Cargando…
Glycoform Analysis of Recombinant and Human Immunodeficiency Virus Envelope Protein gp120 via Higher Energy Collisional Dissociation and Spectral-Aligning Strategy
[Image: see text] Envelope protein gp120 of human immunodeficiency virus (HIV) is armored with a dense glycan shield, which plays critical roles in envelope folding, immune-evasion, infectivity, and immunogenicity. Site-specific glycosylation profiling of recombinant gp120 is very challenging. There...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American
Chemical
Society
2014
|
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4215848/ https://www.ncbi.nlm.nih.gov/pubmed/24941220 http://dx.doi.org/10.1021/ac500876p |
_version_ | 1782342161753178112 |
---|---|
author | Yang, Weiming Shah, Punit Toghi Eshghi, Shadi Yang, Shuang Sun, Shisheng Ao, Minghui Rubin, Abigail Jackson, J. Brooks Zhang, Hui |
author_facet | Yang, Weiming Shah, Punit Toghi Eshghi, Shadi Yang, Shuang Sun, Shisheng Ao, Minghui Rubin, Abigail Jackson, J. Brooks Zhang, Hui |
author_sort | Yang, Weiming |
collection | PubMed |
description | [Image: see text] Envelope protein gp120 of human immunodeficiency virus (HIV) is armored with a dense glycan shield, which plays critical roles in envelope folding, immune-evasion, infectivity, and immunogenicity. Site-specific glycosylation profiling of recombinant gp120 is very challenging. Therefore, glycoproteomic analysis of native viral gp120 is still formidable to date. This challenge promoted us to employ a Q-Exactive mass spectrometer to identify low abundant glycopeptides from virion-associated gp120. To search the HCD-MS data for glycopeptides, a novel spectral-aligning strategy was developed. This strategy depends on the observation that glycopeptides and the corresponding deglycosylated peptides share very similar MS/MS pattern in terms of b- and y-ions that do not contain the site of glycosylation. Moreover, glycopeptides with an identical peptide backbone show nearly resembling spectra regardless of the attached glycan structures. For the recombinant gp120, this “copy–paste” spectral pattern of glycopeptides facilitated identification of 2224 spectra using only 18 spectral templates, and after precursor mass correction, 1268 (57%) spectra were assigned to 460 unique glycopeptides accommodating 19 N-linked and one O-linked glycosylation sites (glycosites). Strikingly, we were able to observe five N- and one O-linked glycosites in native gp120. We further revealed that except for Asn276 in the C2 region, glycans were processed to contain both high mannose and hybrid/complex glycans; an additional four N-linked glycosites were decorated with high mannose type. Core 1 O-linked glycan Gal(1)GalNAc(1) was seen for the O-linked glycosite at Thr499. This direct observation of site-specific glycosylation of virion-derived gp120 has implications in HIV glycobiology and vaccine design. |
format | Online Article Text |
id | pubmed-4215848 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | American
Chemical
Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-42158482015-06-18 Glycoform Analysis of Recombinant and Human Immunodeficiency Virus Envelope Protein gp120 via Higher Energy Collisional Dissociation and Spectral-Aligning Strategy Yang, Weiming Shah, Punit Toghi Eshghi, Shadi Yang, Shuang Sun, Shisheng Ao, Minghui Rubin, Abigail Jackson, J. Brooks Zhang, Hui Anal Chem [Image: see text] Envelope protein gp120 of human immunodeficiency virus (HIV) is armored with a dense glycan shield, which plays critical roles in envelope folding, immune-evasion, infectivity, and immunogenicity. Site-specific glycosylation profiling of recombinant gp120 is very challenging. Therefore, glycoproteomic analysis of native viral gp120 is still formidable to date. This challenge promoted us to employ a Q-Exactive mass spectrometer to identify low abundant glycopeptides from virion-associated gp120. To search the HCD-MS data for glycopeptides, a novel spectral-aligning strategy was developed. This strategy depends on the observation that glycopeptides and the corresponding deglycosylated peptides share very similar MS/MS pattern in terms of b- and y-ions that do not contain the site of glycosylation. Moreover, glycopeptides with an identical peptide backbone show nearly resembling spectra regardless of the attached glycan structures. For the recombinant gp120, this “copy–paste” spectral pattern of glycopeptides facilitated identification of 2224 spectra using only 18 spectral templates, and after precursor mass correction, 1268 (57%) spectra were assigned to 460 unique glycopeptides accommodating 19 N-linked and one O-linked glycosylation sites (glycosites). Strikingly, we were able to observe five N- and one O-linked glycosites in native gp120. We further revealed that except for Asn276 in the C2 region, glycans were processed to contain both high mannose and hybrid/complex glycans; an additional four N-linked glycosites were decorated with high mannose type. Core 1 O-linked glycan Gal(1)GalNAc(1) was seen for the O-linked glycosite at Thr499. This direct observation of site-specific glycosylation of virion-derived gp120 has implications in HIV glycobiology and vaccine design. American Chemical Society 2014-06-18 2014-07-15 /pmc/articles/PMC4215848/ /pubmed/24941220 http://dx.doi.org/10.1021/ac500876p Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) |
spellingShingle | Yang, Weiming Shah, Punit Toghi Eshghi, Shadi Yang, Shuang Sun, Shisheng Ao, Minghui Rubin, Abigail Jackson, J. Brooks Zhang, Hui Glycoform Analysis of Recombinant and Human Immunodeficiency Virus Envelope Protein gp120 via Higher Energy Collisional Dissociation and Spectral-Aligning Strategy |
title | Glycoform Analysis of Recombinant and Human Immunodeficiency
Virus Envelope Protein gp120 via Higher Energy Collisional Dissociation
and Spectral-Aligning Strategy |
title_full | Glycoform Analysis of Recombinant and Human Immunodeficiency
Virus Envelope Protein gp120 via Higher Energy Collisional Dissociation
and Spectral-Aligning Strategy |
title_fullStr | Glycoform Analysis of Recombinant and Human Immunodeficiency
Virus Envelope Protein gp120 via Higher Energy Collisional Dissociation
and Spectral-Aligning Strategy |
title_full_unstemmed | Glycoform Analysis of Recombinant and Human Immunodeficiency
Virus Envelope Protein gp120 via Higher Energy Collisional Dissociation
and Spectral-Aligning Strategy |
title_short | Glycoform Analysis of Recombinant and Human Immunodeficiency
Virus Envelope Protein gp120 via Higher Energy Collisional Dissociation
and Spectral-Aligning Strategy |
title_sort | glycoform analysis of recombinant and human immunodeficiency
virus envelope protein gp120 via higher energy collisional dissociation
and spectral-aligning strategy |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4215848/ https://www.ncbi.nlm.nih.gov/pubmed/24941220 http://dx.doi.org/10.1021/ac500876p |
work_keys_str_mv | AT yangweiming glycoformanalysisofrecombinantandhumanimmunodeficiencyvirusenvelopeproteingp120viahigherenergycollisionaldissociationandspectralaligningstrategy AT shahpunit glycoformanalysisofrecombinantandhumanimmunodeficiencyvirusenvelopeproteingp120viahigherenergycollisionaldissociationandspectralaligningstrategy AT toghieshghishadi glycoformanalysisofrecombinantandhumanimmunodeficiencyvirusenvelopeproteingp120viahigherenergycollisionaldissociationandspectralaligningstrategy AT yangshuang glycoformanalysisofrecombinantandhumanimmunodeficiencyvirusenvelopeproteingp120viahigherenergycollisionaldissociationandspectralaligningstrategy AT sunshisheng glycoformanalysisofrecombinantandhumanimmunodeficiencyvirusenvelopeproteingp120viahigherenergycollisionaldissociationandspectralaligningstrategy AT aominghui glycoformanalysisofrecombinantandhumanimmunodeficiencyvirusenvelopeproteingp120viahigherenergycollisionaldissociationandspectralaligningstrategy AT rubinabigail glycoformanalysisofrecombinantandhumanimmunodeficiencyvirusenvelopeproteingp120viahigherenergycollisionaldissociationandspectralaligningstrategy AT jacksonjbrooks glycoformanalysisofrecombinantandhumanimmunodeficiencyvirusenvelopeproteingp120viahigherenergycollisionaldissociationandspectralaligningstrategy AT zhanghui glycoformanalysisofrecombinantandhumanimmunodeficiencyvirusenvelopeproteingp120viahigherenergycollisionaldissociationandspectralaligningstrategy |