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Biomedical subjects

Y Kawabe

Publications and source records attributed to Y Kawabe.

At least 19 recordsLinked to original sources

An alternative form of nucleolysin binds to a T-cluster DNA in the silencer element of platelet factor 4 gene.

The cDNA of a T-cluster binding protein (TCBP) has been cloned using the Southwestern method. The cDNA sequence of TCBP reveals that it has 78% homology to that of nucleolysin, a factor involved in apoptosis in cytolytic lymphocyte target cells. In particular, the 0.8kb sequences of the 5'-half of both cDNAs were identical. However, nucleolysin has a lysosome-targeting motif at the carboxy terminus, while TCBP has a hydrophobic sequence instead. Southern blot experiments have revealed that both cDNA sequences existed in the same YAC clone derived from chromosome 10. This strongly suggests that the TCBP cDNA is an alternatively spliced product of the nucleolysin/TCBP gene. The TCBP mRNA is ubiquitously expressed, not only in megakaryocytic cells but also in other hematopoietic cells. However, when HEL cells were induced to differentiate to megakaryocytes by DMSO, TCBP mRNA was reduced, while PF4 gene expression increased simultaneously. Gel mobility shift analysis demonstrated that recombinant TCBP specifically bound to the T-cluster and the proximal T-rich region of the PF4 promoter. Co-transfection experiments showed that TCBP reduced the gene expression from the PF4 promoter. On the other hand, TCBP did not affect expression from the PF4 promoter in which the T-cluster and the T-rich region had been removed. These results indicate that TCBP may participate in the regulation of PF4 gene expression by binding to the T-cluster and the T-rich sequence.

Amino Acid Sequence

A role for macrophage scavenger receptors in atherosclerosis and susceptibility to infection.

Macrophage type-I and type-II class-A scavenger receptors (MSR-A) are implicated in the pathological deposition of cholesterol during atherogenesis as a result of receptor-mediated uptake of modified low-density lipoproteins (mLDL). MSR-A can bind an extraordinarily wide range of ligands, including bacterial pathogens, and also mediates cation-independent macrophage adhesion in vitro. Here we show that targeted disruption of the MSR-A gene in mice results in a reduction in the size of atherosclerotic lesions in an animal deficient in apolipoprotein E. Macrophages from MSR-A-deficient mice show a marked decrease in mLDL uptake in vitro, whereas mLDL clearance from plasma occurs at a normal rate, indicating that there may be alternative mechanisms for removing mLDL from the circulation. In addition, MSR-A-knockout mice show an increased susceptibility to infection with Listeria monocytogenes or herpes simplex virus type-1, indicating that MSR-A may play a part in host defence against pathogens.

Animals

Apoptosis induction in human peripheral blood T lymphocytes by high-dose steroid therapy.

High-dose steroid pulse therapy is effective in transplant rejection and severe autoimmune diseases. Our goal was to identify the mechanism by which high-dose steroid exerts specific immunosuppressive actions. In this study, we investigated the in vivo effects of high-dose (1 g) methylprednisolone infusion on peripheral blood T lymphocyte apoptosis induction in 15 patients with severe autoimmune diseases. DNA fragmentation was detected in peripheral blood T cells isolated from these patients after 2 and 4 hr of steroid infusion. In contrast, T cells isolated from the same patients before or 8 or more hours after infusion did not show DNA fragmentation. DNA fragmentation was more significant in CD4+ than CD8+ T cells. The susceptibility of CD4+ T cells to apoptosis was associated with a lower expression of Bcl-2 in these cells compared with that on CD8+ T cells. To support the T-cell apoptosis induction by pulse therapy, peripheral blood T cells from normal subjects underwent DNA fragmentation after in vitro exposure to 2.5-10 microg/ml of methylprednisolone for 30 min. Our results indicate that induction of peripheral blood T-cell apoptosis is an important mechanism contributing to the immunosuppression observed after high-dose steroid therapy.

Adult

Superantigen-induced stromelysin production from rheumatoid synovial cells.

Superantigens activate a large number of T cells in a V beta-restricted manner after binding to MHC class II molecules on the antigen presenting cells (APC). Superantigens also activate APC directly by interacting with their ligands, MHC class II molecules. In the present study, we examined the effects of superantigens on matrix metalloproteinases (MMPs) secretion from rheumatoid synovial fibroblasts. We demonstrated that stimulation of interferon (IFN)-gamma-treated synovial fibroblasts with staphylococcal enterotoxin A (SEA) selectively induced the secretion of stromelysin, a neutral MMP, from synovial fibroblasts. Pretreatment of synovial fibroblasts with cycloheximide, an inhibitor of protein synthesis, prevented MMP-3 secretion from rheumatoid synovial cells suggesting that protein synthesis was required for SEA-induced MMP-3 secretion after SEA binding to MHC class II molecules. Our data suggest that in the synovium, bacterial superantigens are potent inducers of stromelysin which plays a critical role in articular destruction observed in inflammatory joint disease.

Arthritis, Rheumatoid

A case of cytophagic histiocytic panniculitis: successful treatment of recurrent attacks with steroid pulse therapy and oral cyclosporin A.

We report a 35-year-old man, who had been diagnosed with Weber-Christian disease, presented with acute onset of high fever, malaise, jaundice and hepatosplenomegaly with subcutaneous nodules. Laboratory tests showed elevated serum ferritin and liver enzymes, especially lactate dehydrogenase (LDH), with pancytopenia and coagulation abnormalities. Peripheral blood and bone marrow examinations showed erythro-, leuko- and thrombo-phagocytic histiocytes and macrophages. The patient developed the same clinical features seven years ago. Based on diagnosis of cytophagic histiocytic panniculitis, the patient was treated with steroid pulse therapy and oral cyclosporin A. The combination therapy caused a marked improvement in the clinical condition.

Adult

Effects of rapamycin on apoptosis of rheumatoid synovial cells.

In the present study, we investigated the effects of an immunosuppressant, rapamycin, on bcl-2 expression and the susceptibility of human rheumatoid synovial fibroblasts to Fas-mediated apoptosis. Rapamycin treatment down-regulated bcl-2 expression on rheumatoid synovial cells in a dose-dependent manner. In contrast, Fas antigen expression was not influenced by rapamycin treatment. Rapamycin treatment also enhanced the susceptibility of rheumatoid synovial cells to anti-Fas monoclonal antibody-mediated apoptosis. Our results suggest that rapamycin augments the sensitivity of rheumatoid synovial fibroblasts to apoptosis by down-regulating bcl-2 expression. This pharmacological alteration of sensitivity to apoptosis in the rheumatoid synovium may represent a new therapeutic approach for rheumatoid arthritis.

Adult

Inhibitory effects of interleukin-10 on synovial cells of rheumatoid arthritis.

This paper describes the immunoregulatory effects of interleukin-10 (IL-10) on synovial cells in vitro. Synovial cells were cultured with IL-10 in the presence or absence of various cytokines. Following incubation, the costimulatory molecule expression on synovial cells and cytokine production in culture supernatants were analysed by an indirect immunofluorescence method and enzyme-linked immunosorbent assay, respectively. We also examined the effect of IL-10 on the function of synovial cells as antigen-presenting cells (APC). Synovial cells spontaneously express several kinds of costimulatory molecule and produce various kinds of cytokines. Stimulation of synovial cells with interferon-gamma (IFN-gamma), IL-1 beta, or 12-O-tetradecanoyl phorbol 13-acetate (TPA) markedly enhanced the expression of costimulatory molecules and cytokine production of these cells. Both spontaneous and up-regulated costimulatory molecule expression and cytokine production were significantly suppressed by the addition of IL-10. Autologous T-cell proliferation was stimulated by purified protein derivative (PPD) in IFN-gamma-treated synovial cells and treatment of these synovial cells with IL-10 also suppressed T-cell proliferation. Our results suggest that IL-10 has an inhibitory effect on synovial cells and is an important immunoregulatory component of the cytokine network in rheumatoid arthritis.

Arthritis, Rheumatoid

High prevalence of Sjögren's syndrome in patients with HTLV-I associated myelopathy.

OBJECTIVE: A high seroprevalence of HTLV-I in female Sjögren's syndrome (SS) patients has been reported in Nagasaki, Japan, an area that is heavily endemic for HTLV-I infection. Salivary IgA class antibodies to HTLV-I were common among HTLV-I seropositive patients with SS. This study was undertaken to elucidate the pathogenesis of SS caused by HTLV-I infection. METHODS: The clinical features and histological findings of SS and the prevalence of serum autoantibodies in 10 patients with HTLV-I associated myelopathy (HAM) who were consecutively admitted into Nagasaki University School of Medicine, were compared with those of 20 HTLV-I seropositive and 20 HTLV-I seronegative patients with SS. RESULTS: Ocular and oral manifestations of SS were commonly detected in HAM patients. These patients also had extraglandular manifestations including recurrent uveitis, arthropathy, interstitial pneumonitis, Raynaud's phenomenon, and inflammatory bowel disease. All patients with HAM histologically showed a mononuclear cell infiltration in the labial salivary glands. Six of 10 patients had a mononuclear cell infiltration with a focus score of 1 or greater. According to the preliminary criteria for SS proposed by the European Community, definitive SS was diagnosed in six patients and probable SS in two patients. Serum gamma globulin and IgG values were increased in HAM patients. Patients with HAM had lower prevalence of rheumatoid factor, antinuclear antibody, and anti-SS-A (Ro) antibody than those of HTLV-I seropositive and HTLV-I seronegative SS patients. However, there was no significant difference in the prevalence of these antibodies among HAM patients with definitive SS, HTLV-I seropositive and HTLV-I seronegative SS patients. The CD3+CD4+ T cells preferentially infiltrated into the salivary glands in HAM patients as well as the salivary glands of patients with HTLV-I seropositive and seronegative patients. It seems probable that peripheral blood mononuclear cells from HAM patients preferentially infiltrated into the salivary glands, and that these cells produced the autoantibodies as well as anti-HTLV-I antibody. CONCLUSION: The results strongly support the idea that HTLV-I is involved in the pathogenesis of the disease in a subset of patients with SS in endemic areas.

Adult

Analysis of the hypervariable region of hepatitis C virus E2/NS1 gene in an infant infected by blood transfusion.

We investigated the sequential change in the hypervariable region 1 (HVR 1) of hepatitis C virus (HCV) E2/NS1 gene in an infant. He was transfused with 160 mL of blood containing the HCV (0.7 Meq/mL) on the 6th d after birth and subsequently developed chronic viremia. At 16 mo, the HVR1 amino acid sequences of HCV observed in the infant's sera were very similar to those from the donor (his maternal grandfather) on the day of transfusion. However, highly variable amino acid sequences of HVR1 were observed throughout infancy. These results demonstrate that an adaptive response of HCV to evade host immunity seems to occur, as in adult cases, even in early infancy when the ability to produce humoral immunoglobulin is thought to be low.

Amino Acid Sequence

Effects of various absorption enhancers on the intestinal absorption of water soluble drugs by in vitro Ussing chamber method: correlation with an in situ absorption experiment.

The effect of absorption enhancers on the small and large intestinal absorption of drug in rats was examined using an in vitro modified Ussing chamber method, and the results were compared with those from an in situ absorption experiment. Phenol red was chosen as a model drug, while the absorption enhancers used were sodium glycocholate (Na-GC), sodium taurocholate (Na-TC), sodium deoxycholate (Na-DC), EDTA, sodium salicylate (Na-Sal), sodium caprate (Na-Cap), diethyl maleate (DEM) and N-lauryl-beta-D-maltopyranoside (LM), all used at a concentration of 20 mM. This modified Ussing chamber method showed that Na-DC, EDTA and LM were the most effective absorption enhancers in the large intestine. A good correlation exists between the area under the curve (AUC) (in situ loop model) and the cumulative amount of phenol red absorbed (in vitro modified Ussing chamber method). These results indicated that the in vitro modified Ussing chamber method can be used to evaluate the effects of various absorption enhancers in the intestine.

Animals

[Tuberculosis in patients with human immunodeficiency virus infection].

Six men (mean age: 36.3 +/- 29 years) infected with the human immunodeficiency virus (HIV), four Japanese and two from Myammar, were admitted to our hospital for treatment of tuberculosis. In five, HIV positivity on serologic testing was first found when tuberculosis was diagnosed. The mean CD4 cell count was 37.3 +/- 29.6/microliters. Results of tuberculin skin tests were negative in 5 patients. One patient had pulmonary tuberculosis and 5 had miliary tuberculosis. Hilar and mediastinal lymphadenopathy was found on chest X-ray films in 4 patients and superficial lymphadenopathy was found in all patients. All patients had positive mycobacterial cultures of sputum and 2 patients had positive tests for acid-fast bacilli on smears of lymph-node aspirates. In one patient with tuberculosis meningitis, a culture of cerebrospinal fluid for acid-fast bacilli was positive. Epithelioid cell granulomas were found in samples of lung, liver, and bone marrow from 4 patients. Mycobacterium tuberculosis was isolated from all patients, and was not resistant to isoniazid, rifampicin, ethambutol, or streptomycin. Therefore all patients responded well to treatment of tuberculosis.

AIDS-Related Opportunistic Infections

Sterol-dependent transcriptional regulation of sterol regulatory element-binding protein-2.

We show in this manuscript that expression of the mRNA for sterol regulatory element-binding protein-2 (SREBP-2) is regulated by the cellular sterol level in cultured HeLa cells. We have cloned the 5'-flanking region of the gene encoding human SREBP-2. Characterization of this region shows the minimum 50-base pair segment, which contains a 10-base pair sterol regulatory element 1 (SRE-1) identical to the one in the human LDL receptor promoter, confers sterol responsiveness when fused to the luciferase reporter gene. Enforced expression of the truncated SREBP-2 protein (amino acid residues 1-481) also shows that this upstream segment contains the information required for transcriptional activation. The luciferase assays using mutant versions of the reporter genes reveal that the sterol-dependent transcriptional regulation is mediated by two nearby motifs, the SRE-1 and the NF-Y binding site (the inverted CCAAT box, ATTGGC); the latter is reported to play a critical role in sterol-dependent regulation of 3-hydroxy-3-methylglutaryl-coenzyme A synthase and farnesyl diphosphate synthase genes (Jackson, S. M., Ericsson, J., Osborne, T. F., and Edwards, P. A. (1995) J. Biol. Chem. 270, 21445-21448). Gel mobility shift assays demonstrate that the transcription factor NF-Y truly binds to the ATTGGC sequence. These findings suggest that the activity of SREBP-2 is controlled not only post-translationally by proteolytic activation of the precursor protein but also transcriptionally by itself together with NF-Y.

Binding Sites

Regulation of fatty acid synthase expression by cholesterol in human cultured cells.

The regulation of fatty acid synthase (FAS) expression by sterols in a cultured human hepatoblastoma cell line, Hep G2, was studied. When cells were treated with compactin in a medium containing lipoprotein deficient serum, FAS mRNA level increased 1.6-fold. A squalene synthase inhibitor, TAN1607A, decreased both free and esterified cholesterol contents in Hep G2 cells and increased mRNA levels for FAS, HMG-CoA reductase, squalene synthase and LDL receptor. However, for the increment of FAS mRNA, a 10-fold higher concentration of this inhibitor was needed. These results demonstrate that the concentration of cellular cholesterol which regulates FAS expression is necessarily lower than the levels which regulate other sterol sensitive genes. FAS mRNA was also increased by an inhibitor of SREBP degradation as well as chenodeoxycholic acid. These results indicate that FAS mRNA expression is regulated by cholesterol and is mediated through SREBPs. The implications of the different modes of sterol regulation of FAS and LDL receptor expression are discussed.

Bridged Bicyclo Compounds, Heterocyclic

Fas antigen expression on synovial cells was down-regulated by interleukin 1 beta.

Recent reports revealed that Fas antigen is functionally expressed on human synovial cells and apoptosis can be induced in these cells by anti-Fas antibody. We examined the effect of interleukin 1 beta (IL-1 beta) on Fas antigen-mediated apoptosis on human synovial cells in vitro. Using flowcytometric analysis, IL-1 beta inhibited Fas antigen expression on synovial cells in a dose-dependent fashion. No significant difference of Fas antigen gene expression between IL-1 beta-treated and untreated synovial cells was observed by RT-PCR analysis, suggesting that the inhibitory effect of Fas antigen expression by IL-1 beta is at posttranscriptional level. Apoptosis of synovial cells was easily induced by treatment of these cells with anti-Fas antibody. In contrast, pretreatment of synovial cells with IL-1 beta protected these cells against Fas antigen-mediated apoptosis. The expression of bcl-2 on synovial cells, known to interfere with the apoptotic process mediated by the Fas antigen, was not influenced by IL-1 beta. Our results suggest that IL-1 beta inhibits Fas antigen-mediated apoptosis of synovial cells and may perpetuate the hyperplasia of the synovium in patients with rheumatoid arthritis.

Apoptosis

Inhibition of Fas antigen-mediated apoptosis of rheumatoid synovial cells in vitro by transforming growth factor beta 1.

OBJECTIVE: To investigate the mitogenic and anti-apoptotic effects of transforming growth factor beta 1 (TGF beta 1) on rheumatoid synovial cells in vitro. METHODS: Synovial cells were cultured with or without TGF beta 1. After incubation, the proliferative response of synovial cells and the expression of Fas antigen and bcl-2 on synovial cells were examined. Finally, Fas antigen-mediated apoptosis of synovial cells was investigated by the addition of anti-Fas antibody. RESULTS: TGF beta 1 enhanced the proliferation of synovial cells in a dose-dependent manner. In addition, Fas antigen expression on synovial cells was inhibited by the addition of TGF beta 1 with up-regulation of bcl-2 expression. The addition of anti-Fas antibody induced synovial cell apoptosis. However, stimulation of synovial cells with TGF beta 1 became markedly resistant to Fas antigen-mediated apoptosis. The results were not affected by the addition of a neutralizing antibody to platelet-derived growth factor type AA (PDGF-AA), which suggests that the effect of TGF beta 1 on synovial cells was promoted via PDGF-AA-independent mechanisms. CONCLUSION: Our results suggest that TGF beta 1 promotes synovial cell proliferation through its mitogenic effect on synovial cells and interference with the apoptotic process mediated by the Fas antigen, resulting in the perpetuation of the synovial hyperplasia in patients with rheumatoid arthritis.

Apoptosis

Wegener's granulomatosis overlapped with Takayasu arteritis.

A 27-year-old woman presented with destructive scleritis of the left eye with subcutaneous haemorrhage and swelling of the lower eyelid. She had experienced recurrent nasal bleeding for the last six years, and chronic sinusitis resulting in the destruction of the nasal septum and left maxillary sinus. Nasal mucosal biopsies demonstrated granuloma formation with no evidence of vasculitis. The level of serum cytoplasmic anti-neutrophil cytoplasm antibody (c-ANCA) was significantly increased. Furthermore, multiple sites of complete occlusions were detected in the left subclavian and common carotid arteries by subtraction angiography and MRI. We describe a case of Wegener's granulomatosis overlapped with Takayasu arteritis, which, to our knowledge, has not been previously reported.

Adult

Inhibitory effect of clarithromycin on costimulatory molecule expression and cytokine production by synovial fibroblast-like cells.

This study was undertaken to investigate the immunomodulatory effect of clarithromycin against synovial fibroblast-like cells (synoviocytes). Synovial tissue obtained from rheumatoid arthritis (RA) or osteoarthritis (OA) patients was enzymatically digested to separate synoviocytes. The synoviocytes were cultured with or without cytokines in the presence of various concentrations of clarithromycin. The expression of costimulatory molecules was examined on the surface of the synoviocytes, using specific MoAbs and flow cytometry. The production of cytokines by synoviocytes was also measured using an immunoenzymatic assay. Finally, autologous T cells were stimulated by interferon-gamma (IFN-gamma)-treated synoviocytes in response to purified protein derivative (PPD). In some experiments, MoAbs specific for costimulatory molecules or clarithromycin were added and 3H-thymidine incorporation was counted. Intercellular adhesion molecule-1 (ICAM-1), LFA-3 and vascular cell adhesion molecule-1 (VCAM-1) were detected on the surface of both RA and OA synoviocytes. However, ICAM-2, B7-1 and B7-2 were not detected, and cytokines failed to induce these molecules. Both spontaneous and up-regulated expression of ICAM-1, LFA-3 and VCAM-1 by IFN-gamma, IL-1beta or 12-o-tetradecanoyl phorbol 13-acetate (TPA) were markedly suppressed by clarithromycin in a dose-dependent manner at concentrations between 0.1 and 10 microg/ml. The production of IL-1beta, IL-6, IL-8, granulocyte colony-stimulating factor (G-CSF) and granulocyte-macrophage colony-stimulating factor (GM-CSF) but not IL-1alpha and tumour necrosis factor-alpha (TNF-alpha) by synoviocytes was detected. Clarithromycin significantly suppressed the production of these cytokines, but did not enhance IL-10 production. Finally, autologous T cells were stimulated by IFN-gamma-treated synoviocytes in response to PPD. As clarithromycin suppressed HLA-DR and costimulatory molecule expression was enhanced by IFN-gamma, autologous T cell proliferation was markedly inhibited by clarithromycin. Clarithromycin has a considerable immunosuppressive effect on synoviocytes by inhibiting costimulatory molecule expression, cytokine production and antigen-specific T cell proliferation induced by synoviocytes.

Anti-Bacterial Agents

The effects of the immunosuppressant rapamycin on the growth of rheumatoid arthritis (RA) synovial fibroblast.

RA is a chronic inflammatory disease characterized by mononuclear cell infiltration and the overgrowth of synovial fibroblast. This invasive growth of synovial tissues corresponds with the progressive destruction of articular cartilage and bone. Several immunosuppressive agents, such as cyclophosphamide, cyclosporin A and mizoribine, have been clinically used to control disease progression, though relatively little is known of their effects on rheumatoid synovium. Rapamycin exhibits a strong immunosuppressive activity by acting on T cell signalling pathways. In the present study we examined the effects of rapamycin on the growth of synovial fibroblast isolated from RA patients. Platelet-derived growth factor (PDGF) is a potent growth factor in synovial fibroblasts isolated from RA patients. PDGF and serum stimulation resulted in a rapid phosphorylation of tyrosine and activation of mitogen-activated protein kinase (MAP kinase), 70-kD-S6 kinase (P70S6k) and 90-kD-S6 kinase (P90rsk). Rapamycin, a macrolide immunosuppressant, inhibited completely growth factor-induced synovial fibroblast proliferation and P70S6k activation. In contrast, tyrosine phosphorylation and activation of MAP kinases and P90rsk were not influenced by rapamycin treatment. Our data demonstrate that growth factor-mediated P70S6k activation is closely related to the growth of synovial fibroblast, and suggest the efficacy of rapamycin for controlling synovial hyperplasia in RA.

Arthritis, Rheumatoid