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Publication : Envelope protein ubiquitination drives entry and pathogenesis of Zika virus.

First Author  Giraldo MI Year  2020
Journal  Nature Volume  585
Issue  7825 Pages  414-419
PubMed ID  32641828 Mgi Jnum  J:296988
Mgi Id  MGI:6471555 Doi  10.1038/s41586-020-2457-8
Citation  Giraldo MI, et al. (2020) Envelope protein ubiquitination drives entry and pathogenesis of Zika virus. Nature 585(7825):414-419
abstractText  Zika virus (ZIKV) belongs to the family Flaviviridae, and is related to other viruses that cause human diseases. Unlike other flaviviruses, ZIKV infection can cause congenital neurological disorders and replicates efficiently in reproductive tissues(1-3). Here we show that the envelope protein (E) of ZIKV is polyubiquitinated by the E3 ubiquitin ligase TRIM7 through Lys63 (K63)-linked polyubiquitination. Accordingly, ZIKV replicates less efficiently in the brain and reproductive tissues of Trim7(-/-) mice. Ubiquitinated E is present on infectious virions of ZIKV when they are released from specific cell types, and enhances virus attachment and entry into cells. Specifically, K63-linked polyubiquitin chains directly interact with the TIM1 (also known as HAVCR1) receptor of host cells, which enhances virus entry in cells as well as in brain tissue in vivo. Recombinant ZIKV mutants that lack ubiquitination are attenuated in human cells and in wild-type mice, but not in live mosquitoes. Monoclonal antibodies against K63-linked polyubiquitin specifically neutralize ZIKV and reduce viraemia in mice. Our results demonstrate that the ubiquitination of ZIKV E is an important determinant of virus entry, tropism and pathogenesis.
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