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G Tamura

Publications and source records attributed to G Tamura.

At least 91 records · Page 5Linked to original sources

Commonly deleted regions on the long arm of chromosome 21 in differentiated adenocarcinoma of the stomach.

During an allelotype analysis of differentiated adenocarcinoma of the stomach, we observed frequent loss of heterozygosity (LOH) on several chromosomes including the long arm of chromosome 21 (21q). Therefore, we analyzed DNA isolated from 45 tumors for LOH at 10 loci on 21q by using polymorphic microsatellite markers. In 20 (44%) of 45 tumors, we detected LOH at single or multiple loci on 21q. Deletion mapping of these 20 tumors revealed two separate commonly deleted regions. Our findings suggest that 21q contains at least two potential tumor suppressor genes which play crucial roles in the development of differentiated adenocarcinoma of the stomach.

Adenocarcinoma↗

Analysis of the fragile histidine triad gene in primary gastric carcinomas and gastric carcinoma cell lines.

The FHIT (fragile histidine triad) gene has been isolated from the chromosome region 3p14.2, which includes the fragile site locus FRA3B and the breakpoint of the t(3;8) of familial renal carcinoma. FHIT has been suggested to be a candidate tumor suppressor gene for digestive tract carcinomas. To evaluate the significance of FHIT gene abnormalities in gastric carcinogenesis, we examined the allelic status and transcripts of the gene in 23 primary gastric carcinomas as well as 7 gastric carcinoma cell lines. Four of the seven (57%) cell lines exhibited homozygous deletions of variable sizes at 3p14.2 all of which included D3S1300, which is located close to, or within, FRA3B. However, only 2 of 16 (13%) informative cases showed loss of heterozygosity at D3S1300 in the primary tumors. Direct analysis by reverse transcriptase polymerase chain reaction failed to reveal abnormal transcripts, including exon skipping and sequence changes, in the primary tumors or in the cell lines without homozygous deletions. These results suggest that FHIT gene abnormalities are infrequent in primary gastric carcinomas and that the frequent homozygous deletions seen in cell lines might simply reflect the plasticity of the genome at FRA3B under culture conditions.

Acid Anhydride Hydrolases↗

Inactivation of the CDKN2 gene by homozygous deletion and de novo methylation is associated with advanced stage esophageal squamous cell carcinoma.

We examined the genomic status of the CDKN2 gene including de novo methylation of 5' CpG islands in primary and metastatic tumor samples from 31 patients with esophageal squamous cell carcinoma. One somatic frame shift mutation (1 of 31; 3.2%) was identified by PCR-single strand conformational polymorphism analysis and DNA sequencing. Homozygous deletion and de novo methylation of the gene were confirmed in 5 (16%) and 6 (19%) of 31 patients, respectively. Homozygous deletion and de novo methylation were significantly associated with silencing of gene expression (P < 0.01). Aberrations of the CDKN2 gene were detected in tumors with lymph node metastasis and muscular invasion (12 of 22; 54%) and in none of stage I tumors (0 of 9.0%; P < 0.05). These results suggest that homozygous deletion and de novo methylation are predominant mechanisms of inactivation of the CDKN2 gene and may be associated with metastatic and invasive phenotypes of esophageal squamous cell carcinoma.

Base Sequence↗

Two distinct regions of deletion on the long arm of chromosome 5 in differentiated adenocarcinomas of the stomach.

Frequent loss of heterozygosity (LOH) on the long arm of chromosome 5 (5q) has been reported in many types of human malignancies, including gastric carcinoma. One of the targets of 5q-LOH in colorectal carcinoma is certainly the adenomatous polyposis coli (APC) gene on 5q21. However, other evidence has suggested the presence of another tumor suppressor gene in this region which may be inactivated in gastric carcinoma. In the present study, to determine the location of the putative tumor suppressor gene on 5q, LOH at nine microsatellite loci on 5q were investigated at 38 differentiated adenocarcinomas of the stomach that probably did not carry APC mutations. LOH at any locus on 5q occurred in 37% (14 of 38) of the tumors. Although many tumors exhibited large interstitial deletions on 5q that included the APC locus (5q21), we have identified minimum regions of deletion as the D5S428 locus and the interferon regulatory factor-1 (IRF-1) locus. Thus, at least two putative tumor suppressor genes, which play a crucial role in the genesis of differentiated adenocarcinoma of the stomach and are distinct from the APC gene, lie on 5q.

Adenocarcinoma↗

Allelotype of adenoma and differentiated adenocarcinoma of the stomach.

The molecular mechanism of gastric tumourigenesis has not yet been clarified, although investigators have postulated that differentiated adenocarcinoma may arise from pre-existing adenoma, similarly to the colorectal adenoma-carcinoma sequence. An allelotype analysis has been performed to identify chromosomal regions which are frequently deleted in gastric tumours and to examine the significance of the adenoma-carcinoma sequence in gastric tumourigenesis. Forty-five gastric tumours, 20 adenomas, and 25 differentiated adenocarcinomas were examined for loss of heterozygosity (LOH) using 39 microsatellite markers covering each non-acrocentric chromosome arm. Frequent LOH in the adenocarcinomas was observed on chromosomes 2q (33 per cent), 4p (33 per cent), 5q (50 per cent), 6p (33 per cent), 7q (43 per cent), 11q (36 per cent), 14q (38 per cent), 17p (45 per cent), 18q (36 per cent), and 21q (40 per cent). In contrast, the incidence of LOH in adenomas did not exceed 10 per cent at any of the loci examined. In addition to the p53 gene on 17p and the DCC gene on 18q, which are known to be frequently deleted in differentiated adenocarcinomas of the stomach, other unknown tumour suppressor genes on the above-mentioned chromosomes may also be inactivated. These observations suggest that the adenoma-carcinoma sequence is not a major pathway in gastric tumourigenesis.

Adenocarcinoma↗

Expression of cytokine genes and presence of enteroviral genomic RNA in endomyocardial biopsy tissues of myocarditis and dilated cardiomyopathy.

Viral infection, especially by enteroviruses, has been considered to be the most common cause of myocarditis, which may progress to dilated cardiomyopathy (DCM). Although the mechanism of progression remains uncertain, a cytokine-associated injury of myocytes has been proposed. Using reverse transcriptase polymerase chain reaction (RT-PCR), we examined the expression of interleukin 1 beta (IL-1 beta), IL-6, IL-8 and tumour necrosis factor alpha (TNF-alpha) and the presence of enteroviral genomic RNA in endomyocardial biopsy tissues obtained from patients with myocarditis and DCM. We examined endomyocardial biopsy tissues obtained from 6 patients with myocarditis, 21 with DCM and 15 with non-infectious cardiac diseases as controls. In patients with myocarditis, endomyocardial biopsy was performed twice at an interval of 1 month to 8 years after the onset of myocarditis. We used RT-PCR to detect IL-1 beta, IL-6, IL-8 and TNF-alpha genes expression and nested RT-PCR (nRT-PCR) to detect enteroviral genomic RNA. IL-1 beta, IL-6, IL-8 and TNF-alpha genes were expressed in 100% (6/6) and enteroviral genomic RNA in 67% (4/6) of myocarditis patients at the first biopsy. At the second biopsy, IL-1 beta, IL-6, IL-8 and TNF-alpha genes were expressed in none, 50% (3/6), 67% (4/6) and 67% (4/6), respectively, and enteroviral genomic RNA in 67% (4/6). Four patients with myocarditis, in whom IL-8 and TNF-alpha genes and enteroviral genomic RNA were detected, progressed to DCM at the second biopsy. IL-1 beta, IL-6, IL-8 and TNF-alpha genes were expressed in none, 24% (5/21), 38% (8/21), 57% (12/21) of DCM patients, respectively. Enteroviral genomic RNA was detected in 43% (9/21) of DCM. Neither cytokine expression nor enteroviral genomic RNA were detected in the controls. the high incidence of cytokines, especially IL-6, IL-8 and TNF-alpha, expression in myocarditis and DCM, which might be induced by enteroviral infection, suggests that cytokines play an important role in myocytic damage leading to DCM.

Adult↗

Deletion analysis of promoter elements of the Aspergillus oryzae agdA gene encoding alpha-glucosidase.

The nucleotide sequence of a 1.5-kb fragment of the promoter region of the Aspergillus oryzae agdA gene encoding alpha-glucosidase was determined. A comparison with the promoter regions of other Aspergillus amylase genes indicated that there are three highly conserved sequences, designated Regions I, II and III, located at -670 nt, -596 nt and -544 nt relative to the start codon, respectively. The function of these consensus sequences in the agdA promoter was investigated by deletion analysis of a promoter fusion with the Escherichia coli uidA gene, using the niaD homologous-transformation system. Deletion of the upstream half of Region III (IIIa; -544 to -529) resulted in a more than 90% reduction in GUS activity and abolished maltose induction, suggesting that Region IIIa is a functionally essential element for high-level expression and maltose induction. Deletion of Region I and the downstream half of Region III (IIIb; -521 to -511) resulted in a significant reduction in GUS activity, but did not affect maltose induction. This suggested that these two elements most likely contain sequences involved in efficient expression in cooperation with Region IIIa. In addition, deletion of a 340-bp region between Region IIIb and the putative TATA box resulted in a 2-fold increase in activity.

Aspergillus oryzae↗

Loss of heterozygosity at the DCC gene locus is not crucial for the acquisition of metastatic potential in oesophageal squamous cell carcinoma.

Tumour specimens from 111 patients with oesophageal squamous cell carcinoma were screened for loss of heterozygosity (LOH) at the deleted colorectal carcinoma (DCC) gene locus. DCC-LOH occurred in 10 of 61 informative cases (16%). No statistically significant correlation was observed between DCC-LOH and lymph node metastasis, histopathological grade or tumour stage. The survival of patients exhibiting DCC-LOH was not statistically different from that of patients without LOH. These results suggest that LOH at the DCC locus is not related to the acquisition of metastatic potential or the state of tumour cell differentiation in oesophageal squamous cell carcinoma.

Base Sequence↗

Common deleted region on the long arm of chromosome 5 in esophageal carcinoma.

BACKGROUND & AIMS: The existence of an unknown tumor-suppressor gene on 5q for esophageal carcinoma other than the APC gene has been suggested. The location of the putative tumor-suppressor gene on 5q, distinct from the APC gene, was examined. METHODS: Sixty-one primary esophageal carcinomas were examined for nine microsatellite loci by the polymerase chain reaction followed by polyacrylamide gel electorophoresis. Loss of heterozygosity at the APC gene locus also was examined by the polymerase chain reaction-restriction fragment length polymorphisms. RESULTS: Thirty-five of 61 esophageal carcinomas (57%) showed loss of heterozygosity at single or multiple loci on 5q, and the smallest common deleted region was identified at 5q31.1, the location of the IRF-1 gene locus. All tumors showing loss of heterozygosity at the APC gene locus showed complete or large interstitial deletions on 5q. CONCLUSIONS: Deletion at the APC gene locus may just be the result of large deletions on 5q and may not be important in esophageal carcinogenesis, and the IRF-1 gene or other gene(s) on 5q31.1 may be the true target of frequent deletions on 5q that may play an important role in the pathogenesis of the majority of esophageal carcinomas.

Carcinoma↗

Inactivation of the E-cadherin gene in primary gastric carcinomas and gastric carcinoma cell lines.

We investigated the E (epithelial)-cadherin gene for mutations and loss of heterozygosity (LOH) in 24 primary gastric carcinomas (12 differentiated and 12 undifferentiated types, including 3 signet-ring cell carcinomas), as well as 4 gastric carcinoma cell lines of the undifferentiated type (MKN-45, GCIY, HGC-27 and GT3TKB). We utilized PCR-SSCP and RT-PCR followed by direct sequencing to detect gene mutations and skipped exons, and RT-PCR-SSCP to examine LOH. In primary carcinomas, gene mutations or skipped exons were detected in 4 of 9 (44%) undifferentiated carcinomas of the scattered type, including 2 signet-ring cell carcinomas, and in none of the 3 undifferentiated carcinomas of the adherent type and 12 differentiated carcinomas. Demonstrated mutations of the E-cadherin gene included an 18 bp deletion (codon 418-423) and a 3 bp deletion (codon 400, calcium-binding domain), both located in exon 9. Skipping of exon 9 with a 1 bp insertion at codon 337, and skipping of exon 8 with a 1 bp deletion at codon 336, also were detected. LOH was confirmed in all of the carcinomas in which gene mutations or skipped exons (3/3 informative cases) were demonstrated. The MKN-45 cell line exhibited an 18 bp deletion at the exon 6-intron 6 boundary with loss of the wild-type allele, and 2 of the remaining 3 cell lines (HGC-27 and GT3TKB) had lost expression without detectable structural alteration of the E-cadherin gene. These data provide support for classic two-hit inactivation of the E-cadherin gene in a high percentage of undifferentiated carcinomas of the scattered type.

Alleles↗

Molecular pathogenesis of adenoma and differentiated adenocarcinoma of the stomach.

Advances in molecular biology have revealed a consistent set of genetic alterations that may correspond to multistep tumor development. The pathogenesis of adenoma and differentiated adenocarcinoma of the stomach are reviewed from a genetic perspective with reference to the colorectal adenoma-carcinoma sequence. The sequential accumulation of genetic alterations characteristic of the colorectal adenoma-carcinoma sequence does not occur between adenoma and differentiated adenocarcinoma of the stomach, although adenomatous polyposis coll (APC) mutation in adenoma, and p53 mutation and loss of heterozygosity (LOH) of DCC (deleted in colorectal cancer) gene in carcinoma are prevalent genetic alterations. Allelotype, LOH and microsatellite analyses have revealed several chromosomal regions of deletion, as well as genetic instability, that accumulate during the development and progression of differentiated adenocarcinomas. However, these alterations are rarely found in adenomas of the stomach. These findings suggest that the adenoma-carcinoma sequence is relatively rare in gastric carcinogenesis, and that most differentiated adenocarcinomas of the stomach develop through a de novo pathway.

Adenocarcinoma↗

A neurokinin 1-receptor antagonist improves exercise-induced airway narrowing in asthmatic patients.

Recent reports suggest the involvement of vascular phenomena in exercise-induced asthma. Sensory neuropeptides, such as substance P (SP), which causes airway vascular dilatation and plasma leakage, have been demonstrated to play a role in hyperpnea-induced airway narrowing in animal studies. The purpose of this study was to investigate the importance of tachykinins in exercise-induced airway narrowing in patients with asthma using a selective neurokinin 1-receptor (NK1-receptor) antagonist, FK-888. In a double-blind, placebo-controlled, crossover trial, nine subjects with stable asthma were given FK-888 (2.5 mg) or placebo by inhalation 20 min before each exercise at a level previously demonstrated to cause a fall of at least 40% in specific airway conduction (SGaw). Inhalation of FK-888 had no significant effect on baseline SGaw. While the recovery from exercise-induced airway narrowing was significantly faster after treatment with FK-888 the area under the curve for SGaw during the 50 min after exercise was significantly reduced (p<0.05) and the time taken for the SGaw to recover to within 65% of baseline after exercise was also significantly shorter with FK-888 than the placebo (p<0.05). However, treatment with FK-888 did not significantly attenuate the maximal fall in SGaw. These results suggest that NK1-receptor-mediated mechanisms are involved in the recovery phase of exercise-induced airway narrowing. The possible mechanisms of these phenomena are discussed.

Administration, Inhalation↗

Nitrogen dioxide exposure increases airway contractile response to histamine by decreasing histamine N-methyltransferase activity in guinea pigs.

To determine the mechanism responsible for nitrogen dioxide (NO2)-induced airway hyperresponsiveness, we examined the effects of NO2 exposure on the contractile response to histamine and the level of histamine N-methyltransferase (HMT) activity, a histamine-degrading enzyme, in guinea pig trachea in vitro. Guinea pigs were divided into seven groups. Each group received continuous NO2 exposure (2.0 ppm) for either 2, 6, 12, 24, 48, or 96 h. The remaining group did not receive NO2 exposure (control). HMT activity in trachea was decreased from the control value of 70.3 +/- 7.7 pmol/min/mg protein to 34.6 +/- 6.7 pmol/min/mg protein by 12 h exposures of NO2. However, 24 and 48 h exposures of NO2 did not significantly alter HMT activity. In contrast, HMT activity exceeded the control value by 96 h exposures of NO2 (85.5 +/- 5.1 pmol/min/mg protein). Twelve hour exposures of NO2 shifted the concentration-response curves to histamine to lower concentrations and significantly reduced the median effective concentration (EC50) of histamine (log M) from the control value of -5.16 +/- 0.09 to -6.15 +/- 0.14 (P < 0.01). In contrast, the EC50 concentration of histamine (log M) increased from the control value of -5.20 +/- 0.10 to -4.90 +/- 0.11 by 96 h exposures of NO2 (P < 0.05). However, NO2 exposure did not alter the contractile response to acetylcholine. Morphologically, tracheal epithelial cells had vacuoles after 12 h exposures of NO2, but denudation of the epithelium did not occur during this experiment. In situ hybridization for HMT mRNA demonstrated that the level of HMT mRNA increased dominantly in tracheal epithelial cells after 96 h exposures of NO2. The present results indicated that the decrease in the level of HMT activity in the trachea was closely associated with the increase in the airway contractile response to histamine, suggesting that NO2-induced transient airway hyperresponsiveness to histamine is due to the decreased capacity of histamine catabolism in airway.

Animals↗

Transforming growth factor beta 1 (TGF beta 1) gene expression by eosinophils in asthmatic airway inflammation.

The increase in thickness of bronchial walls by such structural changes as subepithelial fibrosis contributes to the severity and chronicity of asthma by amplifying airway narrowing. However, the pathogenesis of this structural alteration is not known. Transforming growth factor beta 1 (TGF beta 1) is known to have biologic activities relevant to the cellular and molecular events in subepithelial fibrosis, such as the deposition of collagen I and III and the increase of myofibroblasts beneath the epithelial basement membrane. Therefore, we examined TGF beta 1 gene expression in bronchial biopsy tissues from five severe asthmatics, five mild asthmatics, and five normal subjects using in situ hybridization combined with histochemical staining. Cells expressing TGF beta 1 mRNA were detected in tissues from four normal subjects, one mild asthmatic, and five severe asthmatics. The density of positive cells in severe asthmatic tissues (52.1 +/- 22.7, mean +/- SD/mm2) was significantly greater than that in mild asthmatic tissues (1.0 +/- 1.9/mm2, P < 0.01) or normal tissues (10.5 +/- 10.6/mm2, P < 0.02). The density in mild asthmatic tissues was not significantly different from that in normal tissues. The vast majority of positive cells in severe (99.1 +/- 1.7%) and mild (100%) asthmatic tissues were identified as eosinophils. In contrast, eosinophils constituted a small portion of positive cells (20.8 +/- 21.6%) in normal tissues. These results indicated that TGF beta 1 mRNA was overexpressed in severe asthmatics and that the main source of the mRNA was eosinophils, suggesting that eosinophils play an important role in the pathogenesis not only of inflammation but also of structural changes, such as subepithelial fibrosis, in asthmatic airways.

Adult↗

[Apoptosis in the process from viral myocarditis to dilated cardiomyopathy].

Detection of viral genomic RNAs in myocardium of dilated cardiomyopathy (DCM) suggested the relationship between DCM and viral myocarditis. The viral infection may cause cytokine expression followed by induction of inducible nitric oxide synthase (iNOS) and expression of Fas antigen. The iNOS has potent and long-lasting effects on NO generation, has cytotoxic effects and triggers apoptosis in car diomyocytes. In addition, the expression of Fas antigen directly induces apoptosis.

Apoptosis↗

Angiomyolipoma arising in the colon.

Extrarenal angiomyolipomas are very rare. Here we report the first case of surgically resected angiomyolipoma of the descending colon that developed in a 50-yr-old man. The patient had no signs of or family history of tuberous sclerosis. He underwent a partial colectomy because the tumor obstructed the colon. Histologically, the tumor consisted of three components: mature fat cells, blood vessels, and smooth muscle cells, and was thereby diagnosed as an angiomyolipoma. Immunohistochemically, the proliferating smooth muscle cells were positive for vimentin, alpha-smooth muscle actin, and desmin. The tumor cells were negative for HMB-45, which is consistently expressed in renal angiomyolipomas.

Angiomyolipoma↗