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Nishigaki, K.

Publications and source records attributed to Nishigaki, K..

4 recordsLinked to original sources

Feline leukaemia virus subgrouping using the viral interference assay

Feline leukaemia virus subgroup A (FeLV-A) is transmitted among cats, and FeLV subgroups are frequently generated de novo. We investigated the frequency of detection of subgroups using interference assays in 50 cases. FeLV-A infection alone was detected in 38% of cases, whereas co-infection with both FeLV-A and FeLV-B was observed in 62% of cases. No cases of FeLV-B infection alone were observed. Cases of co-infection with FeLV-A and FeLV-B showed a higher prevalence than cases of FeLV-A infection alone. The X region containing FeLV was discovered in two new cases. This study may elucidate the mechanism underlying FeLV-B-induced diseases.

microbiology↗

Endogenous retrovirus ERV-DC8 highly integrated in domestic cat populations is a replication-competent provirus

Endogenous retroviruses (ERVs) are remnants of ancient retroviral infections in vertebrate genomes and are inherited by offspring. ERVs can produce pathogenic viruses through gene mutations or recombination. ERVs in domestic cats (ERV-DCs) generate feline leukemia virus subgroup D (FeLV-D) through viral recombination. Herein, we characterized the locus ERV-DC8, on chromosome B1, as an infectious replication-competent provirus. ERV-DC8 infected several cell lines, including human cells. Transmission electron microscopy of ERV-DC8 identified the viral release as a Gammaretrovirus. ERV-DC8 was identified as the FeLV-D viral interference group, with feline copper transporter 1 as its viral receptor. Insertional polymorphism analysis showed high ERV-DC8 integration in domestic cats. This study highlights the role, pathogenicity, and evolutionary relationships between ERVs and their hosts.

microbiology↗

Characterization of the placenta-specific EnvV2-Fca soluble protein derived from endogenous retrovirus

Endogenous retroviruses (ERVs) are remnants of ancestral viruses in the host genome. Here, we identified the expression of a defective retroviral env gene belonging to the ERV group V member 2 Env (EnvV2) in Felis catus (EnvV2-Fca), which was specifically detected in the placental trophoblast syncytiotrophobic layer. EnV2-Fca was expressed as a secreted protein in cultured cells. Genetic analyses indicated that EnvV2 genes are widely present in vertebrate, and are under purifying selection among carnivores, suggesting a potential benefit for the host. Notably, this study suggests that birds, bats, and rodents carrying EnvV2 may play significant roles as intermediate vectors in spreading or cross-transmitting viruses among species. Overall, our findings provide valuable insights into the evolution of ERV in vertebrate hosts.

microbiology↗

FeLIX is a restriction factor for mammalian retrovirus infection

Endogenous retroviruses (ERVs) are remnants of ancestral viral infections. Feline leukemia virus (FeLV) is an exogenous and endogenous retrovirus in domestic cats. It is classified into several subgroups (A, B, C, D, E, and T) based on viral receptor interference properties or receptor usage. ERV-derived molecules benefit animals, conferring resistance to infectious diseases. However, the soluble protein encoded by the defective envelope (env) gene of endogenous FeLV (enFeLV) functions as a co-factor in FeLV subgroup T infections. Thus, whether the gene emerged to facilitate viral infection is unclear. Based on the properties of ERV-derived molecules, we hypothesized that the defective env genes possess antiviral activity that would be advantageous to the host because FeLV subgroup B (FeLV-B), a recombinant virus derived from enFeLV env, is restricted to viral transmission among domestic cats. When soluble truncated Env proteins from enFeLV were tested for their inhibitory effects against enFeLV and FeLV- B, they inhibited viral infection. Notably, this antiviral machinery was extended to infection with the Gibbon ape leukemia virus, Koala retrovirus-A, and Hervey pteropid gammaretrovirus. Although these viruses used feline phosphate transporter1 (fePit1) or fePit1 and phosphate transporter2 (fePit2) as receptors, the inhibitory mechanism involved competitive receptor binding in a fePit1-dependent manner. The shift of receptor usage may have occurred to avoid the inhibitory effect. Overall, these findings highlight the possible emergence of soluble truncated Env proteins from enFeLV as a restriction factor against retroviral infection, and might help in the control of retroviral spread for host immunity and antiviral defense. ImportanceRetroviruses are unique in using reverse transcriptase to convert RNA genomes into DNA, infecting germ cells, and transmitting to offspring. A large amount of ancient retroviral sequences are known as endogenous retroviruses (ERVs). Soluble Env protein derived from ERVs have been identified to function as a co-factor that assists in FeLV-T infection. However, herein, we show that the soluble Env protein exhibits antiviral activity and provides resistance to mammalian retrovirus infection through competitive receptor binding. In particular, this finding may explain why FeLV-B transmission is not observed among domestic cats. ERV-derived molecules can benefit animals in an evolutionary arm race, highlighting the double-edged sword nature of ERVs.

microbiology↗