Search PubMed⌕ Search

Biomedical subjects

R Kominami

Publications and source records attributed to R Kominami.

At least 19 recordsLinked to original sources

Proliferation and differentiation of pituitary corticotrophs during the fetal and postnatal period: a quantitative immunocytochemical study.

To study the proliferation and differentiation of pituitary corticotrophs, we administered bromodeoxyuridine (BrdU) to pregnant rats at 15.5-21.5 days of gestation and to rat pups at 3, 7, and 28 days after birth. The pituitary sections of fetuses and pups were consecutively immunostained with anti-BrdU and anti-adrenocorticotropic hormone (ACTH) to detect proliferating cells and corticotrophs, respectively. The number of cells labeled with BrdU, ACTH, or both were counted. The diameters of their nuclei and the volume of the pituitary were measured. The BrdU-positive cells were around 76,000-96,000/mm3 during the period studied. The corticotrophs were first detected in the fetus at 15.5 days and they increased during the fetal and postnatal periods. The double-labeled cells were first detected in the 17.5-day fetus. They increased markedly at 19.5 days and comprised about one-quarter of the corticotrophs that increased in 24 h at this stage. These results indicate that: (1) at 15.5-18.5 days the corticotrophs were derived almost exclusively from undifferentiated cells; (2) during the later fetal and early postnatal periods, the proliferation of existing corticotrophs contributed, at least in part, to their increase; (3) about 1/20 of proliferating cells differentiated to corticotrophs when their increase was required.

Adrenocorticotropic Hormone↗

Homozygous deletions and point mutations of the Ikaros gene in gamma-ray-induced mouse thymic lymphomas.

Our previous genome-wide analysis of allelic loss for thymic lymphomas that were induced by gamma-irradiation in F1 hybrid mice between BALB/c and MSM strains suggested the centromeric region on chromosome 11 as a site harboring a tumor suppressor gene. Interestingly, to this region the mouse Ikaros gene was mapped which was postulated to participate in oncogenic process from the study of Ikaros knockout mice. Here we show fine allelic loss mapping in the vicinity of Ikaros in 191 lymphomas, indicating that the critical region of allelic loss was centered at the Ikaros locus. PCR analysis revealed that nine lymphomas failed to give PCR-amplification for either of two exon primer pairs, indicative of homozygous deletion. Six and five mutations were detected in the N-terminal zinc finger domain and the activation domain of Ikaros, respectively, and six of the eleven were frameshift or nonsense mutations that resulted in truncation of Ikaros protein. The results strongly suggest a direct role for Ikaros in development of mouse thymic lymphomas. This provides the experimental basis for further analysis of Ikaros mutations in human cancer.

Animals↗

Allelic loss mapping and physical delineation of a region harboring a putative thymic lymphoma suppressor gene on mouse chromosome 12.

Our previous allelic loss analysis of gamma-ray induced thymic lymphomas in F1 hybrid and backcross mice between BALB/c and MSM strains mapped the Tlsr4 region exhibiting a high frequency of allelic loss (62%) to a 2.9 cM interval between the markers D12Mit53 and D12Mit279 on mouse chromosome 12. To narrow further the interval harboring a putative tumor suppressor gene, a high-density scan has been carried out for informative 361 thymic lymphomas. Construction of a physical map of Tlsr4 with 3 YAC and 15 BAC clones and isolation of YAC- and BAC-derived polymorphic probes lead to fine allelic loss mapping. Three successive polymorphic sites within one BAC exhibit the retention of both alleles in seven, one and four lymphomas, suggesting that a common region of allelic loss for Tlsr4 exists within the BAC region. Pulsed-field gel electrophoresis of NotI digests of this and other clones determines that the commonly lost region is a 35 kb interval with a NotI site. NotI sites are frequently associated with coding regions, and our preliminary sequencing has identified ESTs in the region. Thus, the present study facilitates the identification of genes in the Tlsr4 region that would lead to isolation of a novel tumor suppressor gene.

Alleles↗

Mutations in the p53 and scid genes do not cooperate in lymphomagenesis in doubly heterozygous mice.

Analysis of double mutant mice of the p53 and scid genes, which have a combination of cell cycle checkpoint/apoptosis and DNA repair defects, shows that the latter defect synergistically enhances lymphoma development with loss of the former function. These mice lack the ability to eliminate lymphocytes predisposed to neoplastic transformation resulting from faulty antigen receptor gene rearrangement. Here we examine the cooperativity in double heterozygotes of p53 and scid in which normal development of lymphocytes is not impaired. MSM mice carrying a p53-knockout allele were crossed with BALB/c mice heterozygous for the scid locus and 129 offspring were obtained. They were subjected to gamma-ray irradiation, 84 thymic lymphomas being generated. The tumors and host mice were genotyped of p53 and scid. Among 42 mice developing p53-deficient lymphomas, scid/+ and +/+ genotypes did not provide difference in onset and latency. Besides, allelic loss of the Scid gene occurred at a high frequency in those lymphomas but the loss exhibited no allelic bias. The results suggest that the scid/+ genotype is not a modifier of loss of p53 function in the double heterozygotes.

Alleles↗

Accumulation of recombinant chromosomes and low fidelity of transmission of chromosome X DNA markers in gamma-ray-induced lymphomas lacking p53.

F1 offspring of male MSM male mice with a p53-deficient (knockout) allele and normal female BALB/c mice were backcrossed with MSM mice to produce N2 mice. Female F1 and N2 mice were irradiated with gamma-radiation, and thymic lymphomas were obtained from 69 F1 and 82 N2 mice heterozygous for X chromosome markers. Of these 151 mice, 91 carried a p53-deficient allele. These lymphomas were analyzed for allelic loss by using four marker loci distributed on X chromosome to assess the stability of the inactive X chromosome, which contributes little to cellular functions. Twenty lymphomas showed allelic loss of all four loci, suggesting loss of a whole inactive X chromosome due to mitotic nondisjunction, whereas 24 lost only a part of an X chromosome, as a result of somatic recombination. The p53 status of the lymphomas was determined by genotyping and allelic loss analysis: 53 had retained two wild-type p53 alleles, suggesting normal function; 69 had lost both alleles, indicating loss of function; and the remaining 29 had at least one wild-type p53 allele, so their p53 status was unclear. Compilation of these two data revealed one nondisjunction-type change and five recombination-type mutations on X chromosome in 53 lymphomas retaining functional p53. In contrast, 14 and 16 of these alterations, respectively, were observed in 69 lymphomas lacking p53 function. These results suggest that p53 loss significantly increases the accumulation of recombinant chromosomes and decreases the fidelity of mitotic chromosome transmission of the X chromosome in gamma-ray-induced lymphomas.

Animals↗

Compact chromatin packaging of inactive X chromosome involves the actively transcribed Xist gene.

The Xist gene responsible for X inactivation may take a unique chromatin structure because of exceptional expression from inactive X Chromosome, (Chr). We have examined differential chromatin packaging of the Xist gene region between active and inactive X Chr with a novel method consisting of the chromatin fractionation and allele-specific detection. Analysis of F1 heterozygous female mice from T(X;16)16H x MSM crosses and two cell clones derived from inter-subspecific F1 female mice demonstrated that the packaging level of the transcribed Xist region on inactive X Chr was as tight as that of the repressed Pgk-1 allele on the same chromosome. On the other hand, restriction endonuclease sensitivity assay of chromatin showed that the promoter region, but not transcribed regions, of the transcribed Xist allele retained accessibility to nucleases. These results may suggest a cis-element(s) in a regulatory region of the Xist gene to prevent the transcriptionally inhibitory effect of the chromatin packaging.

Animals↗

Inflammatory cell-mediated tumour progression and minisatellite mutation correlate with the decrease of antioxidative enzymes in murine fibrosarcoma cells.

We isolated six clones of weakly tumorigenic fibrosarcoma (QR) from the tumorigenic clone BMT-11 cl-9. The QR clones were unable to grow in normal C57BL/6 mice when injected s.c. (1x10(5) cells). However, they formed aggressive tumours upon co-implantation with a 'foreign body', i.e. a gelatin sponge, and the rate of tumour take ranged from 8% to 58% among QR clones. The enhanced tumorigenicity was due to host cell-mediated reaction to the gelatin sponge (inflammation). Immunoblot analysis and enzyme activity assay revealed a significant inverse correlation between the frequencies of tumour formation by QR clones and the levels of manganese superoxide dismutase (Mn-SOD, P<0.005) and glutathione peroxidase (GPchi, P<0.01) in the respective tumour clones. Electron spin resonance (ESR) revealed that superoxide-scavenging ability of cell lysates of the QR clone with high level of Mn-SOD was significantly higher than that with low level of the antioxidative enzyme in the presence of potassium cyanide, an inhibitor for copper-zinc superoxide dismutase (CuZn-SOD) (P<0.001). Minisatellite mutation (MSM) induced by the inflammatory cells in tumour cells were investigated by DNA fingerprint analysis after QR clones had been co-cultured with gelatin-sponge-reactive cells. The MSM rate was significantly higher in the subclones with low levels of Mn-SOD and GPchi (P<0.05) than in the subclones with high levels of both enzymes. The MSM of the subclones with low levels of both enzymes was inhibited in the presence of mannitol, a hydroxyl radical scavenger. The content of 8-hydroxydeoxyguanosine (8-OHdG) by which the cellular DNA damage caused by active oxygen species can be assessed was significantly low in the tumours arising from the QR clone with high levels of Mn-SOD and GPchi even if the clone had been co-implanted with gelatin sponge, compared with the arising tumour from the QR clone with low levels of those antioxidative enzymes (P<0.001). In contrast, CuZn-SOD and catalase levels in the six QR clones did not have any correlation with tumour progression parameters. These results suggest that tumour progression is accelerated by inflammation-induced active oxygen species particularly accompanied with declined levels of intracellular antioxidative enzymes in tumour cells.

Animals↗

Expression of the Vax family homeobox genes suggests multiple roles in eye development.

BACKGROUND: Homeobox gene products are thought to regulate target genes involved in the regional specification of tissues and organs. Several genes play roles in eye development. RESULTS: We isolated two new mouse homeobox genes, Vax1 and Vax2, expressed in retina primordium. The two genes share the same gene organization, consisting of three exons with predicted amino acid sequences identical in the homeodomain but diversified in other regions. At 9. 5 days post coitum, both Vax genes were expressed in optic vesicles. At 11.5-14.5 dpc, Vax1 became restricted to the optic stalk, while Vax2 was expressed in the ventral half of the neural retina. Mapping of Vax2 between D6Mit3 and D6Mit8 on chromosome 6 indicated a possible linkage with Emx1. CONCLUSIONS: The expression patterns of Vax genes suggest separate and specific involvement in eye development. Vax1 may contribute to differentiation of the neuroretina, pigmented epithelium and optic stalk, while Vax2 could function in the establishment of the dorso-ventral axis of the retina and the visual system. The chromosomal location of Vax2 suggests that Vax2-Emx1 and Vax1-Emx2 arose by chromosome duplication of the same ancestral gene.

Amino Acid Sequence↗

Accumulation of aberrant Y chromosomes in gamma-ray-induced thymic lymphomas lacking p53.

Male F(1) hybrids between MSM mice carrying a deficient p53 allele and BALB/c mice were irradiated with gamma-rays, and 80 thymic lymphomas were obtained, 46 of which developed in mice carrying the deficient p53 allele. Because the Y chromosome contributes little to cellular function, the stability of the Y chromosome in the tumors was assessed by polymerase chain reaction by examining three genes: Smcy and Sry on the short arm and Sts in the pseudoautosomal region of the long arm of the Y chromosome. Twenty-one lymphomas had lost one or two genes, probably as a result of mitotic recombination or interstitial deletion, whereas no lymphomas had lost all three genes. The p53 status of the lymphomas was determined by genotyping and allelic loss analysis; 34 had retained two wild-type p53 alleles, suggesting normal function; 34 had lost both alleles, indicating loss of function; and the other 12 had at least one wild-type p53 allele, so their p53 status was unclear. Compilation of these data revealed that changes in the Y chromosome were detected in only two of the 34 lymphomas retaining functional p53 but in 18 of the 34 lymphomas lacking p53 function, suggesting that p53 deficiency leads to an increase in the accumulation of radiation-induced aberrant chromosomes. This is consistent with our previous result from analysis of the inactive X chromosome. In contrast, a decrease in the fidelity of mitotic transmission in p53-deficient lymphomas was not noted for the Y chromosome.

Abnormalities, Radiation-Induced↗

A novel type of myosin encoded by the mouse deafness gene shaker-2.

The mouse recessive deafness mutation, shaker-2(sh-2), represents a plausible model for an autosomal recessive form of human non-syndromic genetic deafness, DFNB3. Here we report the use of a positional cloning approach to show that the gene mutated in sh-2 mice encodes a novel type of unconventional myosin. A G-to-A transition changing cysteine to tyrosine in the conserved actin binding domain is detected in sh-2 but absent in laboratory strains and wild mice belonging to different mouse subspecies and species. This suggests that the novel myosin gene is a strong candidate for DFNB3.

Actins↗

Allele-specific inactivation of the alpha4 integrin gene expression in fibrosarcoma cell lines and relevance for spontaneous metastasis.

Deregulated expression of genes is found in cancer cells, which may affect malignant properties, but it is unclear whether such modulation occurs allele-specifically. This study shows that the gene coding alpha4 integrin, a cell adhesion molecule, underwent allelic inactivation in a series of heterozygous murine fibrosarcoma cell lines (MST lines) with different metastatic potentials. P4 cells expressed the alpha4 integrin gene from one allele at a level comparable to that of the primary MST1 tumor, whereas the descendent lines of P4 exhibited decreased expression of both alleles. No allelic loss of DNA was observed in these cells. Other four clones derived from P4 and five clones from a different tumor also showed such two-step inactivation. Intriguingly, the loss of expression was correlated with the acquisition of spontaneous, but not artificial, metastatic ability. This is consistent with the previous result of inverse relation between the expression of alpha4/beta1 integrin and the invasive potential of B16 melanoma cells. Analysis of DNA methylation and chromatin state of the alpha4 integrin gene failed to provide a clue to difference between the two alleles in the cell lines. These results suggest that the allelic inactivation is a process giving loss of function to one allele, although the mechanism is unclear.

Alleles↗

Allelic loss analysis of gamma-ray-induced mouse thymic lymphomas: two candidate tumor suppressor gene loci on chromosomes 12 and 16.

A total of 429 gamma-ray-induced thymic lymphomas were obtained from F1 and backcross mice between BALB/c and MSM strains, about a half of which carried a p53-deficient allele. A genome-wide allelic loss analysis has revealed two loci exhibiting frequent allelic losses but no allelic preference, one is localized within a 2.9 cM region between D12Mit53 and D12Mit279 loci on chromosome 12, and the other is near the D16Mit122/D16Mit162 loci on chromosome 16. The frequency of allelic loss in the D12Mit279 region is 62% and does not differ in tumors between the presence and absence of the p53-deficient allele. In contrast, the loss frequency of D16Mit122 is raised by the existence of p53-deficient allele: 62% for p63(-/+) and 13% for p53(+/+), suggesting co-operative function of the two losses. The D12Mit279 and D16Mit122 regions probably harbor different types of tumor suppressor gene that play key roles in lymphoma development.

Animals↗

Difference in chromatin packaging between active and inactive X chromosomes by fractionation and allele-specific detection.

Using a novel method consisting of chromatin fractionation and allele-specific detection, chromatin packaging is compared between active X (Xa) and inactive X (Xi) chromosomes for five tumor cell clones that were derived from inter-subspecific F1 female mice. Separation of heterochromatic (H) and euchromatic (E) fractions is monitored by hybridization with subtelomeric satellite DNA and ribosomal RNA gene and by PCR amplification of p53 gene/pseudogene with one primer set. The H fraction was enriched with satellite and p53 pseudogene probably existing in heterochromatic regions while the E fraction showed inverse, suggesting fair separation. Analysis with seven marker and three gene loci revealed concentration of alleles on Xi in the H fraction and those on Xa in the E fraction, though the concentration levels varied. This implies that the packaging level of Xi is higher than that of active or inactive euchromatin on Xa. Intriguingly, one cell line showed biallelic expression and chromatin relaxation of the Pgk-1 locus, suggesting that the relaxation occur regionally on X chromosome.

Alleles↗

Anti-Sm autoantibodies cross-react with ribosomal protein S10: a common structural unit shared by the small nuclear RNP proteins and the ribosomal protein.

OBJECTIVE: Cross-reactivity of anti-Sm autoantibodies with a certain ribosomal protein has been reported previously. The present study was undertaken to identify the anti-Sm-reactive ribosomal protein, and to characterize the cross-reactive epitope. METHODS: Two-dimensional gel electrophoresis followed by immunoblotting was used to identify the ribosomal protein (S10) which was reactive with the Y12 anti-Sm monoclonal antibody (MAb). Human anti-Sm antibodies were also tested for cross-reactivity with the Sm-B/B', Sm-D, and isolated S10 proteins by immunoblotting. Epitope analysis was performed by immunoprecipitation of in vitro-translated products of the recombinant S10 and its various mutants. RESULTS: The Y12 MAb and the affinity-purified human anti-Sm autoantibodies cross-reacted with ribosomal S10 protein. Reactivity of the Y12 MAb with S10 protein was abolished by deletion of 19 amino acids at the carboxyl-terminus of S10, containing the Gly-Arg-Gly sequence motif shared by Sm-B/B' and Sm-D (D1 and D3). Replacements of Arg-158 with Gly and of Arg-158/Arg-160 with Gly/Gly at the carboxyl-terminal 157-Gly-Arg-Gly-Arg-Gly region disrupted the Y12 MAb recognition. CONCLUSION: At least a part of human anti-Sm antibodies and Y12 MAb show cross-reactivity among Sm-B/B', Sm-D, and ribosomal protein S10. The carboxyl-terminal Gly-Arg-Gly region of S10 protein is involved in constructing the cross-reactive epitope. This demonstrates that a common structural feature is shared by the ribosomal protein and the small nuclear RNP proteins.

Amino Acid Sequence↗

Putative tumor suppressor gene region within 0.85 cM on chromosome 12 in radiation-induced murine lymphomas.

Analyses of genetic alterations in tumors from F1 hybrid mice produced by inter-subspecific crosses between genetically well-characterized inbred strains provide precise and comprehensive evidence for genetic abnormalities such as allelic loss. We performed loss of heterozygosity (LOH) analyses of 125 radiation-induced lymphomas of (BALB/cHeA x MSM/Ms)F1 hybrid mice by polymerase chain reaction (PCR) analysis of microsatellite DNA polymorphic markers. Very frequent LOH was found at a distal region on chromosome 12. To precisely define the most common region of LOH, we first determined the order of and distances between the available microsatellite loci around the region by using 586 (CXSD x MSM/Ms)F2 hybrid mice (1172 meiosis). The locus order and distances were [centromere]-D12Mit132-(0.34 cM)-D12Mit5O-(2.05 cM)-[D12Mit122, D12Mit53]-(0.85 cM)-D12Mit233-(0.43 cM)-D12Mit279-(O.17 cM)-D12Mit181-[telomere]. We then investigated the features of LOH at these loci. The highest frequency of LOH (83 of 125, 66%) was found at D12Mit233. The LOH patterns of individual lymphomas indicated that the most common region of LOH was within the 0.85 cM between D12Mit53 and D12Mit233, a region homologous to human chromosome 14q32.1. These results suggest that a putative novel tumor suppressor gene exists within this region.

Animals↗

Pairing of DNA fragments containing (GGA:TCC)n repeats and promotion by high mobility group protein 1 and histone H1.

Tandemly repeated DNA sequences of (GGA:TCC)n are found in tracts up to 50 base pairs long, dispersed at thousands of sites throughout the genomes of eukaryotes. Here we demonstrate the formation of complexes paired between two DNAs containing such repeats in vitro and show enhancement of the pairing by glutathione S-transferase fusion proteins of high mobility group protein 1 and histone H1. This assembly depends on incubation time at 37 degrees C and concentrations of the proteins and DNA, and the enhancement is inhibited by distamycin and actinomycin D interacting DNA through the minor groove. Structure of the DNA-DNA complex is deduced by comparison of its mobility in gel electrophoresis with those of synthetic markers of heterotetramers. Three synthetic and genomic DNA fragments containing repeats that have different arrangements exhibit different efficiencies of DNA pairing, implying that the pairing is affected by the number of repeat units and the arrangement of repeats in a sequence. Intriguingly, pairing occurs between homologous fragments but not between heterologous DNAs among the three. These results suggest that the repeat-mediated DNA pairing plays a role in organization of higher order architecture of chromatin and possibly chromosome segregation requiring sequence-specific association events of DNA molecules.

DNA Fragmentation↗

Induction of minisatellite mutation in NIH 3T3 cells by treatment with the tumor promoter okadaic acid.

Okadaic acid (OA) is a strong tumor promoter of mouse skin carcinogenesis and also a potent inhibitor of serine/threonine protein phosphatases. OA induces various genetic alterations in cultured cells, such as diphtheria-toxin-resistance mutations, sister chromatid exchange, exclusion of exogenous transforming oncogenes, and gene amplification. The present study revealed that it caused minisatellite mutation (MSM) at a high frequency in NIH 3T3 cells, although no microsatellite mutation was found. Nine of 31 clones (29%) exhibited MSM after 6 days of OA treatment, as opposed to only 1 of 30 clones (3%) without OA exposure. Moreover, NIH 3T3 cells treated with OA acquired tumorigenicity in nude mice, giving rise to 7 tumors within 25 weeks in 20 sites where 3 x 10(6) cells were injected. In contrast, the same numbers of untreated cells gave rise to only one tumor, and the tumor grew much slower. All of three OA-induced tumors examined manifested the MSM. The findings thus point to a molecular mechanism by which OA could function as a tumor promoter, and also the biological relevance of the induction of MSM in the tumorigenic process by OA.

3T3 Cells↗