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N Shinomiya

Publications and source records attributed to N Shinomiya.

At least 19 recordsLinked to original sources

Long-term cultivation of colorectal carcinoma cells with anti-cancer drugs induces drug resistance and telomere elongation: an in vitro study.

BACKGROUND: The role of telomerase activation in the expression and/or maintenance of drug resistance is not clearly understood. Therefore, we investigated the relationships, among the telomerase activity, telomere length and the expression of multidrug resistance genes in colorectal cancer cell lines cultivated with anti-cancer drugs. METHODS: LoVo and DLD-1 cells were continuously grown in the presence of both CDDP and 5-FU for up to 100 days. Cell proliferation, telomerase activity, telomere length and the expression of multidrug resistance genes were serially monitored as the PDL increased. RESULTS: The expression of multidrug resistance genes tended to increase as the PDL increased. However, an abnormal aneuploid clone was not detected as far as the cells were monitored by a DNA histogram analysis. Tumor cells showing resistance to anti-cancer drugs revealed a higher cell proliferation rate. The telomere length gradually increased with a progressive PDL. The telomerase activity reached a maximum level at 15 PDL in LoVo cells and at 27 PDL in DLD-1 cells. An increase in the mRNA expression of the telomerase components, especially in hTERT and in hTR, was observed at the same PDLs. CONCLUSIONS: These results suggest that a high telomerase activity and an elongation of telomeres both appear to help maintain and/or increase drug resistance in colorectal cancer cells. Cancer cells with long telomeres and a high proliferative activity may thus be able to better survive exposure to anti-cancer drugs. This is presumably due to an increased chromosome stability and a strong expression of both mdr-1 and MRP genes.

Adenocarcinoma↗

Maternal germinal mosaicism of X-linked agammaglobulinemia.

X-linked agammaglobulinemia (XLA) is an immunodeficiency caused by abnormalities in tyrosine kinase (BTK), and is characterized by a deficiency of peripheral blood B cells. We studied cytoplasmic expression of BTK protein and analyzed the BTK gene (BTK) in peripheral blood mononuclear cells from two siblings with XLA and additional family members. Cytoplasmic expression of BTK protein in monocytes was not detected in either patient with XLA. A single base deletion (C563) in BTK-exon 6, which encodes the TH domain, was identified in both XLA patients. However, normal cytoplasmic expression of BTK protein in monocytes was detected in their mother without any BTK mutation. These results strongly suggest germinal mosaicism in the mother.

Agammaglobulinaemia Tyrosine Kinase↗

Telomerase activity and expression of human telomerase RNA component and human telomerase reverse transcriptase in lung carcinomas.

The aim of this study was to evaluate the usefulness of determination of telomerase activity and expression of human telomerase RNA component (hTERC) and human telomerase reverse transcriptase (hTERT) for the diagnosis of lung carcinomas. The tissues studied consisted of 115 carcinomas and adjacent nonneoplastic lung, which were removed surgically without previous chemotherapy or radiotherapy. Telomerase activity was determined using a semiquantitative polymerase chain reaction-based telomeric repeat amplification protocol (TRAP) assay. The results obtained were classified into high and low telomerase groups. Localization of expression was examined by using in situ hybridization and immunohistochemistry. The correlation between telomerase activity in lung carcinoma and clinicopathologic features, including prognosis, was investigated. Telomerase activity in lung carcinomas was detected in 107 of 115 (93%) lung carcinomas, but not in any adjacent noncancerous tissues, and was significantly higher in small cell carcinoma than in any other histologic type. This activity also was significantly higher in poorly differentiated than in well-differentiated squamous cell carcinomas and adenocarcinomas. The overall survival rate (P =.020) was significantly lower in the high telomerase group. Messenger RNAs for hTERC and hTERT were mainly detected in the cytoplasm of cancer cells by in situ hybridization, and TERT protein was localized in the nuclei of these cells by immunohistochemical staining. Determinations of telomerase activity by in situ hybridization, immunohistochemistry, and TRAP assay are useful for evaluating the diagnosis and prognosis of lung carcinomas.

Adenocarcinoma↗

Telomerase activation and MAPK pathways in regenerating hepatocytes.

Although there have been many reports on the relationship between the activation of telomerase and carcinogenesis, the role of telomerase in normal cellular growth is still unclear. Recently, the telomerase upregulation during the process of liver regeneration has been reported, but the precise time course of its activity and factors contributing to the activation of telomerase have not yet been fully elucidated. In the present review, we demonstrate the relationship between the activation of the telomerase, the cell cycle progression and the growth-related signaling during the liver regeneration process using an in vivo mouse partial hepatectomy model. Moreover, the importance of the role of the MAPK pathways on the telomerase activity in regenerating hepatocytes is also displayed by using an in vitro culture model. In conclusion, the telomerase activity is upregulated before hepatocytes enter the S phase, and some growth factors such as EGF and HGF contribute to this process. The activation of the growth-related signaling pathways seems to play essential roles in the upregulation of the telomerase activity.

Animals↗

Different mechanisms between premitotic apoptosis and postmitotic apoptosis in X-irradiated U937 cells.

PURPOSE: Apoptosis is currently being evaluated for its importance as a pathway of radiation-induced cell death. However, the difference in the mechanisms between premitotic and postmitotic apoptosis following X-irradiation remains not well understood. We show here that the human monoblastoid cell line U937 can be induced to undergo these two different types of apoptosis. METHODS AND MATERIALS: U937 cells were irradiated at a dose of 5 or 20 Gy, and the DNA fragmentation rate was measured by both flow cytometric analysis and gel electrophoresis. Activation of caspase-3 was detected by Western blot analysis and fluorogenic assay using acetyl-Asp-Glu-Val-Asp-7-amino-4-methyl-coumarin (Ac-DEVD-AMC). Detection of mitochondrial transmembrane potential (DeltaPsi) was performed by using Rho123. Chasing of S-phase fraction following X-irradiation was performed after labeling with 5-bromo-2'-deoxyuridine (BrdU). Thymidine was used for synchronization of the cells. Inhibition of caspase-3 activity was achieved by Acetyl-Asp-Glu-Val-Asp-aldehyde (Ac-DEVD-CHO). RESULTS: Time courses of the apoptotic rates, caspase activation, and DeltaPsi indicated that two different types of cell death were induced by the different X-ray doses. High-dose X-ray (20 Gy) induced a rapid and strong apoptosis, whereas low-dose X-ray (5 Gy) induced a slow and mild apoptosis. Cell-cycle analyses revealed that there was cell death before cell division in the former apoptosis but the cells must be dying after cell division in the latter apoptosis. By means of cell-cycle synchronization, the S-phase cells proved to be the most sensitive fraction to premitotic apoptosis, but an obvious difference in the susceptibility to cell death among the cell-cycle phases was not observed in postmitotic apoptosis. Ac-DEVD-CHO treatment effectively blocked caspase activity and premitotic apoptosis, but it failed to block postmitotic apoptosis. CONCLUSIONS: Irradiation of U937 cells at different X-ray doses induced two different types of apoptotic cell death, premitotic apoptosis and postmitotic apoptosis, which are characterized by the time course and cell-cycle specificity. Decision concerning these two types of apoptotic cell death may be made by the difference in the magnitude of cell damage following X-irradiation.

Apoptosis↗

Identification of the promoter region of human placental 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase gene.

The placenta-type isozyme of human 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase (HP2K) is expressed in several tissues such as placenta, brain, testis, liver, kidney, skeletal muscle, and primary blood mononuclear cells. To better understand the regulation of HP2K gene expression, we isolated and characterized its genomic DNA, which includes the promoter region. The results of oligo-capping analysis indicate that the transcription start point (tsp) is an adenine residue 329 bp upstream of the translational start codon. DNA sequence analysis of this gene shows that the promoter region that contains the TATA box sequence and the 5'-UTR is different from the other known PFK-2/F2, 6BPase genes. In addition, its 5'-flanking and 5'-UTR both have G + C-rich sequences containing Sp1 binding sites. To identify the promoter/enhancer region of HP2K gene, we performed transfection analyses of human choriocarcinoma BeWo cells with HP2K promoter-luciferase constructs. These experiments identified a promoter region 164 bp upstream from the tsp and an enhancer region between -1265 and -1329 on the 5'-flanking sequences. We also showed that Sp1 sites were not essential for HP2K transcription. Following transfection, stimulation experiments with serum, progesterone and phorbol 12-myristate 13-acetate showed that only the construct with the enhancer containing putative early growth response-1 binding motif was responsive to serum. We propose that the transcription of HP2K is strictly controlled by tissue-specific factors even though its genomic DNA contains several transcriptional elements.

5' Untranslated Regions↗

PR-000350, a novel hypoxic radiosensitizer, enhances tumor cell killing by promoting apoptosis preferentially in the S-phase fraction.

PR-000350, a novel hypoxic radiosensitizer, is a 2-nitroimidazole nucleoside analog and has begun to be used for clinical cancer therapy. In this study, using U937 monoblastoid cells we investigated the mechanisms of enhanced cell killing by PR-000350. When cells were irradiated under an extremely hypoxic condition, the apoptotic rate was strongly suppressed. However, a remarkable increase in the DNA fragmentation rate as well as in the ladder formation was observed when hypoxic cells were irradiated in the presence of 5 mM PR-000350. DNA histograms of the PR-000350 treated group showed enhancement of the sub-G1 fraction and simultaneous suppression of the progression of the cell cycle from the S to G2/M phase at 4-8 h after X-irradiation, suggesting the importance of the S phase in the induction of apoptotic cell death. Flow cytometric and immunohistochemical analyses after BrdU labelling revealed that apoptotic cell death is induced mainly in the BrdU-positive cells. In addition, by using cell synchronization technique it was proved that the S phase is the most sensitive fraction to the radiosensitizing effect of PR-000350. These results suggest that PR-000350 strongly enhances tumor cell killing by promoting X-ray induced-apoptosis preferentially in the S-phase fraction. PR-000350 is a new type radiosensitizer and promise to provide an effective anti-cancer activity against hypoxic tumor cells that are resistant to the usual radiotherapy.

Anaerobiosis↗

Clinical significance of telomerase activity in biopsy specimens of gastric cancer.

Telomerase has been reported to be activated in most immortal cells and human cancers. The purpose of this study was to assess the clinical significance of telomerase activity in biopsy specimens of gastric cancer. Telomerase activity in endoscopic biopsy specimens obtained preoperatively from 31 patients with gastric cancer was determined semiquantitatively using the telomeric repeat amplification protocol assay, a polymerase chain reaction-based assay. Cancer tissues had significantly higher telomerase activity than adjacent normal tissues (13.9 +/-2.0% vs. 7.0 +/- 0.8%; p < 0.05). The ratio of the telomerase activity in cancer tissues to that in normal tissues (telomerase index) was significantly higher in tumors invading the proper muscle layer or deeper or in tumors with moderate or marked lymphatic invasion than in tumors without these invasive factors (4.7 +/- 1.4 vs. 1.1 +/- 0.1 for depth of invasion and 4.4 +/- 1.3 vs. 1.2 +/- 0.2 for lymphatic invasion; p < 0.05 for both). These results suggest that the analysis of telomerase activity in biopsy specimens might contribute to preoperative assessment of the invasive activity or stage of gastric cancer.

Adult↗

Urokinase type plasminogen activator and its receptor regulate the invasive potential of gastric cancer cell lines.

To assess the role of urokinase-type plasminogen activator (uPA) and uPA receptor (uPAR) on the invasive potential of cancer cells, in vitro experiments were performed using two human gastric cancer cell lines, NUGC-3 and MKN-28. NUGC-3 cells secreted a higher level of uPA than MKN-28 cells, while the uPAR expression of NUGC-3 cells was lower than that of MKN-28 cells. Both cancer cell lines expressed Met protein and did not express hepatocyte growth factor (HGF). In Matrigel invasion assay, MKN-28 cells demonstrated significantly lower invasion index than NUGC-3 cells. The addition of exogenous uPA significantly increased the invasive activity of MKN-28 cells. The uPA expression in NUGC-3 cells was enhanced by adding conditioned media of fibroblast cells or HGF. These results suggest that uPA promotes the invasive capacity of the uPAR-positive cancer cells, and that stromal cells may play an important role in cancer cell invasion by supplying uPA and/or promoting uPA production.

Adenocarcinoma↗

Hyperbaric stress during saturation diving induces lymphocyte subset changes and heat shock protein expression.

To clarify the cellular responses and biochemical markers of hyperbaric stress, we investigated heat shock protein (hsp) expression and subset changes of human peripheral blood lymphocytes during saturation diving. Five healthy male subjects underwent a 39-day saturation dive to the maximal storage pressure of 4.1 MPa [400 meters of sea water (msw)]. During the saturation dive, lymphocyte subset changes were detected using a flow cytometer, and increased expressions of hsp 72/73 and hsp 27 were observed by Western blot analysis. Lymphocyte subset changes included a decrease in CD4:CD8 ratio and in the fraction of CD4+ T cells as well as an increase in NK cells, especially during the 400-msw bottom phase. An increased expression of hsp 27 compared to hsp 72/73 was obvious, especially during the hold period at 100 msw. These results suggest that changes in lymphocyte subsets and hsp expression are useful markers for stress responses during saturation diving. These changes may also be useful for testing the barotolerance of divers for saturation diving.

Biomarkers↗

Incomplete Sjögren-Larsson syndrome in two Japanese siblings.

Sjögren-Larsson syndrome (SLS) is a rare, autosomal recessive disorder characterized by ichthyosis, spastic diplegia and mental retardation. Biochemical studies have pinpointed the pathogenesis resulting in the deficiency of the fatty aldehyde dehydrogenase (FALDH) component of the fatty alcohol NAD+ oxidoreductase complex. Histochemical analysis revealed a reduction in alcohol dehydrogenase (AD) activity in the skin. SLS patients have been categorized biochemically into two groups: complete and incomplete reduction according to the degree of FALDH deficiency. Our patients demonstrated incomplete clinical features, including a 1/3 reduction in FALDH activity, and decreased AD activity in the ichthyotic lesion. The phenotypical differences between our cases and classic SLS are probably due to the partial FALDH deficiency.

Aldehyde Oxidoreductases↗

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Journal Article↗

Osteoclastogenesis inhibitory factor suppresses osteoclast survival by interfering in the interaction of stromal cells with osteoclast.

Osteoclastogenesis inhibitory factor (OCIF) was originally identified as a factor inhibiting osteoclast (OC) formation. The number of OC in rats treated with OCIF decreased, suggesting that OCIF inhibits OC formation in vivo; however, it is also possible that OCIF affects the number of OC by promoting apoptosis of OC. To address this issue, the effects of OCIF on the survival of OC were examined using well established mouse culture systems. OCIF dose-dependently inhibited OC formation in mouse marrow cultures. Addition of OCIF during day 0-3 did not alter the peak levels of OC formation on day 7 and 8. However, the addition of OCIF during day 5 and thereafter resulted in the rapid decrease of the number of OC. OCIF inhibited the survival of OC formed in mouse marrow cultures in dose- and time-dependent manners. The involvement of stromal cells in OC survival was examined using crude and stromal cell-depleted OC populations. OCIF dramatically inhibited the survival of crude OC populations rich with stromal cells. However, in stromal cell-depleted OC populations, OC spontaneously decreased in the absence of OCIF and OCIF did not enhance the decrease further at least up to 48 h. Apoptotic OC were detected in detached cell populations treated with OCIF in mouse marrow cultures and a specific inhibitor for caspase-3 rescued the death of OC. OCIF mutant lacking the death domain homologous regions inhibited OC survival, though the potency was much less than native OCIF. Taken together, OCIF inhibited not only OC recruitment but also OC survival. OCIF inhibited OC survival by interfering the interaction of stromal cells with OC.

Animals↗

Expression of cyclooxygenase-2 protein in gastric adenocarcinoma.

BACKGROUND AND OBJECTIVES: Epidemiological studies have suggested that the regular use of nonsteroidal antiinflammatory drugs, which inhibit cyclooxygenase (COX), reduces the risk of colon cancer. The inducible COX-2 isoform has been reported to be upregulated in colorectal carcinomas and may play a role in colorectal carcinogenesis. The purpose of this study was to investigate the expression of COX-2 protein in human gastric adenocarcinomas. METHODS: COX-2 protein expression was examined in 23 patients with gastric adenocarcinoma by immunoblotting and immunohistochemistry. RESULTS: There was an increase in COX-2 protein levels in 19 of the 23 carcinomas (83%) compared with the paired normal gastric mucosa by an immunoblot analysis. There was no correlation between tumor histology and COX-2 protein expression. An immunohistochemical study in the 19 cases showed diffuse COX-2 staining in the cytoplasm of cancer cells. Mononuclear cells or fibroblasts of the cancer stroma were not stained with COX-2. Sporadic staining for COX-2 was observed in the normal fundic or metaplastic glandular cells in all cases. CONCLUSIONS: COX-2 protein expression was elevated in most human gastric adenocarcinomas in comparison to the normal mucosa. COX-2 may therefore play an important role in gastric carcinogenesis.

Adenocarcinoma↗

Carbonic anhydrase I and II as a differentiation marker of human and rat colonic enterocytes.

Carbonic anhydrase (CA) is an enzyme that is expressed in the intestine and catalyzes the reversible hydration of CO2 in the following reaction: CO2 + H2O<==>H2CO3<==>H(+)+HCO3-. To elucidate the association of CA expression with the differentiation of colonic enterocytes, we investigated the expression and localization of CA using a Northern blotting analysis, Western blotting analysis, and immunohistochemical staining. A Northern blotting analysis revealed an abundant expression of CA I and II mRNA in the colonic epithelial cells. However, the expression of CA III mRNA was not detected. According to the results of immunohistochemical staining of the human colonic mucosa using antisera against CA I and II, both CA I and II were localized on the cytoplasm of non-goblet columnar cells in the upper half of the crypts where more differentiated cells are located. According to the results of immunohistochemical staining of the rat colonic mucosa, neither CA I and II were detected at the new-born stage. The expression of CAs in the upper half of the crypts began to rise from 1 week after birth, and thereafter increased according to the growth of the rats. At 3 weeks after birth, the expression of CAs was almost the same as that of the adult rats. The amount of CA proteins evaluated by a Western blotting analysis revealed that the expression of CAs increased gradually until reaching a maximum level at 6 or 8 weeks. These results therefore suggest that CA I and II appear to be good markers for the differentiation of enterocytes in the colonic mucosa.

Animals↗