Search PubMed⌕ Search

Biomedical subjects

Minoru Toyota

Publications and source records attributed to Minoru Toyota.

47 records · Page 3Linked to original sources

DNA methylation and environmental exposures in human hepatocellular carcinoma.

BACKGROUND: Hypermethylation of a CpG-rich promoter (CpG island) blocks expression of the corresponding gene. The CpG island methylator phenotype (CIMP), defined as a variable pattern of hypermethylation of CpG islands in tumor suppressor genes, may be associated with carcinogenesis. To determine whether CIMP is associated with the development of hepatocellular carcinoma (HCC) and with exposure to environmental agents, we examined the methylation status of CpG islands in HCCs from countries with various HCC risks. METHODS: We examined the methylation status of 12 CpG islands (eight for known genes) in 85 HCC tumors from various geographic locations by use of bisulfite-polymerase chain reaction methylation assays and analyzed results with univariate and multivariable methods. All statistical tests were two-sided. RESULTS: Eight CpG islands were hypermethylated. The frequency of hypermethylation in the 85 tumors was 62% for the estrogen receptor (ER), 42% for p16, 18% for cyclooxygenase-2, 21% for the T-type calcium channel gene, 38% for MINT31, 28% for MINT1, 15% for MINT27, and 11% for MINT2 (the latter four CpG islands are not yet associated with genes). Methylation levels of the eight frequently methylated CpG islands were positively correlated (from R =.2 [P =.05] to R =.6 [P<.001]), supporting the presence of CIMP. p16 methylation had statistically significant geographic variation (34.4% in tumors from China and Egypt versus 12.2% in tumors from the United States and Europe, difference = 22.2%; 95% confidence interval [CI] = 11.2% to 33.2%; P<.001). Similar geographic variations were observed for ER methylation and CIMP. This observation was partly related to higher methylation in tumors from patients with cirrhosis (33.6% for patients with cirrhosis versus 11.7% for those without it; difference = 21.9%; 95% CI = 10.9% to 32.8%; P<.001) or hepatitis (34.2% for patients with hepatitis versus 6.2% for those without it; difference = 28%; 95% CI = 18.3% to 37.6%; P<.001). CONCLUSION: Geographic variations in the methylation status of various CpG islands indicate that environmental factors may influence the frequent and concordant degree of hypermethylation in multiple genes in HCC tumors.

Aflatoxins↗

Inactivation of p57KIP2 by regional promoter hypermethylation and histone deacetylation in human tumors.

To clarify the role of DNA methylation in the silencing of the expression of cyclin-dependent kinase inhibitor p57KIP2 seen in certain tumors, we investigated the methylation status of its 5' CpG island in various tumor cell lines and primary cancers. Dense methylation of the region around the transcription start site was detected in 1 out of 10 colorectal, 2 out of 8 gastric, and 6 out of 14 hematopoietic tumor cell lines and in 5 out of 35 (14%) gastric, 6 out of 20 (30%) hepatocellular, and 2 out of 18 (11%) pancreatic cancers; 7 out of 25 (28%) acute myeloid leukemia cases also showed methylation of the p57KIP2 gene, which strongly correlated with the CpG island methylator phenotype (P<0.001). Detailed mapping revealed that dense methylation of the region around the transcription start site (-300 to +400), but not of the edges of the CpG island, was closely associated with gene silencing. 5-aza-2'-deoxycytidine, a methyltransferase inhibitor, restored expression of p57KIP2, and chromatin immunoprecipitation using anti-histone H3 and H4 antibodies showed histone to be deacetylated in cell lines where p57KIP2 was methylated at the transcription start site. Regional methylation and histone deacetylation thus appear to be crucially involved in the silencing of p57KIP2 expression in human tumors.

Acetylation↗

Aberrant methylation and histone deacetylation of cyclooxygenase 2 in gastric cancer.

Cyclooxygenase 2 plays a critical role in the development of gastrointestinal cancers in both human and animal models. About 80% of the gastric cancer showed a high level of expression of cyclooxygenase 2, but a subset of cases do not express without unknown reason. Aberrant methylation of CpG island of COX-2 was examined by using a series of gastric cancer cell lines and primary gastric cancers. Two out of 8 cell lines (25%) and 11 out of 93 (12%) primary cancers showed aberrant methylation of the 5' region of COX-2. Methylation of COX-2 was closely associated with loss of expression and treatment of methylation inhibitor, 5-deoxy-2'-azacytidine restored the expression of COX-2. A combined treatment of 5-deoxy-2'-azacytidine and a histone deacetylese inhibitor, trichostatin A, restored re-expression of the gene synergistically and chromatin immunoprecipitation analysis revealed that histone of methylated COX-2 promoter is deacetylated, indicating the role of cytosine methylation and histone deacetylation in the silencing of the gene. These results indicate that a subset of gastric cancer with COX-2 methylation evolves through the pathway that is independent of COX-2 expression and that COX-2 inhibitor may not be useful to induce apoptosis in these cases.

Antimetabolites, Antineoplastic↗

Increased expression of T-fimbrin gene after DNA damage in CHO cells and inactivation of T-fimbrin by CpG methylation in human colorectal cancer cells.

When DNA damage is induced by unprogrammed extrinsic events, activating-cell-cycle checkpoints delay cell-cycle progression in the G1 or G2 phases and allow repair of a damaged template. In this study, we evaluated changes in gene expression upon radiation-induced G2 cell-cycle arrest using Chinese hamster ovary (CHO) cells. T-fimbrin, an actin-binding protein, was overexpressed in CHO cells in which G2 arrest had been induced by X-radiation. Northern blot analysis revealed that T-fimbrin gene expression was induced not only by X-radiation but also by a topoisomerase II inhibitor, etoposide. Transfection of CHO cells with a vector encoding T-fimbrin antisense RNA demonstrated that reduced T-fimbrin expression induced alterations in cell-cycle control; radiation-induced G2 arrest was short and decreased in cells transfected with antisense T-fimbrin. Additionally, T-fimbrin gene expression was suppressed in a human colorectal cancer cell line, SW948, because of promoter-specific DNA methylation. These results suggest that downregulation of T-fimbrin may be involved in cancer development through G2/M cell-cycle control in mammalian cells.

Animals↗

DNA methylation changes in gastrointestinal disease.

DNA methylation of the 5' region of genes is often associated with gene silencing in X-chromosome inactivation and imprinting. Recent studies have indicated that altered DNA methylation plays a role in the inactivation of multiple tumor suppressor genes and DNA repair genes such as p16INK4A and hMLH1. Colorectal adenomas have a relatively high frequency of methylation, and aberrant methylation is an early event during tumorigenesis. In aging patients, even colon epithelium which appears to be normal showed a significant amount of methylation in a subset of the genes. Colon mucosa from patients with inflammatory bowel disease also showed a high level of methylation. DNA methylation can be a specific diagnostic marker in gastrointestinal cancer and inflammatory bowel disease, for which there is no perfect marker for a noninvasive diagnosis.

CpG Islands↗

Aberrant methylation of multiple genes and clinicopathological features in oral squamous cell carcinoma.

The purpose of this study was to examine the methylation profile of various oral squamous cell carcinomas and to correlate the methylation of particular chromosomal loci with the clinicopathological features of the tumors. A semiquantitative analysis of the methylation status of 12 loci in 96 primary tumors and 13 cell lines was carried out. Methylation frequency was calculated as the percentage of methylated alleles detected by bisulfate-PCR. Of the 12 loci examined, 9 (p16INK4A, p15INK4B, p14ARF, DCC, DAP kinase, MINT1, MINT2, MINT27, and MINT31) exhibited aberrant methylation at various frequencies, whereas 3 (hMLH1, HRK, and CACNA1G) showed no methylation. Dense methylation of the 5' CpG island of DAP kinase and MINT1 was well correlated with loss of gene expression. In addition, methylation of DCC was correlated with bone invasion by gingival tumors (P = 0.036), with aggressive invasiveness of tumors of the tongue (P = 0.046), and with reduced survival (P = 0.050). Methylation of MINT1 and MINT31 also correlated with poor prognoses (P = 0.058 and 0.041), whereas methylation of p14ARF correlated with a good prognosis (P = 0.021). Cox regression analysis showed methylation of MINT31 to be an independent predictor of outcome (hazard ratio, 3.79; 95% confidence interval, 1.58-9.10) and to be associated with the T4 disease group (hazard ratio, 5.71; 95% confidence interval, 1.25-26.07). Analysis of DNA methylation is a useful approach to evaluation of the biological characteristics of oral cancers and may be a useful diagnostic indicator of patient prognosis.

Biomarkers, Tumor↗

Aberrant methylation and histone deacetylation associated with silencing of SLC5A8 in gastric cancer.

Aberrant methylation of a sodium co-transporter, solute carrier family 5 member 8 gene (SLC5A8), has been detected in a subset of colorectal cancers, suggesting SLC5A8 may also serve as a tumor suppressor. To further investigate the role of epigenetic inactivation of SLC5A8 expression in gastric cancer, we determined the methylation status of the SLC5A8 5' CpG island (CGI) in a panel of gastric cancer cell lines and primary gastric cancers. We detected methylation of the 5'CGI in ten of twelve gastric cancer cell lines, and five of those showed dense methylation, which correlated with the absence of SLC5A8 transcription. Aberrant methylation of SLC5A8 was also detected in 23 of 71 (30%) primary gastric cancers, indicating that epigenetic inactivation of SLC5A8 is not a cell-line-specific phenomenon. SLC5A8 expression was restored in methylated cell lines by treatment with 5-aza-2'-deoxycytidine, a methyltransferase inhibitor. In addition, chromatin immunoprecipitation assays showed that acetylation of histone H3 in the 5' region of the gene correlated directly with SLC5A8 expression and inversely with DNA methylation. It thus appears that aberrant methylation of its 5'CGI and histone deacetylation play key roles in silencing SLC5A8 expression in gastric cancers.

Cation Transport Proteins↗

Roles and causes of abnormal DNA methylation in gastrointestinal cancers.

Evidence now suggests that epigenetic abnormalities, particularly altered DNA methylation, play a crucial role in the development and progression of human gastrointestinal malignancies. Two distinct DNA methylation abnormalities are observed together in cancer. One is an overall genome-wide reduction in DNA methylation (global hypomethylation) and the other is regional hypermethylation within the CpG islands of specific gene promoters. Global hypomethylation is believed to induce proto-oncogene activation and chromosomal instability, whereas regional hypermethylation is strongly associated with transcriptional silencing of tumor suppressor genes. To date, genes involved in regulation of the cell cycle, DNA repair, growth signaling, angiogenesis, and apoptosis, are all known to be inactivated by hypermethylation. Recently developed techniques for detecting changes in DNA methylation have dramatically enhanced our understanding of the patterns of methylation that occur as cancers progress. One of the key contributors to aberrant methylation is aging, but other patterns of methylation are cancer-specific and detected only in a subset of tumors exhibiting the CpG island methylator phenotype (CIMP). Although the cause of altered patterns of DNA methylation in cancer remains unknown, it is believed that epidemiological factors, notably dietary folate intake, might strongly influence DNA methylation patterns. Recent studies further suggest that polymorphisms of genes involved in folate metabolism are causally related to the development of cancer. Identifying epidemiological factors responsible for epigenetic changes should provide clues for cancer prevention in the future.

Aging↗