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Gp120 on HIV-1 Virions Lacks O-Linked Carbohydrate

As HIV-1-encoded envelope protein traverses the secretory pathway, it may be modified with N- and O-linked carbohydrate. When the gp120s of HIV-1 NL4-3, HIV-1 YU2, HIV-1 Bal, HIV-1 JRFL, and HIV-1 JRCSF were expressed as secreted proteins, the threonine at consensus position 499 was found to be O-gl...

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Autores principales: Stansell, Elizabeth, Panico, Maria, Canis, Kevin, Pang, Poh-Choo, Bouché, Laura, Binet, Daniel, O'Connor, Michael-John, Chertova, Elena, Bess, Julian, Lifson, Jeffrey D., Haslam, Stuart M., Morris, Howard R., Desrosiers, Ronald C., Dell, Anne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4410959/
https://www.ncbi.nlm.nih.gov/pubmed/25915761
http://dx.doi.org/10.1371/journal.pone.0124784
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author Stansell, Elizabeth
Panico, Maria
Canis, Kevin
Pang, Poh-Choo
Bouché, Laura
Binet, Daniel
O'Connor, Michael-John
Chertova, Elena
Bess, Julian
Lifson, Jeffrey D.
Haslam, Stuart M.
Morris, Howard R.
Desrosiers, Ronald C.
Dell, Anne
author_facet Stansell, Elizabeth
Panico, Maria
Canis, Kevin
Pang, Poh-Choo
Bouché, Laura
Binet, Daniel
O'Connor, Michael-John
Chertova, Elena
Bess, Julian
Lifson, Jeffrey D.
Haslam, Stuart M.
Morris, Howard R.
Desrosiers, Ronald C.
Dell, Anne
author_sort Stansell, Elizabeth
collection PubMed
description As HIV-1-encoded envelope protein traverses the secretory pathway, it may be modified with N- and O-linked carbohydrate. When the gp120s of HIV-1 NL4-3, HIV-1 YU2, HIV-1 Bal, HIV-1 JRFL, and HIV-1 JRCSF were expressed as secreted proteins, the threonine at consensus position 499 was found to be O-glycosylated. For SIVmac239, the corresponding threonine was also glycosylated when gp120 was recombinantly expressed. Similarly-positioned, highly-conserved threonines in the influenza A virus H1N1 HA1 and H5N1 HA1 envelope proteins were also found to carry O-glycans when expressed as secreted proteins. In all cases, the threonines were modified predominantly with disialylated core 1 glycans, together with related core 1 and core 2 structures. Secreted HIV-1 gp140 was modified to a lesser extent with mainly monosialylated core 1 O-glycans, suggesting that the ectodomain of the gp41 transmembrane component may limit the accessibility of Thr499 to glycosyltransferases. In striking contrast to these findings, gp120 on purified virions of HIV-1 Bal and SIV CP-MAC lacked any detectable O-glycosylation of the C-terminal threonine. Our results indicate the absence of O-linked carbohydrates on Thr499 as it exists on the surface of virions and suggest caution in the interpretation of analyses of post-translational modifications that utilize recombinant forms of envelope protein.
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spelling pubmed-44109592015-05-07 Gp120 on HIV-1 Virions Lacks O-Linked Carbohydrate Stansell, Elizabeth Panico, Maria Canis, Kevin Pang, Poh-Choo Bouché, Laura Binet, Daniel O'Connor, Michael-John Chertova, Elena Bess, Julian Lifson, Jeffrey D. Haslam, Stuart M. Morris, Howard R. Desrosiers, Ronald C. Dell, Anne PLoS One Research Article As HIV-1-encoded envelope protein traverses the secretory pathway, it may be modified with N- and O-linked carbohydrate. When the gp120s of HIV-1 NL4-3, HIV-1 YU2, HIV-1 Bal, HIV-1 JRFL, and HIV-1 JRCSF were expressed as secreted proteins, the threonine at consensus position 499 was found to be O-glycosylated. For SIVmac239, the corresponding threonine was also glycosylated when gp120 was recombinantly expressed. Similarly-positioned, highly-conserved threonines in the influenza A virus H1N1 HA1 and H5N1 HA1 envelope proteins were also found to carry O-glycans when expressed as secreted proteins. In all cases, the threonines were modified predominantly with disialylated core 1 glycans, together with related core 1 and core 2 structures. Secreted HIV-1 gp140 was modified to a lesser extent with mainly monosialylated core 1 O-glycans, suggesting that the ectodomain of the gp41 transmembrane component may limit the accessibility of Thr499 to glycosyltransferases. In striking contrast to these findings, gp120 on purified virions of HIV-1 Bal and SIV CP-MAC lacked any detectable O-glycosylation of the C-terminal threonine. Our results indicate the absence of O-linked carbohydrates on Thr499 as it exists on the surface of virions and suggest caution in the interpretation of analyses of post-translational modifications that utilize recombinant forms of envelope protein. Public Library of Science 2015-04-27 /pmc/articles/PMC4410959/ /pubmed/25915761 http://dx.doi.org/10.1371/journal.pone.0124784 Text en © 2015 Stansell et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Stansell, Elizabeth
Panico, Maria
Canis, Kevin
Pang, Poh-Choo
Bouché, Laura
Binet, Daniel
O'Connor, Michael-John
Chertova, Elena
Bess, Julian
Lifson, Jeffrey D.
Haslam, Stuart M.
Morris, Howard R.
Desrosiers, Ronald C.
Dell, Anne
Gp120 on HIV-1 Virions Lacks O-Linked Carbohydrate
title Gp120 on HIV-1 Virions Lacks O-Linked Carbohydrate
title_full Gp120 on HIV-1 Virions Lacks O-Linked Carbohydrate
title_fullStr Gp120 on HIV-1 Virions Lacks O-Linked Carbohydrate
title_full_unstemmed Gp120 on HIV-1 Virions Lacks O-Linked Carbohydrate
title_short Gp120 on HIV-1 Virions Lacks O-Linked Carbohydrate
title_sort gp120 on hiv-1 virions lacks o-linked carbohydrate
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4410959/
https://www.ncbi.nlm.nih.gov/pubmed/25915761
http://dx.doi.org/10.1371/journal.pone.0124784
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