PubMed Health⌕ Search

Biomedical subjects

T Ushijima

Publications and source records attributed to T Ushijima.

At least 19 recordsLinked to original sources

Attractin/mahogany/zitter plays a critical role in myelination of the central nervous system.

The rat zitter (zi) mutation induces hypomyelination and vacuolation in the central nervous system (CNS), which result in early-onset tremor and progressive flaccid paresis. By positional cloning, we found a marked decrease in Attractin (Atrn) mRNA in the brain of the zi/zi rat and identified zi as an 8-bp deletion at a splice donor site of Atrn. Atrn has been known to play multiple roles in regulating physiological processes that are involved in monocyte-T cell interaction, agouti-related hair pigmentation, and control of energy homeostasis. Rat Atrn gene encoded two isoforms, a secreted and a membrane form, as a result of alternative splicing. The zi mutation at the Atrn locus darkened coat color when introduced into agouti rats, as also described in mahogany (mg) mice, carrying the homozygous mutation at the Atrn locus. Transgenic rescue experiments showed that the membrane-type Atrn complemented both neurological alteration and abnormal pigmentation in zi/zi rats, but that the secreted-type Atrn complemented neither mutant phenotype. Furthermore, we discovered that mg mice exhibited hypomyelination and vacuolation in the CNS associated with body tremor. We conclude from these results that the membrane Atrn has a critical role in normal myelination in the CNS and would provide insights into the physiology of myelination as well as the etiology of myelin diseases.

Agouti Signaling Protein↗

Interpretation of mutational spectra from different genes: analyses of PhIP-induced mutational specificity in the lacI and cII transgenes from colon of Big Blue rats.

The cII assay provides an alternative choice to the lacI transgene for mutational studies involving Big Blue(R) transgenic mice and rats, or permits the evaluation of mutational responses in both genes. Here, we compare the mutational response of the cII gene from colon of Big Blue(R) F344 rats treated with a dietary mutagen and animal carcinogen, 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP), to those previously determined in the lacI transgene from colon of the same group of animals. A cursory inspection of PhIP-induced mutational spectra (MS) in cII and lacI suggests that the two transgenes respond differently to PhIP-induced mutation. However, a more thorough analysis of the MS in the two transgenes, including consideration of the number of mutational target sequences in each gene and nearest neighbor analyses of mutated nucleotides, indicates that PhIP-induced mutational specificity is similar in both genes. The evaluation of PhIP-induced mutational responses in these two transgenes serves as a model for intergenic mutational analyses.

Animals↗

Acquired loss of p53 induces blastic transformation in p210(bcr/abl)-expressing hematopoietic cells: a transgenic study for blast crisis of human CML.

Chronic myelogenous leukemia (CML) begins with an indolent chronic phase but inevitably progresses to a fatal blast crisis. Although the Philadelphia chromosome, which generates p210(bcr/abl), is a unique chromosomal abnormality in the chronic phase, additional chromosomal abnormalities are frequently detected in the blast crisis, suggesting that superimposed genetic events are responsible for disease progression. To investigate whether loss of p53 plays a role in the evolution of CML, we crossmated p210(bcr/abl)-transgenic (BCR/ABL(tg/-)) mice with p53-heterozygous (p53(+/-)) mice and generated p210(bcr/abl)-transgenic, p53-heterozygous (BCR/ABL(tg/-)p53(+/-)) mice, in which a somatic alteration in the residual normal p53 allele directly abrogates p53 function. The BCR/ABL(tg/-)p53(+/-) mice died in a short period compared with their wild-type (BCR/ABL(-/-)p53(+/+)), p53 heterozygous (BCR/ABL(-/-)p53(+/-)), and p210(bcr/abl) transgenic (BCR/ABL(tg/-)p53(+/+)) litter mates. They had rapid proliferation of blast cells, which was preceded by subclinical or clinical signs of a myeloproliferative disorder resembling human CML. The blast cells were clonal in origin and expressed p210(bcr/abl) with an increased kinase activity. Interestingly, the residual normal p53 allele was frequently and preferentially lost in the tumor tissues, implying that a certain mechanism facilitating the loss of p53 allele exists in p210(bcr/abl)-expressing hematopoietic cells. Our study presents in vivo evidence that acquired loss of p53 contributes to the blastic transformation of p210(bcr/abl)-expressing hematopoietic cells and provides insights into the molecular mechanism for blast crisis of human CML. (Blood. 2000;95:1144-1150)

Animals↗

Chromosomal mapping of genes controlling development, histological grade, depth of invasion, and size of rat stomach carcinomas.

Rat stomach cancers induced by N-methyl-N'-nitro-N-nitrosoguanidine (MNNG) are widely used as a model of differentiated-type human stomach cancers. ACI/N (ACT) rats are susceptible and BUF/Nac (BUF) rats are resistant to MNNG-induced stomach carcinogenesis, and the presence of an autosomal gene with a dominant BUF allele has been suggested. In this study, we performed a carcinogenicity test by giving MNNG in drinking water to 117 male ACI x (ACIxBUF)F1 backcross rats. Each of 100 effective rats was diagnosed for its "carcinoma development" and when it was bearing stomach carcinoma(s), for histological grade, depth of invasion, and size and number of tumors. Carcinoma development was diagnosed based both on the age of the rat and on the presence of stomach carcinoma(s). Linkage analysis was performed with the genotypes of 161 loci, covering 1637 cM of the rat genome. Contrary to our original expectations, the most influential gene was the one on chromosome (chr.) 15, Gastric cancer susceptibility gene 1 (Gcs1), which confers susceptibility to stomach carcinogenesis (LOD, 3.8) with a dominant BUF allele by promoting conversion from adenomas to carcinomas. Two resistance genes on chr. 4 and chr. 3, Gastric cancer resistance gene 1 (Gcr1) and Gcr2, were shown to confer dominant resistance (LOD, 2.7 and 2.6, respectively). Gcs1, Gcr1, and Gcr2 exerted additive effects on the development of stomach carcinomas. A gene on chr. 16, Gcr3, was indicated to reduce the depth of invasion (LOD, 2.2) and sizes of tumors (LOD, 1.9). No linkage was obtained using the number of tumors. These findings show that the coordinate effect of a susceptibility gene, Gcs1, and two resistance genes, Gcr1 and Gcr2, is responsible for the development of MNNG-induced stomach carcinomas and that Gcr3 is responsible for the growth of a stomach carcinoma, reflected in the depth of invasion and in the tumor size.

Animals↗

Mutation induction by mechanical irritation caused by uracil-induced urolithiasis in Big Blue rats.

Some chronic mechanical irritations induce cancers, and it is speculated that mutations are induced by increased rate of cell proliferation caused by the irritation. In this study, it was investigated using chronic mechanical irritation to urothelium caused by urolithiasis, whether mutations are really induced by such cell proliferation or not. Male rats transgenic for lacI (Big Blue(R) rats), in which lacI mutations accumulated in tissue can be measured, were fed 3% uracil, a component of RNA, to induce urolithiasis associated with papillomatosis, and eventually with bladder cancers. The frequency of independent mutations in the bladders of the treated rats showed 3-5 fold increases at weeks 10, 20, and 51 (P=0.01 at week 51) while the frequency was not elevated at week 2. The mutation frequencies in the control bladders ranged from 3 to 9x10(-6). In both groups, G to A transitions at CpG sites, indicative of spontaneous mutations, constituted the most prevalent mutations. Mechanical irritation caused by uracil was shown to induce a 3-5 fold increase of mutations, possibly through an elevation of spontaneous mutations by vigorous cell proliferation.

Animals↗

Construction of a high-throughput rat genetic mapping system with 466 arbitrarily primed-representational difference analysis markers.

Linkage mapping of quantitative trait loci (QTLs) requires genetic markers that can be efficiently genotyped for a large number of individuals. To isolate genetic markers suitable for this purpose, we previously established the arbitrarily primed RDA (AP-RDA) method. Dot-blotting AP-PCR products (AP-amplicons) onto filters at a high density and hybridization of the filters with the AP-RDA markers made it possible to genotype a large number of individuals simultaneously for multiple loci. In this study, by using 25 primers or primer combinations, we isolated a total of 419 AP-RDA markers by subtracting the AP-amplicon of BUF rats from that of ACI rats, and vice versa. By combining 47 previously isolated markers, a rat genetic map was drawn with 466 AP-RDA markers. Between two given strains of rats other than ACI and BUF, the average informativeness of the markers was 38%. As for the intercross of ACI and BUF rats, 12 selected primers served to genotype 259 loci. In addition, the amounts and quality of genomic DNA to be used for AP-PCR were examined to guarantee reliable genotyping. Now, initial genome scanning of the rat for linkage analysis can be performed efficiently using this mapping system with AP-RDA markers.

Animals↗

Genetic and epigenetic alterations in carcinogenesis.

Precise and deliberate observations on tumors stand true for decades, and then meet mechanistic explanations. The presence of genetic alterations in tumors is now widely accepted, and explains the irreversible nature of tumors. However, observations on tissue differentiation indicated that it shares something in common with carcinogenesis, that is, "epigenetic" changes. Now, DNA methylation in CpG sites is known to be precisely regulated in tissue differentiation, and is supposed to be playing key roles. Many tumor suppressor genes are known to be inactivated by the hypermethylation of their promoter regions. DNA methylation is connected to histone deacetylation and chromatin structure, and regulatory enzymes of DNA methylation are being cloned. Dedifferentiation, dis(dys)differentiation and convergence of cancer cells were studied phenotypically and biochemically, and are now explained from molecular aspects of disturbances in tissue-specific transcription factors. Spontaneous regression of malignant tumors enchanted researchers, and it is now noticed that genes inactivated by hypermethylation are frequently involved in tumors that relatively often undergo spontaneous regression. Carcinogenic mechanisms of some carcinogens seem to involve modifications of epigenetic switch, and some dietary factors also have the possibility to modify the switches. Based on the growing understanding of the roles of DNA methylation, several new methodologies were developed to make a genome-wide search for changes in DNA methylation. Now, a wave of new findings is in sight.

DNA Methylation↗

Characterization of antibody responses against rectal mucosa-associated bacterial flora in patients with ulcerative colitis.

BACKGROUND: Previous reports on faecal microflora have demonstrated that the total number of aerobes and coliforms was increased in patients with ulcerative colitis (UC). Based on the hypothesis that the pathogenesis of UC may be closely associated with the mucosal microflora, we investigated alterations in the mucosa-associated microflora of UC patients. METHODS AND RESULTS: The bacterial counts for both aerobes and anaerobes increased in UC patients. In particular, we detected the highest bacterial counts of Bacteroides vulgatus and these bacteria were isolated most frequently. In addition, we also investigated the serum antibody responses against the bacteria isolated from the affected mucosa by serum bacterial agglutination tests and immunoblotting. A high agglutination titre against B. vulgatus, Bacteroides fragilis, and Clostridium ramosum was detected in most UC patients, and the percentage of positive immunoreactivity was much higher in UC patients than in healthy controls. From the results of the immunoblotting, a unique antigenic determinant of B. vulgatus (BV43-26), a 26-kDa protein from the outer membrane, was discovered. The serum immunoreactivity (immunoglobulin (Ig) G) against this 26-kDa protein was much higher in UC patients (53.8%) than in the control sera (9.1%). The serum immunoreactivity (IgG) against a 50-kDa protein isolated from the whole cell protein of Escherichia coli (EC48-1) was also higher in UC patients (29.2%) than in normal controls (6.3%). CONCLUSIONS: These results suggest that B. vulgatus and a specific antibody response directed against it may play an important role in the pathogenesis of UC.

Adolescent↗

Atypical medullary carcinoma of the breast with cartilaginous metaplasia in a patient with a BRCA1 germline mutation.

We examined a 34-year-old premenopausal woman who had noticed a left-breast lump a month previously. She had no past history of malignancies but had a family history of breast and ovarian cancers. Her mother had suffered from ovarian cancer when aged 47 years and had died of the disease at age 52. The younger two of the patient's four aunts had developed breast cancer when they were 37 and 48 years old. A physical examination showed an ill-defined mass, 1.5 cm in diameter, located in the upper outer quadrant of the patient's left breast. Mammography revealed diffuse microcalcification in both breasts but ultrasonography revealed an irregular tumorous lesion only in the left breast. Aspiration breast cytology revealed adenocarcinoma of the left breast. Modified radical mastectomy of the left breast and excision of a biopsy specimen from the right breast were carried out simultaneously. Histopathologically the left-breast tumor was an atypical medullary carcinoma with cartilaginous metaplasia, of histological grade 3, and the right-breast specimen showed fibrocystic changes with atypical ductal hyperplasia. Estrogen receptors were positive, but progesterone receptor was not detected on the tumor cells, which were immunopositive for nuclear p53 although c-erbB-2 overexpression was not observed. A nonsense germline mutation of the BRCA1 gene (exon5) was detected. The patient has been well since the operation (10 months). These findings may provide useful information about the carcinogenesis and biological behavior of BRCA1-associated breast cancers.

Adenocarcinoma↗

Hypomethylation of LINE1 retrotransposon in human hepatocellular carcinomas, but not in surrounding liver cirrhosis.

BACKGROUND: Cytosine methylation of LINE1 (L1) elements, some of which are capable of retrotransposition in human cells, is known to play important roles in transcriptional repression of these retrotransposons. We have previously identified consistent hypomethylation of L1 elements in mouse liver tumors by a genome-wide search technique for aberrant methylations. In this study, we analyzed the methylation status of the L1 elements in human hepatocellular carcinomas (HCCs). METHODS: Nine pairs of an HCC and its surrounding tissue were obtained from clinical cases. Genomic DNA was digested with HpaII, a methylation-sensitive restriction enzyme, and hybridized with a probe derived from the promoter region of the L1 elements. RESULTS: Hypomethylation of the L1 elements was detected in eight of the nine HCCs, but never in the surrounding liver tissues, whether or not liver cirrhosis was present. CONCLUSION: Specific occurrence of the hypomethylation of the L1 elements in the HCCs indicated its diagnostic value for malignancy. The hypomethylation could also lead to increased incidence of retrotransposition and resultant genomic instability in HCCs.

Aged↗

Generation of a polymorphic marker linked to thymoma susceptibility gene of rat 1 by genetically-directed representational difference analysis.

BUF/Mna (BUF) is a rat strain susceptible to spontaneous development of thymomas. We have previously shown that the thymoma susceptibility is controlled principally by a dominant susceptibility gene located on chromosome 7, thymoma susceptibility gene of rat 1 (Tsr1). To generate genetic markers tightly linked to Tsr1, we performed genetically directed representational difference analysis (GDRDA) with three combinations of the tester and driver DNAs. From 124 ¿ACI/NMs x (BUF x ACI/NMs) F1¿ backcross rats, 12 rats with the ACI/BUF genotype in the Tsr1 region (A/B rats) and 13 rats with the ACI/ACI genotype in the region (A/A rats) were selected, and their DNAs were pooled, respectively. Three kinds of tester DNAs, i) inbred BUF, ii) (BUF x ACI)F1, and iii) the pool from the A/B rats, were subtracted by the driver DNA prepared from the pool of the A/A rats. The three combinations yielded one, two, and one polymorphic marker(s), respectively. One marker, D7Ncc28, was isolated commonly by the three combinations of subtraction, and another marker, D11Ncc12 was isolated only by the second combination. Linkage analysis demonstrated that D7Ncc28 was located in the 8.3 cM region where Tsr1 has been mapped. The three combinations of subtraction were shown to be almost equally capable of isolating polymorphic markers in a specific chromosomal region.

Animals↗

Development of the arbitrarily primed-representational difference analysis method and chromosomal mapping of isolated high throughput rat genetic markers.

Linkage mapping of quantitative trait loci requires analysis of a large number of animals. Although genetic markers isolated by representational difference analysis (RDA) and its modifications meet the needs, the number of these markers has been limited. In the present study, we established the arbitrarily primed (AP)-RDA method to isolate virtually an unlimited number of the high throughput genetic markers. A representation of the genome, an AP-amplicon, was prepared by AP-PCR with a single primer or with a combination of primers using genomic DNA of the ACI/N (ACI) or BUF/Nac (BUF) rat as a template. By subtracting the AP-amplicon of ACI from that of BUF, a total of 40 polymorphic and independent markers were isolated in seven series of AP-RDA using a single primer. Two series of AP-RDA with primer combination yielded seven additional independent markers. All of the markers gave clear positive/negative signals by hybridization of a filter where AP-amplicons from F2 rats of ACI and BUF were dot-blotted at a high density without any concentration or purification. All of the 47 independent markers were mapped to unique chromosomal positions by linkage analysis, even though some arbitrary primers had very similar sequences. The markers were also informative between other strains of rats. Simultaneous hybridization of multiple filters made it possible to genotype a large number of rats simultaneously for multiple genetic loci. The AP-RDA method promises isolation of a large number of high throughput genetic markers in any species and is expected to facilitate linkage mapping of subtle quantitative trait loci.

Animals↗

Frequent mutations of the rat beta-catenin gene in colon cancers induced by methylazoxymethanol acetate plus 1-hydroxyanthraquinone.

Recent evidence suggests that the beta-catenin gene (CTNNB1) acts as an oncogene, and some human colon tumors with an intact APC gene have activating mutations in CTNNB1. In this study, mutations in the region corresponding to N-terminal phosphorylation sites (codons 1-51) of the rat Ctnnb1 gene were investigated in 20 colon tumors associated with ulcerative colitis and induced with methylazoxymethanol acetate and 1-hydroxyanthraquinone. Ninety percent (18 of 20) of the tumors induced in male F344 rats harbored mutations, which were detected in three of four adenomas (75%) and 15 of 16 adenocarcinomas (94%). Of 18 total missense mutations, 13 (72%) were G-->A transitions at position 101, three were G-->A transitions at position 94, and two were C-->T transitions at position 122, resulting in the amino acid substitutions Gly34-->Glu, Asp32-->Asn, and Thr41-->Ile, respectively. Although there were no mutations in the Apc gene, as we previously reported in the same tumor samples, the results obtained in this study strongly implicate the Apc-beta-catenin-T-cell factor (Tcf) signaling pathway in methylazoxymethanol acetate, 1-hydroxyanthraquinone-induced colon carcinogenesis.

Adenocarcinoma↗

Rare mutations of p53, Ki-ras, and beta-catenin genes and absence of K-sam and c-erbB-2 amplification in N-methyl-N'-nitro-N-nitrosoguanidine-induced rat stomach cancers.

Rat stomach cancers induced by N-methyl-N'-nitro-N-nitrosoguanidine (MNNG) have been widely used as a model for human stomach cancers of the differentiated type. However, there has been little information regarding their molecular basis. In this study, we examined the genetic alterations reported in human stomach cancers in 10 rat stomach cancers that had been induced in male ACI/N rats by administering MNNG in the drinking water. One of the 10 cancers had a mutation of the p53 gene at the second position of codon 171 (Val --> Glu). However, none of the 10 cancers had mutations in codons 12, 13, or 61 of Ki-ras or in the N-terminal phosphorylation sites of the beta-catenin gene. Southern blot analysis showed no amplification of K-sam or c-erbB-2 in the seven cancers examined. Finally, we searched for microsatellite alterations in 12 loci in nine cancers, but no alterations were observed. As these genetic alterations are observed in only a minor fraction of human stomach cancers, further analysis of genetic and epigenetic alterations in MNNG-induced rat stomach cancers is needed to disclose the major mechanisms of stomach carcinogenesis.

Animals↗

Arterial revascularization. 18-year experience with coronary artery bypass grafting in familial hypercholesterolemia.

Familial hypercholesterolemia is characterized by a high plasma level of cholesterol and is frequently associated with rapidly progressing coronary heart disease. The internal thoracic artery is recognized as the conduit of choice for coronary artery bypass grafting. This study was performed to determine whether multiple arterial grafting was associated or not with additional benefits for patients with familial hypercholesterolemia. Between June 1980 and March 1998, 95 patients with familial hypercholesterolemia. underwent a total of 103 coronary artery bypass procedures with one hospital death. The patients were divided into 3 groups according to the type of bypass graft. Group 1 included 31 patients with only saphenous vein grafts; Group 2,48 patients with one arterial graft and supplemental vein grafts; and Group 3, 24 patients with multiple arterial grafts. The overall actuarial survival rate was 90.9% at 10 years and 81.8% at 18 years. The overall actuarial freedom from recurrent angina was 68.9% at 10 years and 55.8% at 16 years. The actuarial survival rate in group 2 was higher than that in Group 1 (p < 0.05). There was no difference in the actuarial survival or in the freedom from cardiac events between Group 2 and Group 3. Single arterial grafting improved the long-term survival in patients with familial hypercholesterolemia. However, no additional benefit from multiple arterial grafting was identified.

Coronary Artery Bypass↗

Closely linked polymorphic markers for determining the autosomal dominant allele (Cy) in rat polycystic kidney disease.

The Han:SPRD strain is an SD-background strain known to be a model of polycystic kidney disease (PKD) expressed through an autosomal dominant gene (Cy). However, different genotypes of this strain cannot be identified in the neonatal period. First, to establish an accurate method of determining the genotypes (Cy/Cy, Cy/+, +/+) which cause different disease progressions, we used polymorphic markers on rat chromosome 5. PCR products of tissue DNA templated with D5Rat9 showed distinct patterns on electrophoresis indicating three genotypes. Second, to determine whether the same locus plays a major role in expressing PKD, we performed linkage analyses in a [BN x (BN x Han:SPRD)F1] backcross. Cy/Cy and Cy/+ also caused PKD in a BN background. In this backcross, we discovered that D5Rat11 is located closer to the Cy locus than D5Mgh10, which is regarded as one of the closest loci. We conclude that D5Rat9 and D5Rat11 are useful markers for determining the presence of the Cy allele, which is regarded as the gene responsible for PKD.

Alleles↗

Preferential induction of guanine deletion at 5'-GGGA-3' in rat mammary glands by 2-amino- 1-methyl-6-phenylimidazo[4,5-b]pyridine.

2-Amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP) is known to induce a characteristic mutation, G deletion at the 5'-GGGA-3' site, preferentially in the lacI transgene of the colonic mucosa of Big Blue((R)) rats (BBR) and mice and specifically in the Apc gene of rat colon tumors. In this study, lacI mutations of the mammary glands in PhIP-treated rats were investigated. Six-week-old female (BBRxSprague-Dawley)F(1) rats were administered 10 gavages of 65 mg/kg/day PhIP. Mammary ducts were collected from the macroscopically normal mammary tissue of PhIP-treated and untreated rats at 56-69 weeks of age by collagenase treatment. The mutant frequencies were 25 +/- 2.1x10(-6) in control rats and 323 +/- 44x10(-6) in the PhIP-treated rats. By sequencing 40 and 177 mutants in the control and PhIP-treated groups, respectively, 34 and 149 mutations were considered independent mutations. In the control group, G:C-->A:T transitions at CpG sites dominated and no G:C deletions were detected. In the PhIP-treated group, G:C-->T:A transversions were most frequent (43%), followed by single base pair deletions of G:C (21%). A total of nine deletions were at 5'-GGGA-3' sites, accounting for 29% of the G:C deletions and 6% of the 149 total mutations. Clusters of more than three mutations at one nucleotide position were observed at 12 positions and two were G deletions at 5'-GGGA-3' sites. Comparison of the PhIP-induced mutations in the mammary glands with those previously reported in the colon revealed that G:C-->T:A transversions occurred at a significantly higher frequency in the mammary glands and that G:C deletions occurred at a significantly lower frequency. However, the signature mutation, G deletion at the 5'-GGGA-3' site, was commonly observed in both tissues.

Animals↗

Difference in target organs in carcinogenesis with a heterocyclic amine, 2-amino-3,4-dimethylimidazo[4,5-f]quinoline, in different strains of mice.

2-Amino-3,4-dimethylimidazo[4,5-f]quinoline (MeIQ) induces cancers in the forestomach and liver, but not in the colon, of CDF1 male and female mice, which are thought to be resistant to induction of colon cancer by 1,2-dimethylhydrazine. In this study, we examined the carcinogenicity of MeIQ in C57BL/6N female mice, which are susceptible to 1,2-dimethylhydrazine. This strain of mice developed carcinomas of the cecum, colon and liver, but not the forestomach, when given a diet containing 300 ppm of MeIQ. This fact indicates that the target organs of a chemical carcinogen change depending on the strain of a given animal species.

1,2-Dimethylhydrazine↗