Cargando…

The degree of polymerization and sulfation patterns in heparan sulfate are critical determinants of cytomegalovirus entry into host cells

Several enveloped viruses, including herpesviruses attach to host cells by initially interacting with cell surface heparan sulfate (HS) proteoglycans followed by specific coreceptor engagement which culminates in virus-host membrane fusion and virus entry. Interfering with HS-herpesvirus interaction...

Descripción completa

Detalles Bibliográficos
Autores principales: Mitra, Dipanwita, Hasan, Mohammad H., Bates, John T., Bierdeman, Michael A., Ederer, Dallas R., Parmar, Rinkuben C., Fassero, Lauren A., Liang, Quntao, Qiu, Hong, Tiwari, Vaibhav, Zhang, Fuming, Linhardt, Robert J., Sharp, Joshua S., Wang, Lianchun, Tandon, Ritesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8384199/
https://www.ncbi.nlm.nih.gov/pubmed/34352038
http://dx.doi.org/10.1371/journal.ppat.1009803
_version_ 1783741870047756288
author Mitra, Dipanwita
Hasan, Mohammad H.
Bates, John T.
Bierdeman, Michael A.
Ederer, Dallas R.
Parmar, Rinkuben C.
Fassero, Lauren A.
Liang, Quntao
Qiu, Hong
Tiwari, Vaibhav
Zhang, Fuming
Linhardt, Robert J.
Sharp, Joshua S.
Wang, Lianchun
Tandon, Ritesh
author_facet Mitra, Dipanwita
Hasan, Mohammad H.
Bates, John T.
Bierdeman, Michael A.
Ederer, Dallas R.
Parmar, Rinkuben C.
Fassero, Lauren A.
Liang, Quntao
Qiu, Hong
Tiwari, Vaibhav
Zhang, Fuming
Linhardt, Robert J.
Sharp, Joshua S.
Wang, Lianchun
Tandon, Ritesh
author_sort Mitra, Dipanwita
collection PubMed
description Several enveloped viruses, including herpesviruses attach to host cells by initially interacting with cell surface heparan sulfate (HS) proteoglycans followed by specific coreceptor engagement which culminates in virus-host membrane fusion and virus entry. Interfering with HS-herpesvirus interactions has long been known to result in significant reduction in virus infectivity indicating that HS play important roles in initiating virus entry. In this study, we provide a series of evidence to prove that specific sulfations as well as the degree of polymerization (dp) of HS govern human cytomegalovirus (CMV) binding and infection. First, purified CMV extracellular virions preferentially bind to sulfated longer chain HS on a glycoarray compared to a variety of unsulfated glycosaminoglycans including unsulfated shorter chain HS. Second, the fraction of glycosaminoglycans (GAG) displaying higher dp and sulfation has a larger impact on CMV titers compared to other fractions. Third, cell lines deficient in specific glucosaminyl sulfotransferases produce significantly reduced CMV titers compared to wild-type cells and virus entry is compromised in these mutant cells. Finally, purified glycoprotein B shows strong binding to heparin, and desulfated heparin analogs compete poorly with heparin for gB binding. Taken together, these results highlight the significance of HS chain length and sulfation patterns in CMV attachment and infectivity.
format Online
Article
Text
id pubmed-8384199
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-83841992021-08-25 The degree of polymerization and sulfation patterns in heparan sulfate are critical determinants of cytomegalovirus entry into host cells Mitra, Dipanwita Hasan, Mohammad H. Bates, John T. Bierdeman, Michael A. Ederer, Dallas R. Parmar, Rinkuben C. Fassero, Lauren A. Liang, Quntao Qiu, Hong Tiwari, Vaibhav Zhang, Fuming Linhardt, Robert J. Sharp, Joshua S. Wang, Lianchun Tandon, Ritesh PLoS Pathog Research Article Several enveloped viruses, including herpesviruses attach to host cells by initially interacting with cell surface heparan sulfate (HS) proteoglycans followed by specific coreceptor engagement which culminates in virus-host membrane fusion and virus entry. Interfering with HS-herpesvirus interactions has long been known to result in significant reduction in virus infectivity indicating that HS play important roles in initiating virus entry. In this study, we provide a series of evidence to prove that specific sulfations as well as the degree of polymerization (dp) of HS govern human cytomegalovirus (CMV) binding and infection. First, purified CMV extracellular virions preferentially bind to sulfated longer chain HS on a glycoarray compared to a variety of unsulfated glycosaminoglycans including unsulfated shorter chain HS. Second, the fraction of glycosaminoglycans (GAG) displaying higher dp and sulfation has a larger impact on CMV titers compared to other fractions. Third, cell lines deficient in specific glucosaminyl sulfotransferases produce significantly reduced CMV titers compared to wild-type cells and virus entry is compromised in these mutant cells. Finally, purified glycoprotein B shows strong binding to heparin, and desulfated heparin analogs compete poorly with heparin for gB binding. Taken together, these results highlight the significance of HS chain length and sulfation patterns in CMV attachment and infectivity. Public Library of Science 2021-08-05 /pmc/articles/PMC8384199/ /pubmed/34352038 http://dx.doi.org/10.1371/journal.ppat.1009803 Text en © 2021 Mitra et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Mitra, Dipanwita
Hasan, Mohammad H.
Bates, John T.
Bierdeman, Michael A.
Ederer, Dallas R.
Parmar, Rinkuben C.
Fassero, Lauren A.
Liang, Quntao
Qiu, Hong
Tiwari, Vaibhav
Zhang, Fuming
Linhardt, Robert J.
Sharp, Joshua S.
Wang, Lianchun
Tandon, Ritesh
The degree of polymerization and sulfation patterns in heparan sulfate are critical determinants of cytomegalovirus entry into host cells
title The degree of polymerization and sulfation patterns in heparan sulfate are critical determinants of cytomegalovirus entry into host cells
title_full The degree of polymerization and sulfation patterns in heparan sulfate are critical determinants of cytomegalovirus entry into host cells
title_fullStr The degree of polymerization and sulfation patterns in heparan sulfate are critical determinants of cytomegalovirus entry into host cells
title_full_unstemmed The degree of polymerization and sulfation patterns in heparan sulfate are critical determinants of cytomegalovirus entry into host cells
title_short The degree of polymerization and sulfation patterns in heparan sulfate are critical determinants of cytomegalovirus entry into host cells
title_sort degree of polymerization and sulfation patterns in heparan sulfate are critical determinants of cytomegalovirus entry into host cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8384199/
https://www.ncbi.nlm.nih.gov/pubmed/34352038
http://dx.doi.org/10.1371/journal.ppat.1009803
work_keys_str_mv AT mitradipanwita thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT hasanmohammadh thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT batesjohnt thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT bierdemanmichaela thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT edererdallasr thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT parmarrinkubenc thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT fasserolaurena thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT liangquntao thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT qiuhong thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT tiwarivaibhav thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT zhangfuming thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT linhardtrobertj thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT sharpjoshuas thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT wanglianchun thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT tandonritesh thedegreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT mitradipanwita degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT hasanmohammadh degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT batesjohnt degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT bierdemanmichaela degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT edererdallasr degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT parmarrinkubenc degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT fasserolaurena degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT liangquntao degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT qiuhong degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT tiwarivaibhav degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT zhangfuming degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT linhardtrobertj degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT sharpjoshuas degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT wanglianchun degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells
AT tandonritesh degreeofpolymerizationandsulfationpatternsinheparansulfatearecriticaldeterminantsofcytomegalovirusentryintohostcells