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Fumiko Ueno

Publications and source records attributed to Fumiko Ueno.

4 recordsLinked to original sources

Vpx and Vpr proteins of HIV-2 up-regulate the viral infectivity by a distinct mechanism in lymphocytic cells.

Mutants of human immunodeficiency virus type 2 (HIV-2) carrying a frame-shift mutation in vpx, vpr, and in both genes were monitored for their growth potentials in a newly established lymphocytic cell line, HSC-F. Worthy of note, the replication of a vpx single mutant, but not vpr, was severely impaired in these cells, and that of a vpx-vpr double mutant was more damaged. Defective replication sites of the vpx single and vpx-vpr double mutants were demonstrated to be mapped, respectively, to the nuclear import of viral genome, and to both, this process and the virus assembly/release stage. While the mutational effect of vpr was small, the replication efficiency in one cycle of the vpx mutant relative to that of wild-type virus was estimated to be 10%. The growth phenotypes of the vpx, vpr, and vpx-vpr mutant viruses in HSC-F cells were essentially repeated in primary human lymphocytes. In primary human macrophages, whereas the vpx and vpx-vpr mutants did not grow at all, the vpr mutant grew equally as well as the wild-type virus. These results strongly suggested that Vpx is critical for up-regulation of HIV-2 replication in natural target cells by enhancing the genome nuclear import, and that Vpr promotes HIV-2 replication somewhat, at least in lymphocytic cells, at a very late replication phase.

Animals↗

Susceptibility of HVS-immortalized lymphocytic HSC-F cells to various strains and mutants of HIV/SIV.

Susceptibility of HSC-F, a cynomolgus macaque cell line immortalized by Herpesvirus saimiri, to infection with various primate immunodeficiency viruses were monitored. While NL432 clone of human immunodeficiency virus type 1 (HIV-1) did not grow at all in HSC-F cells, GH123 and GL-AN clones of HIV-2, and MA239 clone of simian immunodeficiency virus isolated from macaque monkeys (SIVMAC) did grow in these cells. In addition, NM-3 clone of a chimeric simian and human immunodeficiency virus (SHIV) grew fairly well in HSC-F cells. Mutational analyses of accessory genes of GL-AN were successfully performed in the HSC-F cells. These results have thus demonstrated the importance of this cell line for molecular biological studies on HIV/SIV.

Animals↗

[HIV-1, 2].

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Acquired Immunodeficiency Syndrome↗

Suppression of apoptotic and necrotic cell death by poliovirus.

To determine an antiapoptotic activity of poliovirus type 1 (PV-1), we examined the effect of PV-1 infection on apoptosis that was induced in HEp-2 cells by the treatment with 1 M sorbitol. The virus did not induce apoptosis in the infected cells and could suppress both the fragmentation of chromosomal DNA and morphological cell and cell nuclei changes in the sorbitol-treated cells, indicating that PV-1 induces an antiapoptotic state. Comparison of the kinetics showed that this ability of the virus appeared in the infected cells at the time of progeny virus formation (maturation step of virus multiplication). Simultaneously with this antiapoptotic activity, PV-1 infection also suppressed non-apoptotic cell death induced by sodium chloride. Electron microscopic observation revealed that the cells killed by the sodium chloride treatment had undergone liquefactive necrosis, indicating that PV-1 can inhibit both apoptosis and necrosis. In addition, PV-1 can grow in the apoptotic cells, although the virus yield was reduced to a quarter of the yield in normal cells.

Apoptosis↗