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Aihara, N.

Publications and source records attributed to Aihara, N..

2 recordsLinked to original sources

Genome-scale CRISPR-Cas9 screen identifies novel host factors as potential therapeutic targets for SARS-CoV-2 infection.

Although many host factors important for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection have been reported, the mechanisms by which the virus interacts with host cells remain elusive. Here, we identified tripartite motif containing (TRIM) 28, TRIM33, euchromatic histone lysine methyltransferase (EHMT) 1, and EHMT2 as novel proviral factors involved in SARS-CoV-2 infection by CRISPR-Cas9 screening. We demonstrated that TRIM28 plays a role(s) in viral particle formation and that TRIM33, EHMT1, and EHMT2 are involved in viral transcription and replication using cells with suppressed gene expression. UNC0642, a compound that specifically inhibits the methyltransferase activity of EHMT1/2, strikingly suppressed SARS-CoV-2 growth in cultured cells and reduced disease severity in a hamster infection model. This study suggests that EHMT1/2 may be a novel therapeutic target for SARS-CoV-2 infection.

microbiology↗

Ban on wild bird importation accelerated the spread of global viral outbreaks in parrots.

Since the isolation of the first parrot bornavirus (PaBV), which causes slow-onset, fatal neurological disease in various parrot species, in the United States in 2008, PaBVs have spread rapidly worldwide; however, the reason remains unknown. In this study, we show that the most dominant lethal genotype, PaBV-4, spread via the global trade of captive birds. Analyses of traded parrot numbers in the Convention on International Trade in Endangered Species of Wild Fauna and Flora (CITES) database and PaBV-4 phylodynamics suggested that the ban of wild imported birds in the European Union (EU) in 2007 facilitated the international trade of captive parrots, which resulted in an increase in the effective population size of PaBV-4. This change coincided with a historical PaBV-4 epidemic. These data suggest that due to the low transmission efficiency and long incubation period of PaBV-4, the majority of PaBV-4 transmission occurred in breeding facilities and the increased trade of captive parrots accelerated the global spread of PaBV-4 infection. Our results indicate that interventions for the protection of wild animals and prevention of infectious diseases may conversely cause epidemics of infectious diseases in the global system. Conservation of ecosystems requires not only the establishment of importation restrictions and maintenance of the diversity of wild animals but also the implementation of multifaceted management measures, such as quarantine policies and breeding control in captive animals.

microbiology↗