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K Sogawa

Publications and source records attributed to K Sogawa.

At least 19 recordsLinked to original sources

Structure and expression of the Ah receptor repressor gene.

The aryl hydrocarbon receptor (AhR) repressor (AhRR) gene has been isolated and characterized from a mouse genomic library. The gene is distributed as 11 exons in a total length of about 60 kilobase pairs. Fluorescence in situ hybridization analysis has shown that the AhRR gene is located at mouse chromosome 13C2, at rat chromosome 1p11.2, and at human chromosome 5p15.3. The AhRR gene has a TATA-less promoter and several transcription start sites. In addition, putative regulatory DNA sequences such as xenobiotic responsive element (XRE), GC box, and NF-kappaB-binding sites have been identified in the 5'-upstream region of the AhRR gene. Transient transfection analyses of HeLa cells with reporter genes that contain deletions and point mutations in the AhRR promoter revealed that all three XREs mediated the inducible expression of the AhRR gene by 3-methylcholanthrene treatment, and furthermore, GC box sequences were indispensable for a high level of inducible expression and for constitutive expression. Moreover, by using gel mobility shift assays we were able to show that the AhR/Arnt heterodimer binds to the XREs with very low affinity, which is due to three varied nucleotides outside the XRE core sequence. We have also shown that Sp1 and Sp3 can bind to the GC boxes. Finally, both transient transfection analysis and gel mobility shift assay revealed that the AhRR gene is up-regulated by a p65/p50 heterodimer that binds to the NF-kappaB site when the cells has been exposed to 12-O-tetradecanoylphorbol-13-acetate, and this inducible expression was further enhanced by cotreatment of 12-O-tetradecanoylphorbol-13-acetate and 3-methylcholanthrene.

5' Untranslated Regions↗

Keratin mRNA for detecting micrometastasis in cervical lymph nodes of oral cancer.

We studied three keratin (K) gene candidates, K13, K19, and K20 mRNAs, for detecting micrometastases in cervical lymph nodes (LNs) by reverse transcriptase-polymerase chain reaction (RT-PCR). Of 166 histologically metastasis-negative nodes, 24 micrometastatic LNs (14. 4%) were detected based on K13 gene expression. Keratin 19 mRNA is an inadequate marker for the genetic diagnosis due to not only illegitimate gene expression from lymphatic tissue but also gene expression from the ectopic salivary gland. Keratin 20 mRNA showed low sensitivity. It is suggested that K13 mRNA may be a promising tumor marker among these keratin genes for detecting the micrometastases in cervical LNs of oral cancer.

Gene Expression Regulation, Neoplastic↗

Histological study on pN upgrading of oral cancer.

The International Union Against Cancer (UICC) does not define the number of sections required from each regional lymph node to record pTNM classification. This study was designed to clarify the incidence of occult metastasis and to assess the pN upgrading of patients with oral cancer. Ultimately, this study led to a proposal for appropriate semiserial sectioning guidelines. Five hundred fifty-four nonmetastatic cervical lymph nodes taken from 73 patients with oral cancer were subjected to hematoxylin-eosin (HE) staining and keratin immunohistochemistry. Micrometastases, defined as foci < or =3 mm, were detected in 29 sites of 23 lymph nodes (4.2%) of 16 patients (21.9%). In 9 patients (12.3%) pN upgrading was needed: in 6 from pN0 to pN1, in 1 from pN0 to pN2b, and in 2 from pN1 to pN2b. The remaining 13 lymph nodes with occult metastasis were found in 5 pN2b and 2 pN2c patients, resulting in no pN upgrading. Occult metastasis was also detected in 6 small lymph nodes < or =5 mm in diameter. The average minor axis of the micrometastasis was 1.36-/+0.85 mm. We propose that the lymph nodes should be cut and examined at 1-mm intervals to detect micrometastatic foci and to evaluate the pN classification accurately.

Humans↗

Induction of apoptosis and inhibition of DNA topoisomerase-I in K-562 cells by a marine microalgal polysaccharide.

We have previously purified an extracellular polysaccharide, D-galactan sulfate associated with L(+)-lactic acid, produced from a marine microalga Dinoflagellate Gymnodinium sp. A3 (GA3). The GA3 polysaccharide, irrespective of presence or absence of lactic acid, exhibited significant cytotoxicity, which is based on an induction of apoptotic cell death, toward human myeloid leukemia K562 cells. Furthermore, we found that the GA3 polysaccharide with or without lactic acid possesses an inhibitory effect on topoisomerase-I (topo-I). The potent cytotoxic effect of GA3 polysaccharide may result from its inhibitory effect on topo-I, because the topo-I inhibition is known to trigger apoptotic cell death.

Animals↗

Transactivation mechanisms of mouse clock transcription factors, mClock and mArnt3.

BACKGROUND: The Arnt3 (also termed as BMAL1 or MOP3)/Clock heterodimer is a positive regulator of circadian rhythm and activates the transcription of target genes such as per1 and vasopressin. RESULTS: We investigated the transcriptional mechanism of mArnt3/mClock heterodimer. While mClock did not possess any distinct activation domain, mArnt3 contained a transcriptional activation domain at the most C-terminal end, the activity of which was not expressed, even in the one hybrid system, until it was bound by mClock. It has been suggested that mClock plays a regulatory or structural role in exerting a transcription enhancing effect of the mArnt3/mClock heterodimer. Deletion proceeding from amino acids 559-492 of mClock markedly reduced the transactivation activity of mArnt3/mClock heterodimer, in consistence with the results of the Clock-delta 19 mutant. Yeast and mammalian two-hybrid systems revealed that CBP and p300 interacted with mArnt3 via the CREB binding domain. The In vivo interaction between mArnt3 and CBP was confirmed by the GST pull down assay. CONCLUSION: Taken together, these results suggest that the mArnt3/mClock heterodimer exerted its transactivation activity via CBP or p300 interacting with mArnt3 in the heterodimer with mClock playing a structural or regulatory role in the transactivation process.

ARNTL Transcription Factors↗

Clinical usefulness of telomerase assay for the detection of lymph node metastasis in patients with oral malignancy.

OBJECTIVE: Telomerase is considered a diagnostic marker of malignancy. We investigated the usefulness of telomerase assay for the detection of lymph node micrometastasis. METHODS: Sixteen cervical lymph nodes with metastasis of oral cancer and 20 benign lymph nodes were studied. The oral cancer cell line was used to estimate the sensitivity for telomerase assay. Telomerase activity was measured by semiquantitative telomeric repeat amplification protocol. RESULTS: There was a significant difference between malignant and benign lymph nodes. The telomerase activity of 50 mg of lymph nodes with 103 or more cancer cells differed from that of control lymph nodes. Lymph nodes with 102 or fewer tumor cells expressed similar levels as benign lymph nodes. CONCLUSIONS: In addition to routine histologic examination, telomerase assay is considered a useful tool for the detection of lymph node metastasis in patients with oral malignancy.

Biomarkers, Tumor↗

[Regulatory mechanism of genes by the Ah receptor which mediates toxic effects of dioxins].

The aryl hydrocarbon receptor(AhR) plays a central role in the metabolic pathways involved in the detoxification of important environmental carcinogens, most of which act as ligand for the receptor, although no endogeneous ligand has not yet been known. Activation of the AhR is responsible for a variety of toxic responses in animals and humans. The activation mechanisms become clear that include binding of ligand to receptor, transfer to the nucleus, formation of a ternary complex with Arnt, followed by binding to response elements upstream of the relevant target genes. However, the specific mechanisms responsible for the toxic responses of dioxins are unknown.

Animals↗

Increased polyploid incidence is associated with abnormal copper accumulation in the liver of LEC mutant rat.

Long-Evans Cinnamon (LEC) rats are deleted at the p-type copper transport ATPase gene (Atp7b), so that they exhibit abnormal hepatic copper concentration. In this study, it was confirmed that LEC rat liver possesses a feature of increase in polyploid. Furthermore, a segregation analysis using backcrosses between LEC and F344 normal rats showed that the increased polyploid incidence is strongly associated with excessive copper content in their liver. These results should demonstrate that copper cytotoxicity leads to the impairment of mitotic progression, resulting in the increase of polyploid in the liver of LEC rats.

Animals↗

Molecular mechanisms of transcription activation by HLF and HIF1alpha in response to hypoxia: their stabilization and redox signal-induced interaction with CBP/p300.

Hypoxia-inducible factor 1 alpha (HIF1alpha) and its related factor, HLF, activate expression of a group of genes such as erythropoietin in response to low oxygen. Transfection analysis using fusion genes of GAL4DBD with various fragments of the two factors delineated two transcription activation domains which are inducible in response to hypoxia and are localized in the C-terminal half. Their sequences are conserved between HLF and HIF1alpha. One is designated NAD (N-terminal activation domain), while the other is CAD (C-terminal activation domain). Immunoblot analysis revealed that NADs, which were rarely detectable at normoxia, became stabilized and accumulated at hypoxia, whereas CADs were constitutively expressed. In the mammalian two-hybrid system, CAD and NAD baits enhanced the luciferase expression from a reporter gene by co-transfection with CREB-binding protein (CBP) prey, whereas CAD, but not NAD, enhanced beta-galactosidase expression in yeast by CBP co-expression, suggesting that NAD and CAD interact with CBP/p300 by a different mechanism. Co-transfection experiments revealed that expression of Ref-1 and thioredoxin further enhanced the luciferase activity expressed by CAD, but not by NAD. Amino acid replacement in the sequences of CADs revealed a specific cysteine to be essential for their hypoxia-inducible interaction with CBP. Nuclear translocation of thioredoxin from cytoplasm was observed upon reducing O2 concentrations.

Amino Acid Sequence↗

Telomerase components as a diagnostic tool in human oral lesions.

Telomerase activity is considered to be a diagnostic marker of malignancy since most malignant cells express this activity and most somatic cells do not. However, the detection of telomerase activity is rather complicated and is affected by many factors. Recently, human telomerase components were cloned and found to consist of 3 subunits. We assessed which component of telomerase best correlates with malignancy in order to study the possibilities for developing a new diagnostic marker. Telomerase activity was measured by a telomeric repeat amplification protocol (TRAP) assay, and the telomerase components hTR, hTRT-mRNA and TP1-mRNA were detected by the reverse transcriptase-polymerase chain reaction (RT-PCR). Twenty-five of 26 oral malignant lesions, 9 of 22 benign lesions and none of 19 normal control tissues exhibited distinct telomerase activity. hTR and TP1-mRNA expression levels were detected in all malignant lesions and normal control tissues and had no significant correlation with the telomerase activity results. In contrast, hTRT-mRNA expression was closely associated with telomerase activity. All lesions expressing hTRT were telomerase positive. In addition, some samples of dysplastic lesions, benign tumors, lichen planus and normal mucosa exhibiting poor telomerase activity revealed weak expression of hTRT. Expression levels of hTRT-mRNA positively correlated with clinical and pathological findings. Detection of hTRT-mRNA by RT-PCR appeared to be more sensitive for telomerase than measurement of telomerase activity by the TRAP assay. Detection of hTRT-mRNA may provide information useful in the diagnosis of oral malignancies.

Biomarkers, Tumor↗

Identification of a novel mechanism of regulation of Ah (dioxin) receptor function.

Ah receptor (AhR) is a ligand-activated transcription factor that mediates pleiotropic effects of environmental pollutants such as 2,3, 7,8-tetrachlorodibenzo-p-dioxin on host animals. In addition to induction of drug-metabolizing enzymes, the liganded AhR complex was found to activate gene expression of a factor designated AhR repressor (AhRR), which inhibits AhR function by competing with AhR for dimerizing with Arnt and binding to the XRE sequence. Thus, AhR and AhRR form a regulatory circuit in the xenobiotic signal transduction pathway and provide a novel mechanism of regulation of AhR function that may determine tissue-specific sensitivity to environmental pollutants.

Amino Acid Sequence↗

Telomerase activation and cell proliferation during 7,12-dimethylbenz[a]anthracene-induced hamster cheek pouch carcinogenesis.

Telomerase is a ribonucleoprotein complex intimately involved in cell immortalization and carcinogenesis. This enzyme is activated and stabilizes telomere length in almost all types of cancer. Telomerase may be necessary for continuous cell proliferation. In this study, we analyzed telomerase activity in hamster experimental oral lesions (starting from epithelial hyperplasia through dysplasia, carcinoma in situ, and invasive carcinoma) evoked by 7,12-dimethylbenz[a]anthracene, and in normal mucosa. We also analyzed proliferative activity in these lesions by using immunohistochemical analysis and flow cytometry. Histologically normal epithelium expressed weak telomerase activity. The telomerase activity count increased rapidly in the early stage of carcinogenesis and gradually in the late stage. Cell-proliferative activity closely correlated with progression of disease. These findings indicate that telomerase activation is an early event and that increases in telomerase activity upregulate cell proliferation in chemically induced hamster oral carcinogenesis.

9,10-Dimethyl-1,2-benzanthracene↗

Species specificity of cytokeratin polypeptide expression in the submandibular gland.

Using nine monospecific and seven polyspecific monoclonal antibodies (MoAbs) against cytokeratin (CK), we immunohistochemically studied the species specificity of CK localization in human, rat, mouse, hamster and guinea pig submandibular glands (SMGs). All species showed different staining patterns with various degrees of intensity. The pattern of immunostaining was broadly classified into three groups. Group I showed positive reactivity to the rodent salivary gland, but not to human SMGs (6B10 and 34betaE12). Group 2 showed the reverse staining pattern (M20, A53-B/A2 and Ks19.1). Group 3, for which almost all species were positive, showed interspecific diversity in the staining pattern (CY-90, K8.12, K8.13, C-11 and KH-1). Species specificity of CK should always be taken into consideration when immunohistochemically examining CK expression during development or during carcinogenesis in rodents.

Animals↗

Chapter 14. Ah receptor gene polymorphisms and human cancer susceptibility.

The Ah receptor (Ahr) gene occupies a central role in the metabolic pathways involved in the detoxification of important environmental carcinogens. The structures of the rodent and human genes have been elucidated, and the molecular details of the receptor function, including its interaction with other proteins such as Arnt and hsp90, have been thoroughly investigated. The Ahr gene is polymorphic in mice and in humans. In mice, good correlations have been found between structural polymorphisms in the gene and functional variants in various genetic strains. In humans, work on polymorphisms and their possible role in gene function as well as cancer susceptibility is just beginning.

Animals↗

[Overview: hypoxia].

Explore the source record for details and available documents.

Adenosine Triphosphate↗

Structure and expression of the mouse AhR nuclear translocator (mArnt) gene.

Aryl hydrocarbon receptor (AhR) nuclear translocator (Arnt) gene has been isolated and characterized from a mouse genomic DNA library. The gene is about 60 kilobases long and split into 22 exons. An unusual exon/intron junctional sequence was found in the 11th intron of the gene that begins with GC at its 5'-end. The exon/intron arrangement of mArnt gene differs greatly from those of the other members of the same basic-helix-loop-helix/PAS family. The gene is TATA-less and has several transcription start sites. The promoter region of the mArnt gene is GC-rich and contains a number of putative regulatory DNA sequences such as two GC-boxes, a cAMP-responsive element, E-box, AP-1 site, and CAAT-box. Deletion experiments revealed that all these DNA elements made substantial contributions to a high level of expression of the gene, except for the cAMP-responsive element. Of all, two GC-boxes displayed the most dominant enhancing effects. It was demonstrated that there exist specific factors binding to these DNA elements in the nuclear extracts of HeLa cells. Among them, Sp1 and Sp3, and CAAT-box binding factor-A were identified to bind the GC-boxes and CAAT-box, respectively. Expression of MyoD in HeLa cells stimulated the Arnt promoter activity by binding to the E-box.

Amino Acid Sequence↗

Transcriptionally active heterodimer formation of an Arnt-like PAS protein, Arnt3, with HIF-1a, HLF, and clock.

We isolated a cDNA clone encoding a polypeptide of 626 amino acids containing basic helix-loop-helix (bHLH) and PAS domains from a mouse cDNA library of P19 cells. This protein, termed Arnt3, showed the highest similarity to Arnt and Arnt2 in the bHLH and PAS regions. Arnt3 mRNA was expressed in brain, skeletal muscle, 13.5-day embryos, and P19 cells treated with retinoic acid. The partner PAS proteins of Arnt3 were searched for by the two-hybrid system in yeast, and HIF-1 alpha, HLF, and Clock among various bHLH/PAS proteins were found. Gel mobility shift analysis using nuclear extracts from 293T cells cotransfected with Arnt3 and HIF-1 alpha (or HLF) expression plasmids revealed that these complexes specifically bound the hypoxia-response element (HRE). Coexpression of Arnt3 and HIF-1 alpha (or HLF) in Arnt-deficient c4 cells enhanced transcription of a reporter gene driven by the HRE sequences. We also showed that Arnt3 contained an activation domain at the C-terminal region and a repression domain between the PAS-A and PAS-B regions.

ARNTL Transcription Factors↗