF) is utilized as a highly reliable test for the premortem diagnosis of prion diseases such as Creutzfeldt-Jakob disease. For the initial step, to clarify the biological implication of the CSF 14-3-3 protein in these diseases, its expression was investigated in neural tissues and cultures and CSF samples from patients with a variety of neurological diseases by Western blot analysis and immunocytochemistry. The constitutive expression of the 14-3-3 protein was identified in all neural and nonneural tissues examined. It was expressed in all neurons, astrocytes, oligodendrocytes, and microglia in culture with its location in both cytoplasmic and nuclear regions. The 14-3-3 protein was detected in the CSF of 8 out of 71 patients, including 1 Gerstmann-Sträussler-Scheinker disease patient and 7 patients with prion-unrelated neurological diseases, such as meningoencephalitis of viral, bacterial, or tuberculous origin, multiple sclerosis, and mitochondrial myopathy, encephalopathy, lactic acidosis, and strokelike episodes. These results suggest that the 14-3-3 protein expressed constitutively at substantial levels in both neurons and glial cells might be released into the CSF as a disease-nonspecific consequence of the extensive brain damage and indicate that the analysis of the 14-3-3 protein in the CSF is not useful as a screening test for prion diseases.

Animals

[Current concept of the pathogenesis of autoimmune type 1 diabetes mellitus].

In type 1 diabetes, the beta cell is selectively destroyed by T lymphocytes in a genetically susceptible individual. Susceptible HLA-class II molecules which have low binding affinity with putative beta cell antigens may fail in induction of self-tolerance. beta cell-reactive T cells may expand and infiltrate around the islet (benign insulitis) by stimulation with environmental factors through molecular mimicry and/or beta cell antigens per se. Benign insulitis may develop to destructive insulitis under overexpression of Th1 cytokines, which may be affected by non-MHC genes. Immune interventions to shift a cytokine balance to Th2 dominance in the insulitis lesion may be most realistic approach to suppress development of type 1 diabetes after the induction of autoimmunity.

Animals

Constitutive and heat-inducible expression of HSP105 in neurons and glial cells in culture.

The constitutive and heat-inducible expression of HSP105 was investigated in newborn mouse brain cell cultures by Northern blotting, Western blotting and immunocytochemistry. HSP105 was expressed most abundantly in the brain among the various tissues examined. HSP105 mRNA and protein were both present at substantial levels in brain cell cultures under unstressed conditions and up-regulated greatly during 3-48 h following exposure to heat stress (43 degrees C/20 min). HSP105 was expressed in nearly all neurons, oligodendrocytes, microglia and astrocytes with its location of both cytoplasmic and nuclear regions under unstressed and heat-stressed conditions. HSP105 expression was significantly down-regulated in astrocytes following treatment with IL-beta or TNF-alpha (50 ng/ml for 6 days), both of which are known growth-stimulatory cytokines for astrocytes. These results indicate that HSP105 is constitutive and heat-inducible HSP in neurons and glial cells in which its expression is under the control of both stressful stimuli and growth-regulatory factors.

Animals

Autoantibodies against CD38 (ADP-ribosyl cyclase/cyclic ADP-ribose hydrolase) that impair glucose-induced insulin secretion in noninsulin- dependent diabetes patients.

Cyclic ADP-ribose (cADPR) has been shown to be a mediator for intracellular Ca2+ mobilization for insulin secretion by glucose in pancreatic beta cells, and CD38 shows both ADP-ribosyl cyclase to synthesize cADPR from NAD+ and cADPR hydrolase to hydrolyze cADPR to ADP-ribose. We show here that 13.8% of Japanese non-insulin-dependent diabetes (NIDDM) patients examined have autoantibodies against CD38 and that the sera containing anti-CD38 autoantibodies inhibit the ADP-ribosyl cyclase activity of CD38 (P </= 0.05). Insulin secretion from pancreatic islets by glucose is significantly inhibited by the addition of the NIDDM sera with anti-CD38 antibodies (P </= 0.04-0.0001), and the inhibition of insulin secretion is abolished by the addition of recombinant CD38 (P </= 0.02). The increase of cADPR levels in pancreatic islets by glucose was also inhibited by the addition of the sera (P </= 0.05). These results strongly suggest that the presence of anti-CD38 autoantibodies in NIDDM patients can be one of the major causes of impaired glucose-induced insulin secretion in NIDDM.

ADP-ribosyl Cyclase

A role for natural killer cells in the immunopathogenesis of multiple sclerosis.

Seventeen relapsing-remitting (R/R) multiple sclerosis (MS) patients and age/sex matched controls were studied every 6 weeks for 2 years. Disease activity, determined both clinically and by serial MRI, was correlated with natural killer (NK) cell functional activity (FA) and phenotype. Mean NK cell FA is significantly lower in MS patients, compared to controls (P < 0.001), while variability around the means is significantly greater (P < 0.01). The spectrum of mean NK cell FA, observed in the patient cohort, along with cyclical nature of the FA and phenotype over time, observed in both patients and controls, may begin to explain the discrepant results reported in previous studies. In R/R MS, there is a significant correlation between reductions (valleys) in NK cell FA and the development of active lesions on MRI, new (P < 0.001) or enlarging (P = 0.05). More importantly, a significant number of active lesions, new (P = 0.01) and enlarging (P = 0.02), are preceded by a reduction in NK cell FA. The correlation between the onset of clinical attacks and valleys of NK cell FA is also significant (P = 0.002). When taken together, the results suggest that reductions (valleys) in NK cell FA represent periods of susceptibility for the development of active lesions on MRI and clinical attacks. A significant positive correlation is also identified between mean NK cell FA for each R/R MS patient and total number of active MRI lesions developed by that patient over the 2 years (P = 0.001). The results would suggest that R/R MS patients with a higher mean NK cell FA are at greater risk for the development of active lesions. These results support the proposal that NK cells may play a role in the immunopathogenesis of R/R MS.

Adult

Interleukin-15, a T-cell growth factor, is expressed in human neural cell lines and tissues.

Interleukin-15 (IL-15) is a novel cytokine which shares activities and receptor components with IL-2. To investigate the biological roles of IL-15 in the human nervous system, we examined the expression of mRNAs for IL-15 and the IL-15 receptor three subunits (IL-15alpha, IL-2Rbeta and IL-2Rgamma) in human neural cell lines and tissues using reverse transcription-polymerase chain reaction and Southern blot analysis. The constitutive expression of high levels of IL-15 mRNA was observed in all the cell lines examined, including Y79 retinoblastoma, IMR-32 neuroblastoma, SK-N-SH neuroblastoma, U-373MG glioma, KG-1-C glioma, NTera2 teratocarcinoma and neurons derived from NTera2 cells following treatment with retinoic acid (RA). Among these cell lines, IL-15 protein was detectable at high levels in culture supernatants of SK-N-SH cells and NTera2-derived neurons. The expression of an alternatively-spliced transcript of the IL-15 gene was up-regulated in NTera2 cells during RA-induced neuronal differentiation, suggesting the existence of differentiation-dependent transcriptional regulation. The expression of IL-15 mRNA was also identified in the human cerebral and cerebellar tissues, peripheral nerve and skeletal muscle, while the mRNAs for the complete set of IL-15R components were detectable only in U-373MG cells, cerebral and cerebellar tissues at significant levels. These results indicate that the expression of IL-15 but not of IL-15R mRNA is universal in human neural cell lines and tissues and raise the possibility that IL-15 acts as a neuroimmune regulatory factor in the human central nervous system.

Blotting, Southern

Cultured skin fibroblasts isolated from mice devoid of the prion protein gene express major heat shock proteins in response to heat stress.

Recent evidence has suggested that molecular chaperones participate in the conformational change between the normal cellular prion protein (PrPC) and its scrapie isoform (PrPSc). To study a role of PrPC in the regulation of expression of heat shock proteins (HSPs), a group of molecular chaperones, heat-induced expression of major HSPs (HSP105, HSP90alpha, HSP72, HSC70, HSP60, and HSP25) was investigated in cultured skin fibroblasts isolated from the mice homogeneous for a disrupted PrP gene (PrP-/- mice) by Western blot analysis and immunocytochemistry. Two lines of fibroblasts were established and designated SFK derived from the PrP-/- mice and SFH derived from the PrP+/+ mice, respectively. In both SFK and SFH cells, HSP105, HSP72, and HSP25 were expressed at low levels under unstressed conditions but they were induced markedly following exposure to heat stress (43 degreesC/20 min) at 3-72 h postrecovery. In both cell types, HSC70 and HSP60 were expressed at high levels under unstressed conditions and their levels remained unchanged after heat shock treatment. HSP90alpha was undetectable in both cell types under any conditions examined. The pattern of expression, induction, and subcellular location of HSP105, HSP72, HSC70, HSP60, and HSP25 was not significantly different between SFK and SFH cells under unstressed and heat-stressed conditions. Furthermore, the levels of constitutive expression of HSP105, HSC70, HSP60, and HSP25 were similar between the brain tissues isolated from the PrP-/- and PrP+/+ mice. These results indicate that HSP induction is not affected by either the existence or the absence of PrPC in the cells.

Animals

Inhibitory effect of troglitazone on diabetic neuropathy in streptozotocin-induced diabetic rats.

Free-radical scavengers and inhibitors of tumour necrosis factor-alpha (TNF-alpha) such as N-acetylcysteine and pentoxifylline have been shown to inhibit the development of peripheral neuropathy in streptozotocin(STZ)-induced diabetic rats. In this study we examined the effect of troglitazone, an anti-diabetic thiazolidinedione, on diabetic neuropathy, since it also is a free-radical scavenger and a TNF-alpha inhibitor. Rats were fed powder chow mixed with troglitazone at 0.5% and 0.125% ad libitum. Although blood glucose concentrations were remarkably higher and body weight lower in diabetic than in nondiabetic rats, troglitazone had no effect on these throughout the 24-week experiment. Serum lipoperoxide concentrations, tibial nerve lipoperoxide content and serum TNF-alpha activity induced by lipopolysaccharide was increased in diabetic rats, but inhibited in troglitazone-treated rats. Motor nerve conduction velocity (MNCV) of the tibial nerve slowed in diabetic rats, compared with that in nondiabetic rats. On the other hand, the slowed MNCV was (p < 0.05-0.01) inhibited after weeks 12 and 16 of the experiment in diabetic rats treated with high and low doses of troglitazone, respectively. Morphometric analysis showed that troglitazone suppressed the decrease of the myelinated fibre area (p < 0.05), axon/myelin ratio (p < 0.01) and fascicular area (p < 0.05) and suppressed the increase of myelinated fibre density (p < 0.001) in diabetic rats. These results indicate that troglitazone has a beneficial effect on peripheral neuropathy in STZ-induced diabetic rats irrespective of blood glucose concentrations.

Animals

Gliclazide inhibits diabetic neuropathy irrespective of blood glucose levels in streptozotocin-induced diabetic rats.

N-acetylcysteine and pentoxifylline, free radical scavengers and inhibitors of tumor necrosis factor-alpha (TNF-alpha) production, inhibit the development of peripheral neuropathy in streptozotocin (STZ)-induced diabetic rats. This study was designed to elucidate the effect of gliclazide, an oral hypoglycemic sulfonylurea, on diabetic neuropathy, because it has been indicated to be a free radical scavenger and TNF-alpha inhibitor. Rats were fed with powder chow mixed with gliclazide or glibenclamide as a control ad libitum. Blood glucose levels and body weight were remarkably higher and lower in diabetic than in nondiabetic rats, respectively, while gliclazide and glibenclamide had no effect on these in both diabetic and nondiabetic rats throughout a 24-week experiment. Serum lipoperoxide levels and lipopolysaccharide (LPS)-induced serum TNF-alpha activities were significantly increased in diabetic rats, whereas these were significantly inhibited in gliclazide-treated rats. Motor nerve conduction velocity (MNCV) of the tibial nerve significantly slowed in diabetic rats compared with nondiabetic rats. On the other hand, the slowed MNCV was significantly inhibited in gliclazide-treated diabetic rats after 16 experimental weeks. Morphometric analysis showed that gliclazide prevented decreased myelinated fiber area (P < .05), increased fiber density (P < .001), and decreased axon/myelin ratio (P < .05) in diabetic rats. Glibenclamide treatment did not affect serum lipoperoxide, TNF-alpha, MNCV, or nerve morphology in this experiment. These results indicate that gliclazide has a beneficial effect on peripheral neuropathy in STZ-induced diabetic rats, irrespective of blood glucose levels.

Animals

Constitutive and cytokine-inducible expression of prion protein gene in human neural cell lines.

Prion diseases are a group of neurodegenerative disorders characterized by intracerebral accumulation of a protease-resistant prion protein (PrP(Sc)) that causes extensive neuronal degeneration and astrogliosis. The regulation of prion protein (PrP) gene expression by a panel of glial and neuronal cytokines (TNF-alpha, IFN-gamma, IL-1beta, IL-10, and TGF-beta1) was investigated in human neural cell lines by reverse transcription-polymerase chain reaction and Northern blot analysis. The constitutive expression of PrP mRNA was identified in all human neural cell lines and tissues examined including Y79 retinoblastoma, IMR-32 neuroblastoma, SK-N-SH neuroblastoma, U-373MG astrocytoma, KG-1-C glioma, NTera2 teratocarcinoma, NTera2-derived differentiated neurons (NTera2-N), peripheral nerve, and cerebral and cerebellar tissues. In SK-N-SH cells, a 48 hour (h) treatment with 100 ng/ml IL-1beta, 100 ng/ml TNF-alpha, or 100 nM phorbol 12-myristate 13-acetate induced a 2.7- to 4.2-fold increase in the level of PrP mRNA, while the exposure to 100 ng/ml IFN-gamma resulted in a 50% decrease. By contrast, none of these cytokines significantly altered the levels of PrP mRNA in IMR-32, NTera2-N, or U-373MG cells. These results indicate that the PrP gene expression is constitutive in a wide range of human neural cell lines and tissues where it is controlled by cell type-specific regulatory mechanisms.

Astrocytoma

[Quantitative PCR system].

We evaluated a real time quantitative PCR assay using dual-labeled fluorogenic probes for clinical application. Preliminary study using the house-keeping gene, beta-actin confirmed that this method was accurate and reproducible for the quantitative detection of the genes. The system also has merit with regard to the dynamic range of the starting target molecule determination. We then investigated DNA copies of cytomegalovirus (CMV) gene in vivo. The results demonstrated on association between the quantitation of CMV-DNA copies and clinical manifestation associated with CMV infection of immunodeficiency states or infantile hepatitis. It was also successful for quantitative estimation by RT-PCR. Namely, the assay made it possible to discriminate drug-sensitive leukemia cells from resistant cells based on the MDR1 gene and dCK gene. Real time quantitative PCR assay may be useful in a variety of clinical fields.

Cytomegalovirus