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S Miyatake

Publications and source records attributed to S Miyatake.

At least 73 records · Page 4Linked to original sources

Analysis of the close relationship between human astrocytoma-specific antigens detected by murine monoclonal antibodies and c-kit proto-oncogene product.

Tyrosine-specific phosphorylated proteins found exclusively on the cell surface of human astrocytomas were previously identified with murine monoclonal antibodies, designated as GA-17, GB-4 and GC-3. The purpose of this study was to further characterize the antigens and investigate the relationship between them and c-kit protooncogene product. We demonstrated that the antigens had protein kinase activity. Moreover, GA-17 reacted with c-kit protein expressed on the membrane of A172 human glioblastoma cells.

Antibodies, Monoclonal↗

A case of treatment-related leukoencephalopathy: sequential MRI, CT and PET findings.

A case of treatment-related leukoencephalopathy is presented. A patient with medulloblastoma was postoperatively treated with craniospinal axis irradiation. One month after irradiation, weekly intrathecal administration of methotrexate was performed 4 times to treat cerebrospinal fluid dissemination of the tumor. Two months after the initiation of intrathecal chemotherapy, the patient became somnolent and developed decerebrate posturing. Magnetic resonance imaging showed diffuse leukoencephalopathy. Positron emission tomography revealed a diffuse decrease in glucose uptake in the deep white matter. Auditory evoked potential also showed diffuse abnormalities, not only in the cerebrum, but also in the brain stem. High dose intravenous leucovorin rescue was attempted without any neurologic improvement.

Blood Proteins↗

Glial cyst of the pineal gland with characteristic computed tomography, magnetic resonance imaging, and pathological findings: report of two cases.

Two cases of glial cyst of the pineal gland are documented. Preoperative computed tomography and magnetic resonance imaging revealed cystic lesions of the pineal region with contrast enhancement of the walls, suggesting neoplastic lesions rather than true cysts. However, the histopathological examination of the resected specimens revealed the presence of glial tissue and normal structure of pineal gland and capsule, characteristics that were consistent with those of glial cysts of the pineal gland. Headache and visual disturbance were resolved after total removal of the cysts.

Adolescent↗

Establishment of a new cell line derived from a human gliosarcoma.

A permanent cell line, GI-1, was established from a human gliosarcoma, and its characteristics were investigated. The original tumor was a mixture of two different neoplasms which had components of both glioma and sarcoma. The established cell line expressed various mesenchymal antigens, but not neuroepithelial antigens. It was noted, however, that the cell line produced tumors with the morphological features of human glioma after inoculation in athymic mice. The contrast of the pathological characteristics in tissue culture and in xenograft was unique, and this finding suggests that the GI-1 cell line may have the features of both glioma and sarcoma.

Aneuploidy↗

Human glioma-specific antigens detected by monoclonal antibodies.

Three murine monoclonal antibodies, designated GA-17, GB-4, and GC-3, were prepared by the hybridization of murine myeloma cells (NS-1) and spleen cells of BALB/c mice immunized with the crude membrane fraction of cultured human gliosarcoma cells (GI-1). Two of them (GA-17 and GB-4) reacted exclusively with the membrane of glioma cells, and the other (GC-3) reacted with the membrane of glioma cells and a T cell line (MOLT-4). Although these antibodies reacted with almost all of the gliomas, the reactions differed. GA-17 reacted equally well with all glioblastoma (17 cases) and low-grade astrocytoma (10 cases), whereas GB-4 reacted poorly with 7 cases of glioblastoma and GC-3 did not react with 7 cases of low-grade astrocytoma. The antigens, exclusively expressed on the cell surface, were analyzed by surface labeling with 125I followed by a cell lysis and immunoprecipitation with these antibodies. The findings obtained by sodium dodecyl sulfate-polyacrylamide gel electrophoresis revealed that GA-17, GB-4, and GC-3 reacted with Mr 140,000-145,000, Mr 160,000, and Mr 145,000-150,000 proteins, respectively. Some evidence has been obtained indicating that these antigens are composed of the same polypeptide chain (Mr 120,000) with the carbohydrate chains being different.

Animals↗

Mechanism of interferon gamma-induced protection of human gliosarcoma cells from lymphokine-activated killer lysis: division of lymphokine-activated killer cells into natural killer- and T-like cells.

The mechanism by which interferon gamma (IFN-gamma) decreases the susceptibility of the established cultured gliosarcoma line Gl-1 to lymphokine-activated killer (LAK) lysis was analyzed. The results of monolayer depletion and lectin-dependent cellular cytotoxicity assays by LAK cells revealed that the resistance to LAK lysis of IFN-gamma-treated Gl-1 cells is manifested at the stage of LAK cell target recognition alone. We have also divided LAK cells into populations of phenotypically natural killer (NK)- and T-like cells with monoclonal antibodies and complement, respectively. We have used these cells to examine the mechanism of IFN-gamma-induced protection of Gl-1 cells from LAK lysis in cold target inhibition, monolayer depletion, and direct binding assays. The results revealed that NK-like cells do not recognize IFN-gamma-treated Gl-1 cells as efficiently as they do untreated targets, whereas T-like cells show the opposite tendency. In conclusion, we have demonstrated that the IFN-gamma induced protection of tumor cells from LAK lysis is predominantly regulated by the target recognition of NK-like cells. On the other hand, IFN-gamma-treated tumor cells may bind to T-like cells but fail to trigger them to initiate further stages for lysis as effectively as NK-like cells.

Cell Division↗

[Primary malignant lymphoma in the sphenoid sinus with orbital apex syndrome; a case report].

Only 2.0-6.8% of extranodal malignant lymphomas are found in the nasal region and paranasal sinuses. Primary malignant lymphoma of the paranasal sinuses usually occurs in the maxillary or ethmoid sinuses, and is very rare in the sphenoid sinus. Here we report a rare case of primary malignant lymphoma of the sphenoid sinus that was found accompanying orbital apex syndrome. The patient's progressively deteriorating neurological condition was improved after surgery via the transsphenoidal approach. A 52-year-old man was admitted with reduced left visual acuity, diplopia, and retroorbital pain. CT showed an isodense mass in the sphenoid sinus with slight enhancement, and MRI showed that the lesion was slightly hypointense on T1-weighted images, hypointense on T2-weighted images, and slightly enhanced by Gd-DTPA. On January 19, 1989, the patient suddenly became blind. An operation via the transsphenoidal approach was done as an emergency procedure to decompress the sphenoid sinus and the left optic canal. The histological diagnosis was non-Hodgkin's lymphoma of the diffuse large cell type (B cell lymphoma). Malignant lymphoma in the paranasal sinuses is usually biopsied and treated by chemotherapy and/or radiotherapy without surgical resection. In this rare case, an operation via the transsphenoidal approach was effective in improving the patient's visual acuity.

Humans↗

Expression of the RAG-2 gene in murine central nervous system tumor cell lines.

Two tightly linked recombination activating genes, RAG-1 and RAG-2, are involved in VDJ recombination of the immune system. Although these genes were originally thought to be expressed exclusively in precursor B and T cells, RAG-1 transcripts were recently found in the murine central nervous system (CNS) [Chun et al., Cell 6, 189, (1991)]. We found that the RAG-2 gene was expressed in CNS tumor cell lines, melanoma (B-16) and skin fibroblast (A9). RAG-1 expression was not found in any non-lymphoid cell lines examined including CNS tumor cell lines. Another VDJ recombination-related gene RBP-Jk was expressed in all tumor cell lines examined. It remains to be seen whether expression of RAG-1 and RAG-2 in CNS is abortive or functionally important.

Animals↗

A nuclear factor NF-GM2 that interacts with a regulatory region of the GM-CSF gene essential for its induction in responses to T-cell activation: purification from human T-cell leukemia line Jurkat cells and similarity to NF-kappa B.

Activation of T cells by antigen, lectin, or a combination of phorbol-12-myristate acetate (PMA) and calcium ionophore (A23187) leads to the induction of genes for a set of lymphokines, including granulocyte-macrophage colony-stimulating factor (GM-CSF). We demonstrated in earlier studies that the upstream region of the mouse GM-CSF promoter at positions between -95 and -73 is essential for transcriptional activation in response to PMA/A23187. This region contains two DNA-binding motifs, GM2 and GC-box. The GM2 sequence (GGTAGTTCCC) is recognized by an inducible factor NF-GM2; the other (CCGCCC) by constitutive factors A1, A2, and B. To elucidate the mechanism of GM-CSF gene activation, we have purified the inducible factor NF-GM2 from the nuclear extract of stimulated Jurkat cells on the basis of specific DNA-binding activity. The purified NF-GM2 consists of 50 (p50) and 65 kDa (p65) polypeptides and has a binding activity specific for both the GM-CSF and immunoglobulin kappa (GGAAAGTCCC) enhancers. Electrophoretically purified p50 alone can form a protein-DNA complex, but in the mixture, p50 associates preferentially with p65 to form the NF-GM2 complex. In addition, p65 gave per se, with low affinity, a protein-DNA complex that migrated more slowly than native NF-GM2 complex. Furthermore, an antiserum against KBF1 (identical to 50 kDa NF-kappa B protein) reacted with the p50 of NF-GM2, indicating that the NF-GM2 polypeptide cannot be immunologically differentiated from the 50 kDa subunit of NF-kappa B. The purified NF-GM2 activated in vitro transcription from the kappa B enhancer, while it failed to stimulate transcription from the GM-CSF promoter harboring the GM2 sequence. This suggests that the activation mechanism of the GM-CSF gene through the GM2/GC-box sequence is different from that of genes carrying the kappa B enhancer alone.

Base Sequence↗

Characterization of the mouse granulocyte-macrophage colony-stimulating factor (GM-CSF) gene promoter: nuclear factors that interact with an element shared by three lymphokine genes--those for GM-CSF, interleukin-4 (IL-4), and IL-5.

The region extending from -40 to -54 of the 5'-flanking region of the mouse granulocyte-macrophage colony-stimulating factor (GM-CSF) gene shows homology to sequences found in the 5'-flanking regions of other cytokine genes, those encoding interleukin-4 (IL-4), IL-5, and granulocyte colony-stimulating factor (G-CSF). This sequence element is referred to as conserved lymphokine element 0 (CLE0). Saturation mutagenesis of the CLE0 element indicates that in addition to the previously mapped region between -73 and -91 (CLE2+ GC box), the CLE0 element is necessary for induction of the mouse GM-CSF gene by phorbol myristate acetate/Ca ionophore (A23187) stimulation in T cells. The presence of the CLE0 element is necessary to observe stimulation of the transcription activity of the mouse GM-CSF promoter in vitro. Mobility shift assays revealed that this region forms an inducible DNA-protein complex, NF-CLE0, which consists of two complexes of similar mobility, NF-CLE0a and NF-CLE0b. NF-CLE0a and NF-CLE0b recognize the 3' half and 5' half of the CLE0 element, respectively, with an overlapping region recognized by both proteins. The recognition sequence of NF-CLE0a corresponds to the region required for induction by phorbol myristate acetate/A23187, while the recognition sequence of NF-CLE0b contains bases that have inhibitory activity.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

[Immunomodulatory effects of interferons on target human gliosarcoma cells in the tumor-specific CTL- and LAK-mediated cytolysis].

We compared the regulatory effects of interferon (IFN)-beta and IFN-gamma on the susceptibility of a human gliosarcoma line GI-1 to the attack of autologous cloned tumor-specific cytotoxic T-lymphocytes (CTL) and lymphokine-activated killer (LAK) cells. Preincubation of GI-1 cells with IFN-gamma caused augmented susceptibility to the cytotoxic attack of two autologous CTL clones, whereas IFN-beta exhibited no such marked effect. On the other hand, preincubation with either IFN-beta or IFN-gamma made the GI-1 cells resistant to the attack of autologous LAK cells. Both IFNs augmented the surface expression of HLA class-I molecules on GI-1 cells. A monoclonal anti-HLA class-I antibody blocked the cytolysis by one CTL clone, but not by the other one. These results suggest that IFN-gamma exerts some different effect (s) from that of IFN-beta on the target GI-1 cells in their susceptibility to the CTL-mediated cytolysis, and that recognition mechanisms of target cells by the CTL are different from those by LAK cells. This draws our attention to IFN administration in adoptive immunotherapy against brain tumors using CTLs and LAK cells.

Brain Neoplasms↗

[Immunohistological and histopathological study of the effect of PCB on the periodontal tissue].

We performed immunohistochemical and histopathological investigation on the inflamed gingiva from the patient with Yusho and on the periodontal tissue from PCB poisoned rats respectively. The results obtained were as follows. 1) In the gingiva from the Yusho patients, the proportions of plasma cells, B cells, T cells in the inflammatory cells and CD4/CD8 ratio were 47.9%, 18.3%, 10.7%, and 2.84, respectively. 2) In the periodontal tissue from rats with experimental periodontitis, we found no definitive difference between the PCB poisoned rats and the clinically healthy rats.

Animals↗

Infiltrative and cytolytic activities of lymphokine-activated killer cells against a human glioma spheroid model.

In the present study, we investigated not only the cytotoxic effects of lymphokine-activated killer (LAK) cells on a tumor mass but also the ultrastructural cell-to-cell interaction between LAK effector cells and tumor cells during the cytolytic process within a three-dimensional solid tumor. A multicellular tumor spheroid of a human glioma cell line (U-251MG) was utilized as a solid tumor model. LAK cells were generated from peripheral blood lymphocytes of a healthy donor after stimulation by interleukin 2. Multicellular tumor spheroids with diameters of 500 microns were cocultivated with either LAK cells or nonactivated peripheral blood lymphocytes at the effector:target cell ratio of 20:1, and then time-sequential kinetic, morphological, and ultrastructural analyses were carried out. Morphological and kinetic studies showed that LAK cells directly infiltrated toward the inner areas of multicellular tumor spheroids and caused a progressive tumor destruction. In contrast, peripheral blood lymphocytes hardly exhibited such activities. Ultrastructurally, it was found that the infiltrating LAK effector cells were composed of heterogeneous subpopulations, T-like cells, and large granular lymphocyte-like cells. Both types of lymphocytes tightly adhered to the tumor cells and showed typical morphological features of killing them.

Cell Line↗

Efficient tumor suppression by glioma-specific murine cytotoxic T lymphocytes transfected with interferon-gamma gene.

We have recently shown that exogenous expression of the mouse interferon-gamma (IFN-gamma) gene augmented the cell-killing potential of a line of cytotoxic T lymphocytes (CTLs) specific against a murine glioma line (203-glioma). In the present work, we further investigated the in vivo antitumor effects of the E gamma-6 and E gamma-9 sublines of this CTL line transfected with the IFN-gamma gene. Using the Winn assay to test the neutralization of subcutaneous gliomas, we determined that these CTL sublines were more effective than the E-4 parent CTL line and that suppression of the tumor growth was dependent on the number of effector cells (CTLs). Moreover, intravenous injection of E gamma-9 cells was more effective in suppressing the tumor growth than intravenous injection of E-4 cells. These results suggest that transfection of antitumor effector cells with the IFN-gamma gene could improve the efficacy of adoptive immunotherapy against cancer.

Animals↗

Decreased susceptibility of lined human gliosarcoma cells to lymphokine-activated killer cell cytolysis by gamma-interferon treatment.

The susceptibility of the established cultured gliosarcoma line GI-1 to lymphokine-activated killer (LAK) cells was analyzed with and without interferon (IFN)-gamma treatment of target GI-1 cells. IFN-gamma treatment decreased the susceptibility of GI-1 cells to LAK cell cytolysis in a dose-dependent manner. Acid treatment of GI-1 cells increased their susceptibility to cytolysis compared with untreated cells. IFN-gamma treatment and acid treatment of GI-1 cells respectively increased and decreased the expression of class I HLA antigens on GI-1 cells. The susceptibility of GI-1 cells to LAK cell cytolysis and their expression of HLA class I molecules were inversely correlated. Subpopulation depletion experiments on the LAK cells with monoclonal antibodies and complement revealed that phenotypically natural killer type (CD16+) cells had a high cytotoxic activity against untreated GI-1 cells but a relatively low activity against IFN-gamma-treated GI-1 cells in both the precursor and effector phases. On the other hand, phenotypically T-type (CD3+) cells did not show these tendencies at all in both the precursor and the effector phases.

Antigens, Differentiation↗

Clonal analysis in the ultrastructure of cell-to-cell interaction between a human glioma cell line and autologous tumor-specific cytotoxic T lymphocytes.

The clonal analysis in the ultrastructure of tumor-lymphocyte interaction was carried out in order to investigate the precise mechanism responsible for CTL-mediated cytolysis of tumor cells. A glioma-derived cell line (GI-1) and autologous tumor-specific cytotoxic T lymphocyte (CTL) clones were established. The CTL lines were composed of the morphologically homogeneous lymphocytes with intracytoplasmic electron-dense secretory granules. After the stimulation by GI-1, the size of the CTLs increased, and the intracytoplasmic organellas were developed. It was noted that the intracytoplasmic secretory granules markedly increased in number and size, and many of them exhibited an "immature" appearance. On the other hand, the tumor cells underwent a progressive degeneration. In contrast, the stimulation by other antigens caused only small morphological changes in the CTLs. It is suggested, therefore, that the secretory function of tumor-specific CTLs is activated by the stimulation of the specific antigen, and that soluble factors in the secretory granules in the CTLs may be closely associated with the mechanism of target cell lysis.

Cell Communication↗

Inducible and non-inducible factors co-operatively activate the GM-CSF promoter by interacting with two adjacent DNA motifs.

The upstream region of the mouse granulocyte macrophage colony stimulating factor (GM-CSF) gene between positions -95 and -73 is required for phorbol-12-myristate-13-acetate (PMA)- and calcium ionophore (A23187)-inducible transcriptional activity in vivo. To study the mechanism of GM-CSF gene activation in T cells, nuclear extracts from non-stimulated and PMA/A23187-stimulated Jurkat cells were used in DNA binding assays. DNA mobility shift assays with wild type and mutant oligonucleotides revealed that this region contains at least two DNA binding motifs. One is the binding sequence GGTAGTTCCCC (positions -91 to -81), recognized by NF-GM2 (nuclear factor of GM-CSF 2), and the other is a GC-rich sequence (GC-box). NF-GM2, induced in Jurkat cells by PMA/A23187 stimulation, effectively competed with DNA containing the NF-kappa B binding sequence, suggesting that it has NF-kappa B-like activity. By UV cross-linking analysis, three cross-linked bands, corresponding to Mr 165, 70, and 60 kd for NF-GM2, and 110 and 130 kd for A1 and A2, respectively, were identified. Transfection experiments showed that activation of the GM-CSF gene in response to PMA/A23187 stimulation was abolished by point mutations in either the GC-box or the NF-GM2 site; these mutations also abolished binding of the respective proteins. These results indicate that constitutive (GC-box binding factor) and inducible (NF-GM2) factors regulate the GM-CSF promoter co-operatively in a PMA/A23187-inducible manner in vivo.

Animals↗