The Human Cytomegalovirus UL116 Glycoprotein Is a Chaperone to Control gH-Based Complexes Levels on Virions

Human cytomegalovirus (HCMV) relies in large part upon the viral membrane fusion glycoprotein B and two alternative gH/gL complexes, gH/gL/gO (Trimer) and gH/gL/UL128/UL130/UL131A (Pentamer) to enter into cells. The relative amounts of Trimer and Pentamer vary among HCMV strains and contribute to di...

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Main Authors: Giacomo Vezzani, Diego Amendola, Dong Yu, Sumana Chandramouli, Elisabetta Frigimelica, Domenico Maione, Marcello Merola
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-04-01
Series:Frontiers in Microbiology
Subjects:
gH
Online Access:https://www.frontiersin.org/articles/10.3389/fmicb.2021.630121/full
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spelling doaj-f30e6a3d30694369bd62dc0b84f1235a2021-04-06T05:39:23ZengFrontiers Media S.A.Frontiers in Microbiology1664-302X2021-04-011210.3389/fmicb.2021.630121630121The Human Cytomegalovirus UL116 Glycoprotein Is a Chaperone to Control gH-Based Complexes Levels on VirionsGiacomo Vezzani0Giacomo Vezzani1Diego Amendola2Dong Yu3Sumana Chandramouli4Elisabetta Frigimelica5Domenico Maione6Marcello Merola7Marcello Merola8GSK, Siena, ItalyDepartment of Pharmacy and Biotechnology (FABIT), University of Bologna, Bologna, ItalyGSK, Siena, ItalyGSK, Rockville, MD, United StatesGSK, Rockville, MD, United StatesGSK, Siena, ItalyGSK, Siena, ItalyGSK, Siena, ItalyDepartment of Biology, University of Naples Federico II, Naples, ItalyHuman cytomegalovirus (HCMV) relies in large part upon the viral membrane fusion glycoprotein B and two alternative gH/gL complexes, gH/gL/gO (Trimer) and gH/gL/UL128/UL130/UL131A (Pentamer) to enter into cells. The relative amounts of Trimer and Pentamer vary among HCMV strains and contribute to differences in cell tropism. Although the viral ER resident protein UL148 has been shown to interact with gH to facilitate gO incorporation, the mechanisms that favor the assembly and maturation of one complex over another remain poorly understood. HCMV virions also contain an alternative non-disulfide bound heterodimer comprised of gH and UL116 whose function remains unknown. Here, we show that disruption of HCMV gene UL116 causes infectivity defects of ∼10-fold relative to wild-type virus and leads to reduced expression of both gH/gL complexes in virions. Furthermore, gH that is not covalently bound to other viral glycoproteins, which are readily detected in wild-type HCMV virions, become undetectable in the absence of UL116 suggesting that the gH/UL116 complex is abundant in virions. We find evidence that UL116 and UL148 interact during infection indicating that the two proteins might cooperate to regulate the abundance of HCMV gH complexes. Altogether, these results are consistent with a role of UL116 as a chaperone for gH during the assembly and maturation of gH complexes in infected cells.https://www.frontiersin.org/articles/10.3389/fmicb.2021.630121/fullhuman cytomegalovirusgHUL116pentamergH/gL/gOchaperone
collection DOAJ
language English
format Article
sources DOAJ
author Giacomo Vezzani
Giacomo Vezzani
Diego Amendola
Dong Yu
Sumana Chandramouli
Elisabetta Frigimelica
Domenico Maione
Marcello Merola
Marcello Merola
spellingShingle Giacomo Vezzani
Giacomo Vezzani
Diego Amendola
Dong Yu
Sumana Chandramouli
Elisabetta Frigimelica
Domenico Maione
Marcello Merola
Marcello Merola
The Human Cytomegalovirus UL116 Glycoprotein Is a Chaperone to Control gH-Based Complexes Levels on Virions
Frontiers in Microbiology
human cytomegalovirus
gH
UL116
pentamer
gH/gL/gO
chaperone
author_facet Giacomo Vezzani
Giacomo Vezzani
Diego Amendola
Dong Yu
Sumana Chandramouli
Elisabetta Frigimelica
Domenico Maione
Marcello Merola
Marcello Merola
author_sort Giacomo Vezzani
title The Human Cytomegalovirus UL116 Glycoprotein Is a Chaperone to Control gH-Based Complexes Levels on Virions
title_short The Human Cytomegalovirus UL116 Glycoprotein Is a Chaperone to Control gH-Based Complexes Levels on Virions
title_full The Human Cytomegalovirus UL116 Glycoprotein Is a Chaperone to Control gH-Based Complexes Levels on Virions
title_fullStr The Human Cytomegalovirus UL116 Glycoprotein Is a Chaperone to Control gH-Based Complexes Levels on Virions
title_full_unstemmed The Human Cytomegalovirus UL116 Glycoprotein Is a Chaperone to Control gH-Based Complexes Levels on Virions
title_sort human cytomegalovirus ul116 glycoprotein is a chaperone to control gh-based complexes levels on virions
publisher Frontiers Media S.A.
series Frontiers in Microbiology
issn 1664-302X
publishDate 2021-04-01
description Human cytomegalovirus (HCMV) relies in large part upon the viral membrane fusion glycoprotein B and two alternative gH/gL complexes, gH/gL/gO (Trimer) and gH/gL/UL128/UL130/UL131A (Pentamer) to enter into cells. The relative amounts of Trimer and Pentamer vary among HCMV strains and contribute to differences in cell tropism. Although the viral ER resident protein UL148 has been shown to interact with gH to facilitate gO incorporation, the mechanisms that favor the assembly and maturation of one complex over another remain poorly understood. HCMV virions also contain an alternative non-disulfide bound heterodimer comprised of gH and UL116 whose function remains unknown. Here, we show that disruption of HCMV gene UL116 causes infectivity defects of ∼10-fold relative to wild-type virus and leads to reduced expression of both gH/gL complexes in virions. Furthermore, gH that is not covalently bound to other viral glycoproteins, which are readily detected in wild-type HCMV virions, become undetectable in the absence of UL116 suggesting that the gH/UL116 complex is abundant in virions. We find evidence that UL116 and UL148 interact during infection indicating that the two proteins might cooperate to regulate the abundance of HCMV gH complexes. Altogether, these results are consistent with a role of UL116 as a chaperone for gH during the assembly and maturation of gH complexes in infected cells.
topic human cytomegalovirus
gH
UL116
pentamer
gH/gL/gO
chaperone
url https://www.frontiersin.org/articles/10.3389/fmicb.2021.630121/full
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