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Bat IFITM3 restriction depends on S-palmitoylation and a polymorphic site within the CD225 domain
Host interferon-induced transmembrane proteins (IFITMs) are broad-spectrum antiviral restriction factors. Of these, IFITM3 potently inhibits viruses that enter cells through acidic endosomes, many of which are zoonotic and emerging viruses with bats (order Chiroptera) as their natural hosts. We prev...
Autores principales: | , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Life Science Alliance LLC
2019
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6907390/ https://www.ncbi.nlm.nih.gov/pubmed/31826928 http://dx.doi.org/10.26508/lsa.201900542 |
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author | Benfield, Camilla TO MacKenzie, Farrell Ritzefeld, Markus Mazzon, Michela Weston, Stuart Tate, Edward W Teo, Boon Han Smith, Sarah E Kellam, Paul Holmes, Edward C Marsh, Mark |
author_facet | Benfield, Camilla TO MacKenzie, Farrell Ritzefeld, Markus Mazzon, Michela Weston, Stuart Tate, Edward W Teo, Boon Han Smith, Sarah E Kellam, Paul Holmes, Edward C Marsh, Mark |
author_sort | Benfield, Camilla TO |
collection | PubMed |
description | Host interferon-induced transmembrane proteins (IFITMs) are broad-spectrum antiviral restriction factors. Of these, IFITM3 potently inhibits viruses that enter cells through acidic endosomes, many of which are zoonotic and emerging viruses with bats (order Chiroptera) as their natural hosts. We previously demonstrated that microbat IFITM3 is antiviral. Here, we show that bat IFITMs are characterized by strong adaptive evolution and identify a highly variable and functionally important site—codon 70—within the conserved CD225 domain of IFITMs. Mutation of this residue in microbat IFITM3 impairs restriction of representatives of four different virus families that enter cells via endosomes. This mutant shows altered subcellular localization and reduced S-palmitoylation, a phenotype copied by mutation of conserved cysteine residues in microbat IFITM3. Furthermore, we show that microbat IFITM3 is S-palmitoylated on cysteine residues C71, C72, and C105, mutation of each cysteine individually impairs virus restriction, and a triple C71A-C72A-C105A mutant loses all restriction activity, concomitant with subcellular re-localization of microbat IFITM3 to Golgi-associated sites. Thus, we propose that S-palmitoylation is critical for Chiropteran IFITM3 function and identify a key molecular determinant of IFITM3 S-palmitoylation. |
format | Online Article Text |
id | pubmed-6907390 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | Life Science Alliance LLC |
record_format | MEDLINE/PubMed |
spelling | pubmed-69073902019-12-16 Bat IFITM3 restriction depends on S-palmitoylation and a polymorphic site within the CD225 domain Benfield, Camilla TO MacKenzie, Farrell Ritzefeld, Markus Mazzon, Michela Weston, Stuart Tate, Edward W Teo, Boon Han Smith, Sarah E Kellam, Paul Holmes, Edward C Marsh, Mark Life Sci Alliance Research Articles Host interferon-induced transmembrane proteins (IFITMs) are broad-spectrum antiviral restriction factors. Of these, IFITM3 potently inhibits viruses that enter cells through acidic endosomes, many of which are zoonotic and emerging viruses with bats (order Chiroptera) as their natural hosts. We previously demonstrated that microbat IFITM3 is antiviral. Here, we show that bat IFITMs are characterized by strong adaptive evolution and identify a highly variable and functionally important site—codon 70—within the conserved CD225 domain of IFITMs. Mutation of this residue in microbat IFITM3 impairs restriction of representatives of four different virus families that enter cells via endosomes. This mutant shows altered subcellular localization and reduced S-palmitoylation, a phenotype copied by mutation of conserved cysteine residues in microbat IFITM3. Furthermore, we show that microbat IFITM3 is S-palmitoylated on cysteine residues C71, C72, and C105, mutation of each cysteine individually impairs virus restriction, and a triple C71A-C72A-C105A mutant loses all restriction activity, concomitant with subcellular re-localization of microbat IFITM3 to Golgi-associated sites. Thus, we propose that S-palmitoylation is critical for Chiropteran IFITM3 function and identify a key molecular determinant of IFITM3 S-palmitoylation. Life Science Alliance LLC 2019-12-11 /pmc/articles/PMC6907390/ /pubmed/31826928 http://dx.doi.org/10.26508/lsa.201900542 Text en © 2019 Benfield et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Research Articles Benfield, Camilla TO MacKenzie, Farrell Ritzefeld, Markus Mazzon, Michela Weston, Stuart Tate, Edward W Teo, Boon Han Smith, Sarah E Kellam, Paul Holmes, Edward C Marsh, Mark Bat IFITM3 restriction depends on S-palmitoylation and a polymorphic site within the CD225 domain |
title | Bat IFITM3 restriction depends on S-palmitoylation and a polymorphic site within the CD225 domain |
title_full | Bat IFITM3 restriction depends on S-palmitoylation and a polymorphic site within the CD225 domain |
title_fullStr | Bat IFITM3 restriction depends on S-palmitoylation and a polymorphic site within the CD225 domain |
title_full_unstemmed | Bat IFITM3 restriction depends on S-palmitoylation and a polymorphic site within the CD225 domain |
title_short | Bat IFITM3 restriction depends on S-palmitoylation and a polymorphic site within the CD225 domain |
title_sort | bat ifitm3 restriction depends on s-palmitoylation and a polymorphic site within the cd225 domain |
topic | Research Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6907390/ https://www.ncbi.nlm.nih.gov/pubmed/31826928 http://dx.doi.org/10.26508/lsa.201900542 |
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