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Akio Yamada

Publications and source records attributed to Akio Yamada.

38 records · Page 3Linked to original sources

Lower concentration of La protein required for internal ribosome entry on hepatitis C virus RNA than on poliovirus RNA.

Translation initiation of poliovirus and hepatitis C virus (HCV) RNA occurs by entry of ribosomes to the internal RNA sequence, called the internal ribosomal entry site (IRES). Both IRES bind to the La protein and are thought to require the protein for their translation initiation activity, although they are greatly different in both the primary and predicted secondary structures. To compare the La protein requirement for these IRES, we took advantage of I-RNA from the yeast Saccharomyces cerevisiae, which has been reported to bind to La protein and block poliovirus IRES-mediated translation initiation. In a cell-free translation system prepared from HeLa cells, yeast I-RNA inhibited translation initiation on poliovirus RNA as expected, but did not significantly inhibit translation initiation on HCV RNA. However, the translation initiation directed by either IRES was apparently inhibited by I-RNA in rabbit reticulocyte lysates, in which La protein is limiting. I-RNA-mediated inhibition of HCV IRES-dependent translation in rabbit reticulocyte lysates was reversed by exogenous addition of purified recombinant La protein of smaller amounts than necessary to reverse poliovirus IRES-dependent translation. These results suggest that HCV IRES requires lower concentrations of La protein for its function than does poliovirus IRES. Immunofluorescence studies showed that HCV infection appeared not to affect the subcellular localization of La protein, which exists mainly in the nucleus, although La protein redistributed to the cytoplasm after poliovirus infection. The data are compatible with the low requirement of La protein for HCV IRES activity.

Animals↗

Kinetics of circulating endothelial progenitor cells in mice with type II collagen arthritis.

OBJECTIVE: To examine the significance in arthritis of circulating endothelial progenitor cells (cEPCs) reportedly increasing in neovascularization. METHODS: Arthritis was induced by immunizing DBA/1J mice with bovine type II collagen on day 0. Age-matched normal DBA/1J mice were used as controls. Blood was collected from these mice on days 7, 14, 21, 28, and 35. Peripheral blood CD45-, CD34+, Flk-1+, CD117+ cells were regarded as cEPCs (Flk-1=vascular endothelial growth factor receptor 2). The number of cEPCs per 100 CD45+ cells was calculated by four-color flow cytometry, and compared with the arthritis score. RESULTS: Arthritis developed about 3 days after booster immunization (day 21). On days 7, 14, and 21, no difference in cEPCs/100 CD45+ cells was noted between the arthritis and control groups. On days 28 and 35, cEPCs/100 CD45+ cells in the arthritis group were significantly greater in number than those in the control group. cEPCs/100 CD45+ cells on day 28 were greater in number than those on day 35. On day 28, a correlation was found between cEPCs/100 CD45+ cells and arthritis score. CONCLUSION: In mice with type II collagen-induced arthritis, an increase in cEPCs was associated with the onset of arthritis. The number of cEPCs was greater during the development and progression of arthritis than that at the time of its establishment, suggesting that cEPCs are involved in the pathogenesis of arthritis.

Animals↗