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J Hata

Publications and source records attributed to J Hata.

At least 127 records · Page 7Linked to original sources

Fish glucocorticoid receptor with splicing variants in the DNA binding domain.

Here we describe the isolation of a rainbow trout cDNA containing an entire GR coding region. Although the encoded protein is highly homologous to other GRs, especially in its DNA binding domain, it contains a nine amino acid insertion between the two zinc fingers. This novel form is found in all rainbow trout tissues examined; however, the testis also contains a splice variant lacking this insert, making it completely continuous to other GRs. In transient transfection assays of cultured cells, the two rainbow trout GR variants activated transcription from the glucocorticoid-responsive mouse mammary tumor virus promoter to comparable levels.

Alternative Splicing↗

Comparative analysis of cell surface antigens expressed by cell lines derived from human germ cell tumours.

The pattern of cell surface antigen expression of a set of cell lines derived from human germ cell tumours and corresponding to various cell phenotypes found within these tumours was studied using immunofluorescence. Twenty-two different antibodies were used. Many of these antibodies have been noted to recognise epitopes that are either preferentially expressed by embryonal carcinoma (EC) cells, or by more differentiated cell types. Using scatter plots and rank correlations, 6 groups of antibodies were distinguished with respect to their staining patterns on the cell lines tested. Several antibodies showed a specific staining pattern in relation to the differentiation state of the cells. Two groups of antibodies included those recognising high m.w. glycoproteins (antibodies TRA-1-60, TRA-1-81, GCTM2, 3-177, K4 and K21) and the ganglioseries glycolipid antigens SSEA-3 and -4 (antibodies MC631 and MC813-70). These antibodies mostly stained EC cells but not other cell types, confirming previously published data. However, one of these groups, comprising antibodies K4 and MC631, was more exclusively associated with the EC cell phenotype than was the other group. Antibodies recognising the liver isozyme of alkaline phosphatase (TRA-2-49 and TRA-2-54) also reacted strongly with most EC cell lines, although they reacted significantly with a number of other cell lines as well, whereas antibodies to the placental isozyme tended to react only weakly with EC cells. The antibodies recognising the ganglioseries glycolipids GD2 and GD3 (VIN2PB22 and VINIS56) preferentially stained cells with neuroectodermal characteristics. Other antibodies showed a heterogeneous staining pattern for the cell lines with different phenotypes. The data obtained from the cell lines were, in general, similar to data obtained from immunohistochemical studies on tissue sections of primary germ cell tumours of the adult testis, including carcinoma in situ.

Adult↗

Heat shock induces differentiation of human embryonal carcinoma cells into trophectoderm lineages.

NCR-G3 cells were established from a testicular embryonal carcinoma and are highly multipotential, differentiating into trophectoderm cells upon exposure to retinoic acid. Differentiated NCR-G3 cells begin to produce human chorionic gonadotropin (hCG), a trophectoderm-specific hormone. We have previously isolated the up-regulated genes at the early stage of differentiation. One of them was found to be a heat shock protein gene. The heat shock protein gene (HSP90) is induced at the early stage of differentiation and decreases to the basal level or under the basal level at the later stage. We speculate that heat shock per se induces the differentiation of human EC cells. With exposure to heat, NCR-G3 cells began to express a series of differentiation markers such as cytokeratin and hCG. Heat, which is classically known to induce heat shock proteins, is able to differentiate an embryonal cell line into trophectoderm lineages, implying a new recognized function of a heat-like event in early differentiation.

Carcinoma, Embryonal↗

A novel chimera gene between EWS and E1A-F, encoding the adenovirus E1A enhancer-binding protein, in extraosseous Ewing's sarcoma.

Ewing's sarcoma/PNET, a tumor of the bone and soft tissue, is one of the most common causes of tumor death among youths. This tumor does not have specific phenotypes, but does have characteristic chromosomal translocations. Furthermore, the expression of EWS/FLI-1 or EWS/ERG chimeric genes was found to be generated through a t(11;22)(q24;q12) or a t(21;22)(q22;q12) translocation. In this study, we identified a new chimera gene between the transactivation domain of EWS and E1A-F, encoding the adenovirus E1A enhancer-binding protein. Since E1A-F is known to activate matrix metalloproteinase genes, the chimera gene may possibly be involved in tumor progression and could be a novel tumor marker for Ewing's sarcoma/PNET.

Adenovirus E1A Proteins↗

Immunocytochemical localization of the Pit-1 protein in the pituitary of the rainbow trout (Oncorhynchus mykiss).

Pit-1 is a pituitary-specific transcription factor responsible for activating the growth hormone (GH) gene family. The localization of Pit-1 protein in the pituitary of rainbow trout was studied by immunocytochemical analysis. Fish Pit-1 was found to be extensively localized in the nuclei of cells in the proximal pars distalis (PPD), rostral pars distalis (RPD), and pars intermedia (PI). Sagittal sections were immunocytochemically double stained with antibodies against Pit-1, GH, prolactin (PRL), and somatolactin (SL). The results showed that Pit-1 protein was present in the GH-containing cells of the PPD, the PRL-containing cells of the RPD, and the SL-containing cells of the PI.

Animals↗

Stage IVS neuroblastoma: a clinical, histological, and biological analysis of 45 cases.

This study reports clinicopathologic and biological analysis of 45 stage IVS neuroblastomas (IVS-NBs). All IVS-NB cases had small or undetectable primary tumors associated with disease involving the liver, skin, or bone marrow. Their ages at diagnosis ranged from 1 day to 12 months, with a median age of 4 months. The primary sites were adrenal in 34 cases, retroperitoneum in two, mediastinum in one, and unknown in eight; the liver was involved in 24 of 31 cases, the bone marrow in 11 of 27, and the skin in 4 of 29. According to the histopathological evaluation (Shimada classification), 43 IVS-NB tumors had a favorable histology, and 2 cases showed an unfavorable histology. Three patients died of progressive disease and six of indirect tumor death. Among these three deceased cases with tumor progression, two cases showed unfavorable histology, and one case had amplified N-myc (20 copies). These data suggest that most IVS-NB can be described as a tumor presenting characteristic dissemination pattern in the younger age group, having a favorable histology and showing an excellent outcome of the patients. However, poor prognosis group in stage IVS does exist, and this group could be detected histopathologically and biologically.

Adrenal Gland Neoplasms↗

Mother to fry, successful transfer of immunity against infectious haematopoietic necrosis virus infection in rainbow trout.

We have tested whether immunity can be transferred from a mother fish to its fry. Rainbow trout mother fish were inoculated against infectious haematopoietic necrosis virus (IHNV) by intraperitoneal injection of a fragment of the IHNV glycoprotein spanning amino acids 31 to 310. This protein fragment was obtained by isolating the specific cDNA from Japanese IHNV strain HV7601 and expressing it in Escherichia coli. Fry from immunized and control fish were exposed to IHNV at various intervals after hatching, and their mortality monitored. Survival of the fry of immunized fish was significantly greater when exposure to virus occurred 7 days after hatching, and some immunity appeared to persist until at least 25 days after hatching.

Animals↗

Expression of bone marrow stromal cell specific antigen during murine development: its expression in embryonic hematopoietic tissues as well as in other developing tissues.

Monoclonal antibody R4-A9 demonstrated specificity for a cell surface antigen of stromal cells in murine bone marrow and spleen. In order to identify patterns of expression that may elucidate the potential role of R4-A9 antigen, the developmental expression of this antigen in mouse embryos from 8 days post-coitum to 5 days post-partum was investigated by immunohistochemistry. At an early developmental stage, weak staining for R4-A9 antigen could be detected in the yolk sac. At later stages, strong staining of this antigen was detected predominantly in the embryonic liver, the main site of embryonic hematopoiesis. However, concomitant with the decreased staining in the liver, increased expression of this antigen was observed in bone marrow and spleen. Therefore, the changes in expression in those hematopoietic tissues suggest that its expression is coordinately regulated during the developmental stage of the sites of embryonic hematopoiesis. Compared with the distribution of R4-A9 antigen in adult tissues as previously reported, the expression of this antigen in fetal tissues was more widespread during the period of organogenesis, and was most abundant in other developing tissues, including the heart, skin, and lung. In contrast, fetal expression detected in hematopoietic and other developing tissues was lost after birth. These results taken together show a marked gradient of R4-A9 antigen expression, with the highest level at the peak of organ development, raising the possibility that this molecule may act as a growth/differentiation factor both in hematopoietic and other developing tissues in a fetus.

ADP-ribosyl Cyclase↗

Identification of carriers of Duchenne/Becker muscular dystrophy by a novel method based on detection of junction fragments in the dystrophin gene.

We developed a Southern blotting based method that uses rare cutting restriction endonucleases and electrophoresis of single stranded DNA to detect junction fragments resulting from the rearranged dystrophin gene. By conventional Southern blot hybridisation, no junction fragments were detected in 27 unrelated patients with Duchenne (DMD) or Becker (BMD) muscular dystrophy, who had 20 deletions and seven duplications in the dystrophin gene. With our new method, junction fragments were detected in 21 of these 27 patients. When the junction fragments were used as markers, five carriers were unequivocally diagnosed among six females from two families of DMD/ BMD patients. This novel method allows simple and definitive identification of carriers with risk factors for DMD/BMD without using quantitative Southern blot hybridisation.

Blotting, Southern↗

Induction of mcl1/EAT, Bcl-2 related gene, by retinoic acid or heat shock in the human embryonal carcinoma cells, NCR-G3.

NCR-G3 cells were established from a testicular embryonal carcinoma and were differentiated into multi-lineages including trophectoderm cells by exposure to retinoic acid. The differentiated cells began to produce human chorionic gonadotropin (hCG), a trophectoderm-specific hormone, which was regulated at the mRNA level. As we assumed that genes responsible for differentiation were differentially expressed at the early stage of retinoic acid-induced differentiation, we prepared a cDNA library from retinoic acid-treated NCR-G3 cells. This cDNA library was then screened for genes whose expression was induced during the differentiation of these cells. From about 5 x 10(4) clones screened, three independent sequences were isolated. Sequencing analysis revealed that clone 1002 codes for mcl1/EAT, which has a Bcl-2 homology domain. The expression of mcl1/EAT, the Bcl-2 related gene, was increased at an early stage of the retinoic acid-induced differentiation and preceded the up-regulation of cytokeratin and hCG genes after ratinoic acid treatment. Furthermore, mcl1/EAT was also up-regulated by heat shock, which has recently been shown to induce the cells to differentiate.

Biomarkers↗

Apoptosis of human embryonal carcinoma cells with in vitro differentiation.

An in vitro model of apoptosis and differentiation in human embryonal carcinoma (EC) cells was developed to study the mode of cell death and mechanisms of cell death in early development. Death of these cells was induced by treatment with retinoic acid (RA) under the same conditions as those for induction of differentiation. The manner of this cell death was apoptosis, not necrosis, with the morphological criterion for apoptosis. serum deprivation likewise caused apoptosis in both undifferentiated and differentiated EC cells. In differentiated EC cells, DNA fragmentation was observed in a smear pattern lacking the ladder pattern typically associated with apoptosis. However, in differentiated EC cells, DNA fragmentation occurred in various sizes. The expression of a carbohydrate antigen, LeY, a reported marker of apoptotic cancer cells, was increased by the treatment with RA. However, two-color analysis by flow cytometry with nick end labelling method revealed that LeY expression was closely correlated with cellular differentiation but not apoptosis after RA treatment in the human EC cell system. Collection of LeY positive cells by the magnetic bead method demonstrated that this expression was not due to apoptosis but rather to differentiation. On the other hand, LeY expression associated with apoptosis was induced by serum deprivation in both undifferentiated and differentiated EC cells. These results show that a subpopulation of undifferentiated EC cells takes the apoptotic pathway by induction of differentiation. The results also suggest that the population of cells taking an apoptotic pathway differs from a population of cells taking a differentiation pathway. This in vitro system for apoptosis in human EC cells will be useful for studies concerning apoptosis or programmed cell death in human developmental biology.

Apoptosis↗

Expression of a MADS box gene, MEF2D, in neurons of the mouse central nervous system: implication of its binary function in myogenic and neurogenic cell lineages.

MEF2D, a member of myocyte-specific enhancer binding factor 2 (MEF2) gene family, was shown by Northern blot hybridization to be strongly expressed in the head portion of mouse embryos at later stages of ontogenesis, in the cerebellum and the cerebrum of adult mice, in cultured cell lines of neuronal origin, and in skeletal and cardiac muscles. During ontogenesis, MEF2D transcripts were detected by in situ hybridization in the olfactory bulb, entorhinal cortex, pyriform cortex, and hippocampus, in Purkinje and granule cells, and in large neurons in both the ventral and dorsal horns of spinal cord. Adult mice continued to express MEF2D in these limited areas of the central nervous system. Thus, MEF2D seems to be involved in either the differentiation process or the function of these neurons.

Age Factors↗

Autocrine growth of transitional cell carcinoma of the bladder induced by granulocyte-colony stimulating factor.

Granulocyte-colony stimulating factor (G-CSF) produced by nonhematopoietic malignant cells has been reported to be capable of inducing a leukemoid reaction in the host through intense stimulation of leukocyte production. Furthermore, this is frequently associated with aggressive tumor cell growth and a detrimental clinical outcome. In this study, we identified bladder cancer cells producing G-CSF with the expression of the functional receptor, which provides direct evidence of autocrine growth of bladder cancer cells induced by G-CSF. The cancer cells used in this study were obtained from a 76-year-old man who had a metastatic transitional cell carcinoma of the bladder and who demonstrated marked leukocytosis, his peripheral blood leukocyte count was 94,900 leukocytes/mm3, and his serum G-CSF level was 103 pg/ml. The culture medium in which the cancer cells were grown exclusively contained a significant amount of G-CSF (5560 pg/ml). Significant G-CSF mRNA expression and G-CSF receptor mRNA expression in the cultured cells were demonstrated by the reverse transcription-PCR method. In addition, binding studies with the use of radiolabeled recombinant G-CSF demonstrated the presence of high-affinity G-CSF binding receptors on the cultured cancer cells. Finally, the proliferation of the cultured cancer cells was stimulated by exogenous G-CSF administration, and this stimulation was inhibited by adding anti-G-CSF antibody, as demonstrated by both the flow cytometric bromodeoxyuridine incorporation technique and the [3H]thymidine incorporation assay. These results strongly suggest that G-CSF production by the bladder cancer cells studied augments autocrine growth. Therefore, we recommend exercising caution in the clinical use of G-CSF for bladder cancer patients.

Aged↗

A critical mutation in both WT1 alleles is not sufficient to cause Wilms' tumor.

The WT1 gene is a tumor suppressor gene for Wilms' tumor (WT). Inactivation of both alleles has been proposed as the cause of WT. We encountered a patient with Denys-Drash syndrome associated with WT whose WT1 gene had a homozygous point mutation not only in WT but also in renal tissue adjacent to the WT and in the germline. These findings indicate that factor(s) other than the loss of WT1 are required for WT to develop.

Alleles↗

A functional factor X deficiency.

A functional factor X deficiency is described which caused pronounced reduction in the in vitro activation of the extrinsic system while marginally affecting the in vitro activation of the intrinsic pathway. All studies were normal with the exception of a prolonged PT, an elevated factor X antigen, and low factor X activity. Western blot analysis revealed the presence of two factor X species. The abnormal molecule was of higher molecular weight. Interestingly, there was no bleeding associated with this deficiency. The biochemical basis of this defect is currently under investigation.

Adult↗

Spatial and temporal regulation of the rat calmodulin gene III directed by a 877-base promoter and 103-base leader segment in the mature and embryonal central nervous system of transgenic mice.

Three non-allelic rat calmodulin (CaM) genes CaMI, CaMII and CaMIII, which share no homology in their 5'-upstream regions, are coordinately expressed in neurons of the central nervous system (CNS). Deletion analysis of the CaMIII promoter showed that the upstream segments longer than 700 bases functioned as efficient promoters, and that the sequence from -133 to -65 was required for the activity of house-keeping type promoter in transient expression assays on a mouse glioma cell line C6. However, the transient expression seemed not to be cell type specific. To determine the temporal and spatial specificity of the promoter function, we produced transgenic mice carrying a fusion gene of the CaMIII segment from -877 to +103 and the lacZ reporter gene. In CNS of the adult transgenic mice, the localization of transgene expression was similar to that of endogenous CaMIII transcripts analyzed by in situ hybridization. The transgene was expressed prominently in pyramidal cells of the cerebral neocortex and the hippocampal regions CA1 to CA3, in Purkinje cells of the cerebellar cortex, and in neurons of the spinal cord, and moderately in granule cells of the dentate gyrus and the cerebellar cortex. In the developing CNS, the overall profiles of neuron-specific expression were also similar for both transgene and endogenous CaMIII that were expressed in the mantle layer and the dorsal root ganglia of the embryonal spinal cord. These results indicated that the neuron-specific expression of rat CaMIII was directed by this 877-base promoter sequence. The CaMIII segment used for the promoter of transgene contained a 29-bp sequence at -410, namely H3, which was conserved in the upstream regions of vertebrate CaMII and CaMIII. H3 seemed to play a pivotal role in the temporal and spatial expression of transgene in CNS, although the deletion of H3 did not decrease CAT activity in the transient expression. The transgene expression was not observed in the external granular cells of the developing cerebellum and in some neurons of the embryonic sensory ganglia in which the endogenous CaMIII was obviously expressed. Therefore, the other cis-acting element(s) located outside of this 877-bp segment seemed to be required for the temporal regulation of CaMIII in certain rudimentary neurons.

Animals↗

Intrarenal satellites of renal cell carcinoma: histopathologic manifestation and clinical implication.

OBJECTIVES: This study was designed to gain more insight into the incidence of satellites of renal cell carcinoma related to the pathologic stage and grade of the primary tumor. METHODS: One hundred eight nephrectomized kidneys with renal cell carcinoma were sectioned at 3-mm intervals and inspected microscopically for satellite carcinomas. The number, site, size, and distance of satellite carcinomas found were recorded in relation to the primary carcinoma. RESULTS: The overall incidence of satellite carcinoma was 6.5% (7 of 108). The incidence of satellite carcinoma in relation to the pathologic staging of the primary tumor was 7.1% (1 of 14) in pT1, 3.0% (2 of 66) in pT2, and 14.3% (4 of 28) in pT3. The incidence was higher in patients with N1 disease (25%) than in those with NO (5.0%), and higher in M1 disease (25%) than in those in MO (5.77%). There was no relationship between the grade and multicentricity. CONCLUSIONS: The incidence of satellite carcinoma was higher in cases with high-stage primary carcinoma. However, even in localized diseases (PT1, pT2), satellite carcinomas were found at at 3.75% incidence. When nephron-sparing surgery is indicated in low-stage cases, precise clinical staging using a combination of various imaging modalities is mandatory, with intraoperative ultrasonography being one possible modality for detecting a concomitant satellite carcinoma.

Carcinoma, Renal Cell↗

A monoclonal antibody that specifically reacts with human embryonal carcinomas, spermatogonia and oocytes is able to induce human EC cell death.

We developed a mouse monoclonal antibody, 6E2 (IgG3), against a human embryonal carcinoma (EC) cell line, NCR-G3, that possesses totipotent differentiation capabilities. Culturing human EC cells in the presence of 6E2 causes their death. It has been shown that 6E2 kills EC cells dose dependently. In immunohistochemical examination with normal human germ cells, 6E2 reacted specifically with spermatogonia and oocytes. Among human germ cell tumor tissues on aceton-fixed frozen sections, 6E2 reacted with embryonal carcinomas, seminomas and dysgerminomas, but it did not react with choriocarcinomas or with yolk sac tumors. Consistently, in flow cytometric analysis of cultured human germ cell tumor cell lines, 6E2 reacted exclusively with EC cells including NCR-G3 cells. It was revealed, by preserving its antigenicity after treatment with periodic acid and tunicamycin and by radiolabeling cells followed by immunoprecipitation, that the molecule defined by 6E2 is a cell surface protein having a molecular weight of approximately 80 kDa. These data illustrate that the molecule defined by 6E2 links human germ cell tumors, especially embryonal carcinoma, seminoma and dysgerminoma, to their normal counterparts and that it may play a role in survival and proliferation of human EC cells.

Animals↗