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M Onuma

Publications and source records attributed to M Onuma.

At least 91 records · Page 5Linked to original sources

Analysis of tumor suppressor gene p53 in chicken lymphoblastoid tumor cell lines and field tumors.

To determine whether there is any abnormalities of the p53 gene in chicken lymphoblastoid tumor cell lines derived from Marek's disease (MD), lymphoid leukosis, reticuloendotheliosis, and field tumors, some portions of p53 cDNA corresponding to core and C-terminal domains (nucleotide positions 277-1104 in the p53 open reading frame (ORF)) were sequenced. Several mutations were identified in both cell lines and field tumors. However, none of these mutations is localized at the "hot spot", which has been reported as the site for transformation-activating mutations. Moreover, partial cDNA clones with a 122-bp deletion in the p53 ORF were identified in two cell lines, MSB1 and MTB1 derived from MD tumors. Southern blot analysis showed that no deletion occurred in the genome of p53 in MSB1, indicating that deletion occurred at the transcriptional level. This deletion could cause a frame shift of the encoding p53 protein, possibly resulting in the generation of a functionally different p53 protein. However, we confirmed that p53 mRNA without deletion is also present in each of these cell lines. These mutations of the p53 gene and deletion in the p53 transcript may be ones of molecular changes specific to the transformation induced by MD virus.

Amino Acid Sequence↗

Phylogenetic positions of insectivora in eutheria inferred from mitochondrial cytochrome c oxidase subunit II gene.

For the elucidation of the phylogenetic position of insectivora in eutheria, we have sequenced the cytochrome c oxidase subunit II (COII) gene of mitochondria for three insectivoran species [musk screw (Suncus murinus), shrew mole (Urotrichus talpoides), Japanese mole (Mogera wogura)] and analyzed these amino acid sequences with neighbor-joining (NJ) method and maximum likelihood (ML) method. NJ analysis shows polyphyly of Insectivora and Chiroptera. Assuming that each of Primates, Ferungulata, Chiroptera, Insectivora and Rodentia is a monophyletic group, ML analysis suggests that Chiroptera is a sister group of Insectivora and that Ferungulata is the closest outgroup to the (Insectivora and Chiroptera) clade.

Animals↗

Control of Theileria sergenti infection by vaccination.

Bovine piroplasmosis caused by Theileria sergenti is a major cause of economic loss in grazing cattle in Japan. Infected calves show chronic anaemia with intraerythrocytic piroplasms and occasionally die in severe cases. We found that parasite stocks and isolates consist of genetically and antigenically mixed populations. To differentiate parasite populations bearing 3 allelic forms of p32/34, an immunodominant piroplasm surface protein, 3 sets of oligonucleotide primers were designed to amplify either of 3 alleles by polymerase chain reaction (PCR). By using this allele-specific PCR, we found that the majority of T. sergenti-infected calves in Japan harbored mixed parasite populations bearing C and I type parasites. To control Theileria infection, we produced 2 vaccine candidates: recombinant baculovirus p32 and synthetic peptide containing Lys-Glu-Lys (KEK) motif. Immunization with either recombinant p32 or synthetic peptide containing KEK sequences with Freund's complete adjuvant resulted in low parasitemia and reduced the clinical symptoms compared to control calves. Interestingly, the parasite with the p32 allelic form corresponding to the one used as the immunogen was suppressed.

Amino Acid Sequence↗

Characterization of some Theileria parva stocks from Zambia using monoclonal antibodies.

Theileria parva parasites have been isolated from different location in Zambia where malignant theileriosis has been recorded. A total of 16 bovine lymphocytic cell lines infected with T. parva schizonts were characterized using a panel of anti-schizont monoclonal antibodies (MAbs). Comparison of the Theileria stocks isolated before (old) and after (new) the Muguga cocktail of T. parva from Kenya was used to vaccinate cattle against theileriosis in Zambia revealed differences in their reactivity against MAbs. The new isolates are showing MAb profiles similar to that exhibited by the Muguga cocktail which was used to vaccinate cattle in these areas between 1983 and 1989. These results suggest that the use of the Muguga cocktail to vaccinate animals against theileriosis in Zambia may have introduced Theileria stocks of different antigenic properties.

Animals↗

Evaluation of cationic liposomes for delivery of diphtheria toxin A-chain gene to cells infected with bovine leukemia virus.

We investigated whether cationic liposomes are efficient at delivering the gene for diphtheria toxin A-chain (DT-A) under the control of the long terminal repeat (LTR) of bovine leukemia virus (BLV) (pLTR-DT) into BLV-infected cells and are also suitable for in vivo use. The transfection activity of the cationic liposomes composed of N-(alpha-trimethylammonioacetyl)-didodecyl-D-glutamate chloride (TMAG), dioleoyl phosphatidylethanolamine (DOPE) and dilauroyl phosphatidylcholine (DLPC) (1:2:2, molar ratio) (TMAG-liposome) and liposomes composed of phosphatidylserine (PS) (PS-liposome) was evaluated by the luciferase assay using a plasmid which contains the coding sequence of firefly luciferase under the control of the SR alpha promoter (pSR alpha/L-A delta 5). The TMAG-liposome gave highly efficient transfection in the presence of serum. On the other hand, PS-liposome showed inferior efficiency. When BLV-infected cells were co-transfected with a fixed amount of pSR alpha/L-A delta 5-entrapped TMAG-liposome and various amount of pLTR-DT-containing TMAG-liposome, the luciferase activity in the BLV-infected cells was inhibited by the addition of pLTR-DT-entrapped TMAG-liposome dose-dependently. The cationic TMAG-liposome containing pLTR-DT was successively added to BLV-infected cells in culture. The number of viable cells was markedly reduced by the cationic TMAG-liposome containing pLTR-DT. On the other hand, TMAG-liposome containing pSR alpha/L-A delta 5 showed no such effect. pLTR-DT entrapped by the cationic TMAG-liposome was not digested by the treatment with DNase I and with serum. These results suggest that the cationic liposomes, such as TMAG-liposome, may be efficient transfection reagent for the BLV-infected cells and can be utilized for DT-A gene delivery into the BLV-infected cells in vivo.

Animals↗

In vivo antitumor effect of cationic liposomes containing diphtheria toxin A-chain gene on cells infected with bovine leukemia virus.

A plasmid pLTR-DT which contained a gene for diphtheria toxin A-chain (DT-A) under the control of the long terminal repeat (LTR) of bovine leukemia virus (BLV) (BLV-LTR) in the multicloning site of pUC-18 was entrapped in cationic liposomes composed of N-(alpha-trimethylammonioacetyl)-didodecyl-D-glutamate chloride (TMAG), dioleoyl phosphatidylethanolamine (DOPE) and dilauroyl phosphatidylcholine (DLPC) (1:2:2, molar ratio) (TMAG-liposome), and their antitumor effect on BLV-infected tumor cells was examined in vivo. The cationic TMAG-liposome containing pLTR-DT was successively injected into the tumor transplanted to nude mice. The growth of tumor was significantly inhibited by the injection of cationic TMAG-liposome containing pLTR-DT. On the other hand, TMAG-liposome containing pUC18 plasmids showed no such effect. These results suggest that a DT-A expression plasmid under the control of BLV-LTR is highly toxic to the BLV-infected tumor cells, and that the cationic liposomes, such as TMAG-liposome, may be efficient transfection reagent for BLV-infected tumor cells and can be utilized for DT-A gene delivery into BLV-infected tumor cells in vivo.

Animals↗

[Changes in patterns of morbidity over 10 years among elderly patients with stroke who were treated in a rehabilitation unit].

We examined changes in outcomes among elderly patients with stroke who were admitted to the rehabilitation unit of our hospital from April, 1985 to March, 1995. During that period, 933 patients (489 men and 444 women, average age 71.3 years) were admitted and received physical therapy. During those 10 years, the average age of the patients increased, functional status with regard to sitting up and walking worsened, and the incidence of urinary incontinence at the time of discharge increased. In contrast, the percentage of patients discharged to home (50 to approximately 60%), the degree of impairment of lower extremities, and the onset-to-admission interval (3 to 4 months) did not change.

Aged↗

Distribution of Rift Valley fever among cattle in Zambia.

In the present study, 1,421 cattle in 32 herds within nine districts, which are important cattle-producing centers in the nine provinces of Zambia, were tested for Rift Valley fever by the indirect immunofluorescence assay. One hundred and forty-seven cattle (10.5%) in 28 herds (88.9%) in the nine districts tested were positive for Rift Valley fever implying a country-wide distribution. In districts associated with flood plains and/or "dambos" (low lying areas of perpetual flooding), high herd and individual positive rates (100% and > 10%, respectively) were found, suggesting a significance of these features in the distribution of the disease.

Animals↗

Apoptosis in peripheral CD4+T cells and thymocytes by Marek's disease virus-infection.

Histological study revealed that Marek's disease virus (MDV) can cause apoptosis in peripheral blood lymphocytes (PBL) in latently infected chickens. Analysis of DNA fragmentation indicated that CD4+T cells but not CD8+T cells underwent apoptosis. These apoptotic changes were also observed in the thymus during the acute phase of the infection. Flow cytometry analysis showed the drastic decrease of CD4+CD8+ thymocytes, indicating that MDV can induce apoptosis in CD4+CD8+ immature thymocytes in acutely infected chickens. These changes might be involved in the immuno-suppression induced by MDV.

Animals↗

Peptide-based bovine leukemia virus (BLV) vaccine that induces BLV-Env specific Th-1 type immunity.

In controlling retrovirus infection and replication, cell-mediated immunity (CMI) is considered to be effective. To develop a synthetic peptide vaccine capable of inducing CMI, mannan-coated liposome encapsulating 20-mer synthetic peptide, spanning the 98-117 amino acids of bovine leukemia virus (BLV) envelope glycoprotein (Env) gp51 was constructed and inoculated to BALB/c mice. The liposome induced specific delayed-type hypersensitivity, lymphocyte proliferative responses, and a weak cytotoxic lymphocyte response. The spleen cells from the immunized mice produced a large amount of IFN-gamma and IL-2, whereas they released neither IL-4 or IL-10. Mannan-coated liposome containing two kinds of peptides (the 121-140 and 142-161 regions of BLV Env gp51) also induced peptide-specific lymphocyte proliferative response and IFN-g production in C57BL/6 mice. Thus, the synthetic T-cell epitope peptide-liposome system augmented a strong Th-1 type immunity in mice.

Amino Acid Sequence↗

Distribution of bovine immunodeficiency virus in the organs of experimentally infected cows.

The distribution of bovine immunodeficiency virus (BIV) in the organs of experimentally infected cows was investigated by use of nested polymerase chain reaction (PCR). Two cows (Nos. 1 and 2) experimentally infected with BIV were alive without any clinical symptoms of BIV infection for 28 months. Viral and proviral genomes of BIV were continuously detected from peripheral blood leukocytes in those cows by nested PCR. Proviral genomes of BIV were also detected in liver, lung, and spleen cells in the two cows, and in the brain in cow No. 1. Viral genomes were detected in liver, lung and spleen cells in cow No. 1, and detected only in spleen cells in cow No. 2. These results suggest that BIV tended to be persistent in some organs, especially in the spleen.

Animals↗

Vaccine development against Theileria parasite.

Bovine piroplasmosis caused by Theileria sergenti is a major cause of economical loss in grazing cattle in Japan. We found that parasite stocks and isolates consist of genetically and antigenically mixed population. To differentiate parasite populations bearing 2 allelic forms of p32, an immunodominant piroplasm surface protein, 2 sets of oligonucleotide primers were designed to amplify either of the 2 alleles by polymerase chain reaction (PCR). By using this allele-specific PCR, we found that the majority of T. sergenti-infected calves in Japan harbored mixed parasite populations with C and I type parasites. Amino acid sequence of p32 contains Lys-Glu-Lys (KEK) motif which is one of tripeptide necessary for malaria parasite to invade erythrocytes. We produced 2 vaccine candidates, recombinant baculovirus p32 and synthetic peptide containing KEK motif. Immunization of either recombinant p32 or synthetic peptide containing a KEK sequence with adjuvant resulted in low parasitemia and reduced the clinical symptoms compared to control calves. Interestingly, parasites with a p32 allelic form corresponding to one used as the immunogen were suppressed. Therefore, a cocktail vaccine containing KEK peptides derived from C and I type parasites is desired for control Theileria parasite infection in Japan.

Amino Acid Sequence↗

Apoptosis and CD8-down-regulation in the thymus of chickens infected with Marek's disease virus.

Marek's disease virus (MDV)-infected chickens show thymic atrophy during the acute phase of infection. We examined whether the thymic atrophy by MDV-infection was mediated by apoptosis. Apoptosis-specific DNA ladderings were clearly observed in thymocytes one week after MDV-infection. Histological and flow cytometry studies revealed that immature CD4+ CD8+ thymocytes underwent apototic cell death. In addition, the expression level of CD8 molecules on both CD4(-)CD8+ and CD4+ CD8+ thymocyte populations was down-regulated in the infected chickens. These thymic changes might be involved in the pathogenesis of Marek's disease.

Animals↗

Analysis of immunodominant piroplasm surface antigen alleles in mixed populations of Theileria sergenti and T. buffeli.

Previous studies revealed that isolates of Theileria sergenti consisted of at least 2 parasite populations bearing 2 different allelic forms of p33/32, an immunodominant piroplasm surface protein, and that the majority of T. sergenti-infected calves harbored mixed parasite populations of Ikeda (I)- and Chitose (C)-types. In this study we designed an additional oligonucleotide primer, which specifically amplified the p34 gene of T. buffeli (BI-type). DNAs from 3 field isolates in Japan were positive with this primer as well as those prepared from cattle imported from Australia and the T. buffeli Warwick stock, but restriction enzyme patterns of the PCR products from the former 3 were different from those of the latter. The nucleotide sequence of the gene amplified from Japanese isolates showed 89% homology at the nucleotide level and 88% homology at the amino-acid level with T. buffeli p34 genes. The results indicate that T. sergentilbuffeli distributed in Japan and Australia is a mixture of parasites with various combinations of 4 different allelic types.

Alleles↗

Characterization of extrathymic T cells of chickens.

The function of CD4+ T cells in antibody production was examined by using T cell subset-depleted chickens. CD4- and CD8-depleted chickens, established by the combination of thymectomy and injection of T cell subset-specific monoclonal antibodies, were immunized with sheep red blood cells (SRBC). Titers of anti-SRBC antibody produced in CD4-depleted chickens were lower than those in control chickens, while no difference in the antibody production was observed between CD8-depleted and control chickens. In chickens depleted of both CD4+ and CD8+ T cells, the recovery of T cells in the periphery was demonstrated starting 3 weeks after T cell depletion. Those T cells recovered in the periphery predominantly expressed CD4 molecules. Although low titers of antibody against SRBC were detected in chickens depleted of both CD4+ and CD8+ T cells, an increase of anti-SRBC antibody production was coincidentally observed with the recovery of CD4+ T cells in the periphery. These results suggest that CD4+ T cells could differentiate in extrathymic environments in chickens, and have a helper function in antibody production similar to that of intrathymic T cells. These extrathymic T cells, however, showed a lower proliferative response to concanavalin A than intrathymic T cells, suggesting that these extrathymic T cells may have some properties distinct from intrathymic T cells.

Animals↗

Induction of bovine leukaemia virus Env-specific Th-1 type immunity in mice by vaccination with short synthesized peptide-liposome.

Cell-mediated immunity (CMI) is considered to be effective in controlling retrovirus infection and replication. To develop a peptide-based vaccine capable of inducing CMI, mannan-coated liposome encapsulating 20-mer synthetic peptide, spanning the 98-117 amino acids of bovine leukaemia virus (BLV) envelope glycoprotein (Env) gp51 was constructed. The liposome induced specific delayed-type hypersensitivity, lymphocyte proliferative responses and a weak cytotoxic lymphocyte response in mice. By stimulation with the peptide and BLV virion, the spleen cells from the immunized mice produced a large amount of IFN-gamma and IL-2, whereas they released neither IL-4 or IL-10. These results indicate the augmentation of Th-1 type immunity in mice by the T-cell epitope synthetic peptide-liposome.

Amino Acid Sequence↗

An effective peptide vaccine to eliminate bovine leukaemia virus (BLV) infected cells in carrier sheep.

Protective effects of the gp51 of bovine leukaemia virus (BLV) expressed by a recombinant baculovirus (rgp51) and synthetic multiple antigenic peptides (MAP) of T-helper, T-cytotoxic, and B-cell epitopes of gp51 were investigated against BLV challenge. Two and three sheep were immunized with rgp51 and a mixture of peptides with Freund's complete adjuvant, respectively. BLV was detected from all the immunized sheep at 2 weeks and showed peak levels at 4 weeks after the challenge. However, in two sheep immunized with the mixed peptides, the titer of BLV gradually decreased and one sheep eliminated BLV completely at 28 weeks after the challenge. These two sheep showed higher lymphocyte proliferative responses against the immunized peptides than the other sheep. One of the sheep also showed the specific cytotoxic lymphocyte activity against the BLV gp51-expressing target in vitro. These results suggest the possibility of the peptide vaccine for elimination of BLV in carrier animals in vivo.

Amino Acid Sequence↗