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Biomedical subjects

I Kitajima

Publications and source records attributed to I Kitajima.

At least 55 records · Page 3Linked to original sources

Efficient transfer of synthetic ribozymes into cells using hemagglutinating virus of Japan (HVJ)-cationic liposomes. Application for ribozymes that target human t-cell leukemia virus type I tax/rex mRNA.

We investigated the usefulness of ribozymes in inhibiting the expression of human T-cell leukemia virus type I (HTLV-I) gene. Two hammerhead ribozymes that were against HTLV-I rex (RR) and tax (TR) mRNA were synthesized. Both ribozymes were sequence-specific in the in vitro cleavage analysis of run-off transcripts from tax/rex cDNA. Intracellular activities of the ribozymes were studied in HTLV-I tax cDNA-transfected rat embryonic fibroblasts (Rat/Tax cells), which expressed the Tax but not Rex. Ribozymes were delivered into cells using anionic or cationic liposomes fused with hemagglutinating virus of Japan (HVJ). Cellular uptake of ribozymes complexed with HVJ-cationic liposomes was 15-20 times higher cellular uptake than naked ribozymes, and 4-5 times higher than that of ribozymes complexed with HVJ-anionic liposomes. HVJ-cationic liposomes promoted accumulation of ribozymes in cytoplasm and accelerated transport to the nucleus. Tax protein levels were decreased about 95% and were five times lower when the same amount of TR was introduced into the cells using HVJ-cationic, rather than HVJ-anionic liposomes. Inactive ribozyme and tax antisense oligodeoxynucleotides reduced Tax expression by about 20%, whereas RR and tax sense oligodeoxynucleotides had no effect. These results suggest that the ribozymes' effect against tax mRNA was sequence-specific, and HVJ-cationic liposomes can be useful for intracellular introduction of ribozymes.

Animals↗

Thrombin activates NF-kappa B through thrombin receptor and results in proliferation of vascular smooth muscle cells: role of thrombin in atherosclerosis and restenosis.

We investigated the role of thrombin in the pathogenesis in atherosclerosis and restenosis. First we examined the effect of thrombin on cultured human vascular smooth muscle cells (VSMC). We showed that thrombin acts as a mitogen on VSMC through thrombin receptor. The expression of thrombin receptor was increased in the cell lines of VSMC established from directional coronary atherectomy (DCA). This is more pronounced in the cells from patients with restenosis after PTCA. Next we investigated the signaling pathway from thrombin/thrombin receptor. Thrombin activates thrombin receptor resulting in the exposing of the agonist peptide domain (thrombin receptor agonist peptide, TRAP). The signal from thrombin/thrombin receptor activated protein C kinase, tyrosine kinase, and MAP kinase and resulted in NF-kappa B activation. Furthermore, treatment of the cells with antisense p65 oligodeoxynucleotides of NF-kappa B inhibited the thrombin-stimulated growth of VSMC in vitro. These results suggest that thrombin may have a role in the pathogenesis of atherosclerosis and restenosis after PTCA through the thrombin receptor.

Arteriosclerosis↗

B cell epitope mapping of the bacterial superantigen staphylococcal enterotoxin B: the dominant epitope region recognized by intravenous IgG.

We showed that i.v. IgG contains Abs against a major group of bacterial superantigens, and that they can inhibit superantigen-elicited T cell activation. The B cell epitope region of the superantigen and the inhibitory mechanism have remained unknown. To analyze the dominant B cell epitopes on the bacterial superantigen SEB (staphylococcal enterotoxin B), we constructed fusion proteins of SEB deletion mutants, and the reactivities of these recombinant proteins to i.v. IgG and healthy human sera were evaluated by means of immunoblotting. Intravenous IgG and healthy human sera mostly recognized the C-terminal fragment (amino acid (aa) 133-239). The C-terminally truncated protein (aa 1-228) and the truncated mutant delta 225-234 lost reactivity, while the truncated protein (aa 1-234) did not, suggesting that the region (aa 225-234) is the dominant B cell epitope. The mutant, in which residues 226-229 of SEB were exchanged for residues 209-212 of streptococcal pyrogenic exotoxin A, reduced the reactivity with the C-terminal region-specific IgG purified by affinity chromatography. The C-terminal region-specific IgG inhibited SEB-elicited T cell activation, suggesting that this Ab that recognizes the epitope functions as the humoral defensive factor against SEB in humans. Furthermore, the assumed epitope region was homology to the residues (aa 32-41) of human thymopoietin, containing the biologic active site.

Amino Acid Sequence↗

Antibodies to potassium channels of PC12 in serum of Isaacs' syndrome: Western blot and immunohistochemical studies.

We investigated the pathophysiology of nerve hyperexcitability in a patient with Isaacs' syndrome, who had typical clinical and electromyographic features and responded to plasma exchange. Immunoblotting and immunohistochemistry studies showed that antibodies from this patient reacted with the lysate of a neuronal cell line (PC12). In Western blots, constituents of the patient's serum, particularly immunoglobulin M, reacted with proteins of approximately 50 and 18 kDa, whereas the control serum did not. A cross-linking study with alpha-dendrotoxin (7 kDa) showed a 57 kDa protein-peptide complex. Immunohistochemistry showed that the patient's serum reacted with PC12 cells and human intramuscular nerve axons. Our findings indicate that in Isaac's syndrome nerve hyperexcitability is the result of the immunological involvement of the voltage-dependent potassium channels located along the distal motor nerve or at the nerve terminal.

Aged↗

Ribozyme-based gene cleavage approach to chronic arthritis associated with human T cell leukemia virus type I: induction of apoptosis in synoviocytes by ablation of HTLV-I tax protein.

OBJECTIVE: To develop gene therapy for patients with human T cell leukemia virus type I (HTLV-I)-associated arthropathy (HAAP), we investigated the effects of ribozyme-mediated cleavage of HTLV-I tax/rex messenger RNA (mRNA) on synovial overgrowth. METHODS: We introduced 2 hammerhead ribozymes targeted against HTLV-I tax/rex mRNA into synovial cells obtained from patients with HAAP and from patients with HTLV-I-negative rheumatoid arthritis (RA) and examined the ribozyme-mediated ablation of Tax expression. Using standard methods, we also determined the cells' ability to stop proliferating and to undergo apoptosis. RESULTS: The ribozymes successfully cleaved tax/rex mRNA in HAAP patient synoviocytes. Both tax mRNA expression and Tax protein synthesis were inhibited significantly, resulting in inhibition of synovial cell growth and induction of apoptosis. In contrast, synovial cells from RA patients were not affected. CONCLUSION: In vitro results suggest that ribozyme-mediated gene therapy can inhibit the growth of HTLV-I-infected synovial cells, which is maintained by Tax protein, in HTLV-I-related diseases including HAAP.

Apoptosis↗

HIV-1-infected myelomonocytic cells are resistant to Fas-mediated apoptosis: effect of tumor necrosis factor-alpha on their Fas expression and apoptosis.

To get insight into the involvement of tumor necrosis factor-alpha (TNF-alpha) and Fas (CD95) ligand in apoptosis (programmed cell death) of monocyte/macrophages in HIV-1-infected individuals, various T cell and myelomonocytic cell lines, including the HIV-1-infected clones OM-10.1 and U1 cells, were cultured in the presence of either TNF-alpha alone, anti-Fas agonist monoclonal antibody (Fas-mAb) alone, or their combinations. TNF-alpha moderately decreased the viability of myelomonocytic cell lines in a dose-dependent fashion (1-100 ng/ml). Unlike HIV-1-infected T cell lines, the viability of OM-10.1 and U1 cells was not affected by the treatment with Fas-mAb alone at concentrations up to 1,000 ng/ml. However, the viability of OM-10.1 cells further decreased with increasing concentrations of Fas-mAb when exposed simultaneously to TNF-alpha, suggesting that TNF-alpha sensitizes the cells to Fas-mAb-induced cell death. FACScan analysis and DNA gel electrophoresis revealed that the cell death was due to apoptosis. Such an effect of Fas-mAb was not identified in U1 cells. TNF-alpha but not Fas-mAb activated latent HIV-1 in OM-10.1 and U1 cells. Although all myelomonocytic cell lines expressed Fas on their cell surface, TNF-alpha significantly up-regulated the expression of Fas in only OM-10.1 cells. These results indicate that, unlike T cells, HIV-1-infected myelomonocytic cells are generally resistant to the Fas-mediated apoptosis. However, they would become sensitive to the apoptosis if the expression of Fas could be up-regulated by TNF-alpha or other factors.

Antibodies, Monoclonal↗

Trace element composition and histological analysis of rat bones from the space shuttle.

The physiological and pharmacobiological changes associated with space flight are of greater concern. Exposure to a weightless environment has been shown to have numerous effects on body composition and organ functions. Alterations include decreases in muscle and liver mass, changes in bone structure and integrity, and changes in cardiovascular functions. Zero-gravity in particular has been reported to inhibit several physiological processes of bone formation, retard bone growth and impair the mechanical properties of bones. This report examines the effect of 14 days of spaceflight on the bone trace element compositions of rapidly growing rats. Marked changes of bone trace element contents were found in either weight-bearing bones or non-weight-bearing bones, depending on the metal species. Histological examination revealed an irregular thickening of the endosteal surface of the cortical bone (thoracic vertebrae) of the in-flight rat, whereas it was uniform in the ground control. We suggest that the microgravity environment causes several bone alternations, such as abnormal trace element compositions and defects in vertebral maturation.

Animals↗

[Molecular pathomechanism of HTLV-I infectious diseases].

Human T-cell lymphotropic virus type I(HTLV-I) is a type C retrovirus, closely associated with adult T-cell leukemia. In the past few years, studies have revealed an association between the virus and disorders of organ systems including myelopathy, polymyositis, alveolitis, and Sjögren's syndrome. In addition, we have proposed that HTLV-I-associated proliferative changes in nonlymphocyte synovial cells are termed HTLV-I-associated arthropathy(HAAP). To clarify the pathologic association of HTLV-I with this arthropathy, we attempted to detect HTLV-I proviral DNA in synovial tissue. Proviral HTLV-I DNA was detected not only in peripheral blood mononuclear cells but also in fresh synovial tissue cells and lymphocyte-depleted cultured synovial cells. We also detected mRNA for HTLV-I tax/rex in cultured synovial cells by reverse transcription polymerase chain reaction. Moreover, induction of chronic inflammatory arthropathy in mice transgenic for HTLV-I tax gene strongly suggested the pathogenic mechanism of HAAP. Histologic findings of affected joints in mice showed erosions of bones and pannus-like granulomtous change with infiltration of mononuclear cells. Thus, this novel mechanism might explain synovial proliferation caused by HTLV-I. Tax-expressing transgenic mouse lines also demonstrated that tax itself could serve as an oncogne in fibroblastic cells. Tumors occurred in 100% of the mice with reproducible time periods after wounding. We established cell lines, which expressed high levels of c-fos, c-myc, myb, PDGF, TGF-beta, Zif, and IL-6. Antisense ablation of the p65 subunits of NF-kappa B profoundly inhibited tumor growth in vitro with no apparent affect on the growth of normal cells. These studies were successfully extended to tax-transgenic animals. Intraperitoneal injections of NF-kappa B p65 antisense at the 40 micrograms/g weight dose led to growth arrest after 7 days, and apparent involution after 20 days of treatment. We think activation of NF-kappa B by Tax is important for tumor progression. This paper supports the importance of analyzing molecular pathomechanisms.

Animals↗

Constitutively activated JNK is associated with HTLV-1 mediated tumorigenesis.

Human T cell leukemia virus type I (HTLV-1) is the etiologic agent of adult T-cell leukemia (ATL) and HTLV-1 associated myelopathy, also called tropical spastic paraparesis (HAM/TSP). Both clinical and in vitro evidence have demonstrated that the virus or its transactivator Tax, are transforming. However, transformation appears to require additional, as yet poorly characterized, genetic changes in infected cells. JNK is a recently characterized member of the MAP kinase family. Its signaling cascade is distinct from other members and has been demonstrated to play an important role in T-cell activation, at least partially through its downstream targets, c-jun and ATF-2. Here we demonstrate constitutive activation of the JNK cascade in human lymphocytes transformed in vitro by HTLV-1 and also in Tax transformed murine fibroblasts. Such activation is not induced by Tax expression alone, and occurs only when infected lymphocytes become IL-2 independent or immortalized. Constitutive JNK activation was also found in leukocytes isolated from ATL patients. The acquisition of constitutive JNK activation may represent an important later event in HTLV-1 tumorigenesis.

Animals↗

Binding and functional effects of transcriptional factor Sp1 on the murine interleukin-6 promotor.

The NF-kappaB and NF-IL6 elements have previously been shown to play an important role in regulation of both the mouse and human interleukin-6 gene. Between these two elements lies a G/C-rich sequence, which contains three repeats of the element CCACC, protein binding to which has not been previously characterized. In this study we demonstrate that the transcription factor Sp1 binds to these repeats and plays an important role in basal and in inducible expression of the murine interleukin-6 gene.

3T3 Cells↗

Induction of apoptosis in murine clonal osteoblasts expressed by human T-cell leukemia virus type I tax by NF-kappa B and TNF-alpha.

We investigated the effects of various cytokines in the presence of human T-cell leukemia virus type I (HTLV-I) tax protein in murine clonal osteoblasts, MC3T3-E1 cells. Skeletal remodeling by osteoclasts and osteoblasts is coordinated by cytokines, which are activated by HTLV-I tax protein via nuclear factor-kappa B (NF-kappa B). MC3T3-E1 cells were cocultured with an irradiated HTLV-I-producing lymphocyte cell line, MT-2. After coculture, the tumor necrosis factor-alpha (TNF-alpha) level in the medium was markedly elevated during the 7 days of culture, and MC3T3-E1 cells underwent apoptotic cell death. Marked apoptosis was also observed in MC3T3-E1 cells treated with MT-2 culture medium and in HTLV-I tax-expressing MC3T3-E1 clones, which both expressed high levels of TNF-alpha. This apoptosis was prevented by treatment with neutralizing anti-TNF-alpha antibody (alpha TNF). HTLV-I tax protein and TNF-alpha induced activation of NF-kappa B in apoptotic MC3T3-E1 cells. Decreased NF-kappa B activation was observed in HTLV-I tax-expressing MC3T3-E1 cells treated with alpha TNF. Our results suggest that HTLV-I tax activated NF-kappa B and subsequently TNF-alpha, leading to apoptosis of osteoblasts.

Animals↗

Ceramide-induced nuclear translocation of NF-kappa B is a potential mediator of the apoptotic response to TNF-alpha in murine clonal osteoblasts.

Osteoblasts are affected by TNF-alpha overproduction by immune cells during inflammation. We demonstrate that apoptosis is induced in murine osteoblastic MC3T3-E1 cells by exceeding the concentrations 100 units/mL of TNF-alpha and 10 mumol/L of synthetic ceramide. The apoptotic signaling pathway activated by TNF-alpha was examined in MC3T3-E1 cells. Endogenous cellular ceramide concentrations increased within 3 min, and comparable peak levels were observed for 30 min after TNF-alpha treatment. Activation of nuclear factor-kappa B (NF-kappa B) was detected after TNF-alpha or synthetic ceramide stimulation. The concentration of NF-kappa B increased in the perinuclear region after 5 min of treatment and translocation into the nucleus was observed within 15 min of treatment. Degradation of I kappa B alpha/MAD-3 was observed after 60 min of ceramide treatment. These results indicate that nuclear translocation and activation of NF-kappa B through TNF-alpha generated ceramide may be one important apoptotic signaling pathway in MC3T3-E1 cells. The osteoblastic apoptosis triggered by TNF-alpha-generated ceramide may explain the inhibition of bone formation during severe bone inflammation.

Animals↗

Spaceflight effects on beta-adrenoceptor and metabolic properties in rat plantaris.

Effects of 14 days of spaceflight on beta-adrenoceptor (beta-AR), mitochondrial enzyme activities, and fiber type composition were studied in plantaris muscles of male adult Sprague-Dawley rats. The beta-AR was analyzed in cross sections by quantitative autoradiography. The maximum binding capacity (Bmax) of beta-AR was significantly lowered (approximately 29%) after flight, but the recovery was not completed within 9 days in 1-G environment. Because the dissociation constant remained unchanged, it is suggested that the changes in the Bmax were caused by the alteration of receptor number. The activities of succinate dehydrogenase (SDH) measured in whole homogenates were subnormal (approximately -24%) in muscles sampled approximately 5 h after flight but they were normalized during 9 days of recovery. The percent composition of fiber types and beta-hydroxyacyl CoA dehydrogenase (HAD) activity did not change significantly due to spaceflight. It is suggested that the spaceflight-induced decrease of the Bmax of beta-AR in plantaris was accompanied by a lowered activity of a mitochondrial inner-membrane enzyme SDH but not a matrix enzyme HAD.

3-Hydroxyacyl CoA Dehydrogenases↗

Vertebral growth disturbance in rapidly growing rats during 14 days of spaceflight.

The effect of 14 days of spaceflight on the vertebrae of rapidly growing rats was studied. The hardness of the vertebrae was measured with a Knoop microhardness tester, and bone mineral density was measured from X-ray photographs. Histomorphometric examination was performed with a microcomputer-aided system. No significant difference (P > 0.05) was observed between flight rats and ground controls with regard to mechanical hardness or bone mineral density. However, histological examination revealed irregular thickening of the endosteal surface of cortical bone in the flight rats, whereas it was uniform in the ground controls. The relative area of lamellar bone showed a significant reduction (P < 0.001) in the flight rats. These findings suggest that the structural disturbances were due to retardation of endosteal modeling and remodeling. We conclude that delay of vertebral maturation can occur in rapidly growing rats after even short-term exposure to microgravity.

Animals↗

Enhanced E-cadherin expression and increased calcium-dependent cell-cell adhesion in human T-cell leukemia virus type I Tax-expressing PC12 cells.

Human T-cell leukemia virus type I (HTLV-I) Tax protein induces the expression of host cellular genes, some of which are crucial in cell proliferation and differentiation. We examined the mechanisms by which HTLV-I Tax protein induces phenotypic changes in PC12 cells. We demonstrated that the HTLV-I Tax gene induces epithelioid changes and increases cell-cell contact in PC12 cells. No change in the expression of the neural cell adhesion molecule was observed between HTLV-I Tax-expressing PC12 cells and PC12 cells transfected with a control plasmid. However, HTLV-I Tax-expressing PC12 cells demonstrated a marked change in the abundance and distribution of E-cadherin, which was concentrated at regions of cellular contact and accompanied by changes in calcium-dependent cell adhesion. Although E-cadherin is expressed at low levels in PC12 and PC12 transfected with a control plasmid cells, the steady state level of E-cadherin in tax-expressing PC12 cells increases significantly, apparently as a result of regulation at the transcriptional level. Diminished expression of Tax protein in Tax-expressing PC12 cells exposed to antisense oligonucleotides for the Tax gene suppresses E-cadherin expression and decreases cell-cell adhesion. These findings imply that HTLV-I Tax protein enhanced E-cadherin expression modulates calcium-dependent cell-cell adhesion mechanisms.

Animals↗

Interleukin 6 mediated differentiation and rescue of cell redox in PC12 cells exposed to ionizing radiation.

The differentiation of PC12 cells to a neuron-like morphology was induced by ionizing radiation in the presence of serum. This effect was detectable at 5 grays (Gy) and reached a maximum at 10-20 Gy. Increases in the DNA binding activity of nuclear factor kappa B (NF-kappa B) and increased Interleukin 6 (IL-6) mRNA levels were observed at a dose of 15 Gy. Neutralization of supernatant IL-6 by the addition of anti-IL-6 antibody inhibited the neuronal differentiation and decreased cellular redox. Ionizing radiation and serum may act synergistically as neurotropic factors.

Animals↗