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J Toguchida

Publications and source records attributed to J Toguchida.

At least 55 records · Page 3Linked to original sources

Changes in bone after high-dose irradiation. Biomechanics and histomorphology.

We studied the effects of high-dose irradiation on the mechanical properties and morphology of cortical bone in rabbits for 52 weeks after a single dose of 50 Gy of electron-beam to the tibia. After four weeks, the bending strength of the irradiated bone was unchanged, but at 12 weeks, the strength had decreased significantly. At 24 weeks after irradiation mean strength was less than half of controls but by 52 weeks there was a tendency toward recovery. Similar, synchronous changes of damage and recovery were seen in cortical porosity, haematopoietic cells in the bone marrow and endosteal new bone formation.

Animals↗

Allele-specific hypermethylation of the retinoblastoma tumor-suppressor gene.

Inactivation of the retinoblastoma gene appears to have a fundamental role in the genesis of retinoblastoma, osteosarcoma, and other malignant tumors. The gene is generally inactivated because of loss-of-function mutations, although epigenetic phenomena, such as hypermethylation of the promoter region, could possibly have the same effect. We investigated the methylation pattern at the 5' end of the retinoblastoma gene, including its promoter region and exon 1, in DNA purified from 56 primary retinoblastomas. We found five tumors with evidence for hypermethylation, all from unilateral, simplex patients. No methylation abnormalities were detected in DNA purified from the leukocytes from these patients. It is interesting that in one of these tumors the hypermethylation was confined to one allele. There were no mutations in a 1,306-bp sequence including the hypermethylated region that might account for the allele-specific hypermethylation. We believe that the hypermethylation of the retinoblastoma gene that we found in these tumors corresponds to the allelic inactivation of the gene, and we speculate that erroneous hypermethylation without alteration of nucleotide sequence occasionally plays a role in the genesis of this cancer. If this is true, then retinoblastomas with hypermethylation might be treatable with chemotherapeutic agents that interfere with methylation of DNA.

Alleles↗

Frequency and structure of p53 rearrangements in human osteosarcoma.

Osteosarcoma is the most frequent childhood bone cancer (Tebbi, C. K., and Gaeta, J. Pediatr. Ann., 17:285-300, 1988). Using Southern blot mapping, we found that 11 of 60 (18%) osteosarcomas had altered restriction patterns of the p53 gene and that six of these had loss of the other p53 allele. In contrast, no alteration of the p53 gene was detected in 50 samples from other types of sarcomas. Fifty % of osteosarcoma cell lines (4 of 8) also had gross rearrangements of one p53 allele with loss of the second allele, and these had no detectable p53 mRNA. Osteosarcoma cell lines with no detectable alteration of the p53 gene contained abundant p53 transcripts. Taken together, data show that human osteosarcomas can have rearrangements of the p53 gene; these rearrangements may cause loss of normal constraints on cellular growth.

Cell Line↗

Elevated frequency of a specific allele of the L-myc gene in male patients with bone and soft-tissue sarcomas.

Restriction fragment length polymorphisms (RFLPs) of 2 oncogenes, c-Ha-ras and L-myc, have been analyzed in 101 patients with bone and soft-tissue sarcoma and in 98 normal individuals. The c-Ha-ras gene was highly polymorphic both in sarcoma patients and in normal individuals. In contrast to our previous observation in breast cancer patients (Honda et al., 1988), no significant difference in allele frequencies between normal and sarcoma populations was observed. The L-myc locus revealed 2-allele polymorphism, allele L (10-kb) and S (6.6-kb), after digestion with Eco RI. The allele frequencies of L and S in sarcoma patients were 0.381 and 0.619, respectively, and those in normal individuals were 0.485 and 0.515, respectively. While the distributions of alleles in both populations fitted well with the Hardy-Weinberg equilibrium, the frequency of the S allele was significantly higher in sarcoma patients than in normal individuals (p less than 0.05). When sarcoma patients were divided into male and female subpopulations, this difference was highly significant only in males (p less than 0.01) but not in females. Our results suggest that males carrying the S allele may be prone to develop sarcoma.

Alleles↗

Assignment of common allele loss in osteosarcoma to the subregion 17p13.

Human osteosarcomas frequently show loss of alleles on chromosome 17 as well as those on chromosome 13 that harbors the retinoblastoma gene, indicating concerted operation of another tumor-suppressing gene on chromosome 17. To assign the affected gene to a defined region of chromosome 17, we performed mitotic recombination/deletion mapping by the use of 10 polymorphic loci on chromosome 17. Of 37 tumors studied, 28 (75.7%) showed loss of heterozygosity on chromosome 17. The affected regions varied among tumors, ranging in extent from a whole chromosome to a distal segment of the short arm. However, allele loss in one region, notably in 17p13 between D17S1 and D17S30, was common to all 28 tumors, suggesting the presence of a tumor-suppressing gene in this defined region.

Alleles↗

Preferential mutation of paternally derived RB gene as the initial event in sporadic osteosarcoma.

Successive loss of function of both alleles of the retinoblastoma susceptibility gene (RB) on human chromosome 13 seems to be critical in the development of retinoblastoma and osteosarcoma. In cases where the tumour is familial and susceptibility is inherited, a mutation in one of the alleles is carried in the germline. We have recently shown that cytogenetically visible germline mutations are usually in the paternally derived gene. Such a bias would not be expected for sporadic (non-familial) tumours, where both mutations occur in somatic tissue, but there has been some indication of a bias towards initial somatic mutation in the paternally derived gene on chromosome 11 in sporadic Wilms tumour. We have now examined 13 sporadic osteosarcomas and find evidence which indicates that in 12 cases the initial mutation was in the paternal gene, suggesting the involvement of germinal imprinting in producing the differential susceptibility of the two genes to mutation.

Blotting, Southern↗

Somatic mosaicism for DNA repair capacity in fibroblasts derived from a group A xeroderma pigmentosum patient.

A female Japanese xeroderma pigmentosum (XP) patient with severe skin lesions and various neurologic abnormalities was assigned to complementation group A by conventional cell fusion studies. Ultraviolet (UV)-irradiated skin fibroblasts showed a biphasic survival curve, as measured by colony-forming ability. The surviving fraction decreased rapidly up to 2 J/m2 of UV, with a steep slope of D(O) (mean lethal dose) = 0.95 J/m2. At much higher doses it decreased more slowly, with D(O) = 3.5 J/m2. To èlucidate the cause of this unique survival response, we isolated a large number of independent clones from single colonies and measured their responses to UV. Of 81 clones analyzed, ten showed a marked resistance to killing by UV, which was only slightly more sensitive than normal cells, and these clones had a rate of unscheduled DNA synthesis (UDS) that was about 45% of normal cells. By contrast, the remaining 71 clones were extremely sensitive to UV, typical of XP group A strains, and had a UDS level 1%-3% of normals. Analysis of restriction fragment length polymorphism using seven polymorphic DNA probes indicated that the UV-resistant clones were derived from the same individual as the UV-sensitive clones. These results clearly demonstrate that this patient's fibroblast cells consist of two types with differing responses to UV, and provide direct evidence of somatic mosaicism for DNA repair capacity in an XP patient.

Cell Survival↗

[Recessive oncogene and loss of heterozygosity].

Recessive oncogene, which has been originally proposed for the retinoblastoma susceptibility gene, is linked to the development of cancer by missing its gene function followed by the loss of normal allele (often observed as a loss of heterozygosity of neighbouring heteromorphic loci). Recent studies on the loss of heterozygosity in cancers indicate that mutations of such genes are relatively common in human cancers, and play a significant role in the dedifferentiation, progression and evolution of cancers as well as the initiative role. Such initiative and cooperative role of recessive oncogene opened a new field relating to the research on the genetic origin of cancer, evolutional implications of cancer development, and molecular diagnosis for cancer prognosis.

Chromosome Deletion↗

[Loss of heterozygosity in the progression of tumors].

Based on the two mutation hypothesis in the development of retinoblastoma, loss of heterozygosity (LOH) of specific chromosome has been implicated in the presence of tumor suppressor gene. Studies on the LOH in different types of tumors revealed that LOH of each chromosome might play a different role in the multistep process of carcinogenesis: LOH of some chromosomes may play an etiological role in the development of some tumors, while that of other chromosomes or the same chromosome in other tumors, may play a role in the progression of tumors. LOH of chromosome 13 is an example for the former cases, and the latter cases involve LOH of chromosome 17 in colorectal carcinoma and osteosarcoma, chromosome 10 in glioblastoma, chromosome 1 in neuroblastoma and malignant melanoma, and chromosome 11 in breast carcinoma. These studies indicates that the progressive or concerted LOH could be a measure of the highly malignant or metastatic potentiality. However, it should be borne in mind that, especially in polyploid tumors, LOH also occurs as a random event following the polyploidization-segregation process.

Chromosomes, Human↗

Chromosomal reorganization for the expression of recessive mutation of retinoblastoma susceptibility gene in the development of osteosarcoma.

Recent evidence indicates that the mutation of retinoblastoma susceptibility (RB) gene is also involved in the development of osteosarcoma. We studied 30 cases of osteosarcoma for the structural anomalies of the RB gene by Southern hybridization analysis with cDNA probes of the RB gene. Thirteen cases (43%) showed structural anomalies of the RB gene. They included the total or partial deletion, or rearrangement of the RB gene; seven with homozygous deletions and six with hemizygous deletions or rearrangements. By the use of restriction fragment length polymorphism fragments as chromosome markers, those seven tumors having homozygous deletions and four of six tumors having hemizygous anomalies showed the loss of heterozygosity at other loci on chromosome 13. Among those tumors with no apparent structural changes of the RB gene, seven cases showed the loss of heterozygosity on chromosome 13, and altogether the loss of heterozygosity by either homozygosity or hemizygosity was found in 18 (64%) of 28 informative cases. The loss of heterozygosity was also found for nine of 10 other chromosomes, of which chromosome 17 showed the highest frequency (77%). The tumors with loss of chromosome 13 alleles also showed additional losses of alleles on other chromosomes, while tumors retaining heterozygosity of chromosome 13 also retained heterozygosity at the informative loci on other chromosomes. Southern hybridization and karyotype analysis in some selected cases suggest that the concerted loss of heterozygosity at multiple loci may be a consequence of the polyploidization-segregation process.

Adolescent↗

Increased frequency of specific alleles of the c-Ha-ras gene in Japanese cancer patients.

We have examined the c-Ha-ras locus in 145 cancer patients of a mixed group and 164 normal individuals in Japan for restriction fragment length polymorphisms and compared the allele distributions in normal and cancer populations. The c-Ha-ras gene is highly polymorphic in Japanese as previously reported in Caucasians. Two rare alleles were found to be present with increased frequencies in Japanese cancer patients. These results suggest that genotype analysis of the c-Ha-ras gene could be used to detect cancer-prone individuals.

Alleles↗

Uptake of 99Tcm-MDP in lung metastasis from osteosarcoma: clinical and animal studies.

Bone scintigraphy was performed in 17 patients with previously known lung metastases of osteosarcoma. 99Tcm-MDP uptake was observed in all primary bone lesions but lung metastatic lesions were positive in only six patients (35%). 99Tcm-MDP uptake by lung metastases was significantly correlated with bone and osteoid formation in the metastatic lesions and preoperative serum ALPase values. These clinical observations were confirmed by using nude mice transplanted with human lung metastatic osteosarcoma. 99Tcm-MDP scintigraphy appears to be useful for detecting lung metastases of osteosarcoma only in a selected group of patients.

Adolescent↗

Recognition of serum alkaline phosphatase by murine monoclonal antibodies against human osteosarcoma cells.

Using OST6 and OST7 monoclonal antibodies against human osteosarcoma cells, a solid-phase radioimmunosandwich assay was developed to quantitate a human osterosarcoma-associated antigen in a total of 242 sera from healthy adults and patients with various diseases. The levels of the antigen in sera were high in patients with osteosarcoma and in children without tumorous diseases compared with healthy adults; however, the highest level of the antigen was found in patients with obstructive jaundice. The quantity of the antigen correlated with serum alkaline phosphatase (EC 3.1.3.1.) activity, and showed a strong correlation (correlation coefficient, 0.94) in 50 sera. Immunolocalization of enzyme activity assay using monoclonal antibodies was performed to ascertain whether the antigen had alkaline phosphatase activity. This assay proved that OST6, OST7, and OST15 monoclonal antibodies recognized serum alkaline phosphatase; furthermore, these monoclonal antibodies seemed to react with not only the bone isoenzyme but also the liver isoenzyme.

Alkaline Phosphatase↗

Loss of heterozygosity and tumor suppressor gene mutations in chondrosarcomas.

Loss of heterozygosity (LOH) of chromosomes 13q and 17p and mutations of the retinoblastoma (Rb) and p53 gene were studied in 28 tumors from 22 patients with chondrosarcomas. Allele loss at polymorphic loci on 13q was found in 36% of tumors and the frequency was much higher in grade II (56%) or high grade (40%) tumors than in grade I tumors (18%). LOH of 17p, which was detected in 25% of all tumors, was of low frequency in low grade tumors (8% in grade I and 20% in grade II), whereas 80% of tumors with high grade tumors were positive for LOH. These observations may imply that LOH on 13q and 17p contributes to the tumor development at different stages. In low grade cases (grade I and II), tumor recurrence was observed more frequently in primary tumors with LOH on 13q (86%) than those without (8%), suggesting the significance of LOH analysis in the assessment of biological behavior of tumors. Structural alteration of the Rb gene was found in one dedifferentiated tumor, and point mutations of the p53 gene were found in all of five high grade tumors, indicating that high grade chondrosarcomas were genetically equivalent to other high grade sarcomas such as osteosarcomas.

Adolescent↗

Fracture healing is a process independent of p53 function.

We studied the role of the tumor suppressor gene p53 in the process of fracture healing using mice with a p53 gene deficiency. Fractures produced in femoral shafts of mice without a functional p53 gene (p53-/-) healed as well as those in wildtype mice (p53 +/+), and no tumor development was observed at the fracture site even after complete bone union. Formation of granulation tissue and cartilage, ossification and remodeling into mature trabecular and cortical bone showed no abnormalities in p53-/- mice. Apoptotic cells were found to be sparse in the ossifying zone of the fracture callus using in situ DNA nick end-labeling in mice of both genotypes, without any significant difference. These results indicate that apoptosis in fracture healing, even if it does play a significant role, occurs through a p53-independent pathway.

Animals↗