Human Cytomegalovirus Cell Tropism and Host Cell Receptors

In the 1970s−1980s, a striking increase in the number of disseminated human cytomegalovirus (HCMV) infections occurred in immunosuppressed patient populations. Autopsy findings documented the in vivo disseminated infection (besides fibroblasts) of epithelial cells, endothelial cells, and p...

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Main Authors: Giuseppe Gerna, Anna Kabanova, Daniele Lilleri
Format: Article
Language:English
Published: MDPI AG 2019-07-01
Series:Vaccines
Subjects:
Online Access:https://www.mdpi.com/2076-393X/7/3/70
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spelling doaj-7de8d3e6c1d14eedbf89c3ed4310c3cd2020-11-25T01:26:22ZengMDPI AGVaccines2076-393X2019-07-01737010.3390/vaccines7030070vaccines7030070Human Cytomegalovirus Cell Tropism and Host Cell ReceptorsGiuseppe Gerna0Anna Kabanova1Daniele Lilleri2Laboratories of Genetics, Transplantology and Cardiovascular Diseases, Fondazione IRCCS Policlinico San Matteo, 27100 Pavia, ItalyToscana Life Sciences Foundation, 53100 Siena, ItalyLaboratories of Genetics, Transplantology and Cardiovascular Diseases, Fondazione IRCCS Policlinico San Matteo, 27100 Pavia, ItalyIn the 1970s−1980s, a striking increase in the number of disseminated human cytomegalovirus (HCMV) infections occurred in immunosuppressed patient populations. Autopsy findings documented the in vivo disseminated infection (besides fibroblasts) of epithelial cells, endothelial cells, and polymorphonuclear leukocytes. As a result, multiple diagnostic assays, such as quantification of HCMV antigenemia (pp65), viremia (infectious virus), and DNAemia (HCMV DNA) in patient blood, were developed. In vitro experiments showed that only low passage or endothelial cell-passaged clinical isolates, and not laboratory-adapted strains, could reproduce both HCMV leuko- and endothelial cell-tropism, which were found through genetic analysis to require the three viral genes UL128, UL130, and UL131 of the HCMV UL128 locus (UL128L). Products of this locus, together with gH/gL, were shown to form the gH/gL/pUL128L pentamer complex (PC) required for infection of epithelial cells/endothelial cells, whereas gH/gL and gO form the gH/gL/gO trimer complex (TC) required for infection of all cell types. In 2016, following previous work, a receptor for the TC that mediates entry into fibroblasts was identified as PDGFRα, while in 2018, a receptor for the PC that mediates entry into endothelial/epithelial cells was identified as neuropilin2 (Nrp2). Furthermore, the olfactory receptor family member OR14I1 was recently identified as a possible additional receptor for the PC in epithelial cells. Thus, current data support two models of viral entry: (i) in fibroblasts, following interaction of PDGFRα with TC, the latter activates gB to fuse the virus envelope with the cell membrane, whereas (ii) in epithelial cells/endothelial cells, interaction of Nrp2 (and OR14I1) with PC promotes endocytosis of virus particles, followed by gB activation by gH/gL/gO (or gH/gL) and final low-pH entry into the cell.https://www.mdpi.com/2076-393X/7/3/70HCMVepithelial cells/endothelial cellscell tropismcellular receptorsPDGFRαNrp2
collection DOAJ
language English
format Article
sources DOAJ
author Giuseppe Gerna
Anna Kabanova
Daniele Lilleri
spellingShingle Giuseppe Gerna
Anna Kabanova
Daniele Lilleri
Human Cytomegalovirus Cell Tropism and Host Cell Receptors
Vaccines
HCMV
epithelial cells/endothelial cells
cell tropism
cellular receptors
PDGFRα
Nrp2
author_facet Giuseppe Gerna
Anna Kabanova
Daniele Lilleri
author_sort Giuseppe Gerna
title Human Cytomegalovirus Cell Tropism and Host Cell Receptors
title_short Human Cytomegalovirus Cell Tropism and Host Cell Receptors
title_full Human Cytomegalovirus Cell Tropism and Host Cell Receptors
title_fullStr Human Cytomegalovirus Cell Tropism and Host Cell Receptors
title_full_unstemmed Human Cytomegalovirus Cell Tropism and Host Cell Receptors
title_sort human cytomegalovirus cell tropism and host cell receptors
publisher MDPI AG
series Vaccines
issn 2076-393X
publishDate 2019-07-01
description In the 1970s−1980s, a striking increase in the number of disseminated human cytomegalovirus (HCMV) infections occurred in immunosuppressed patient populations. Autopsy findings documented the in vivo disseminated infection (besides fibroblasts) of epithelial cells, endothelial cells, and polymorphonuclear leukocytes. As a result, multiple diagnostic assays, such as quantification of HCMV antigenemia (pp65), viremia (infectious virus), and DNAemia (HCMV DNA) in patient blood, were developed. In vitro experiments showed that only low passage or endothelial cell-passaged clinical isolates, and not laboratory-adapted strains, could reproduce both HCMV leuko- and endothelial cell-tropism, which were found through genetic analysis to require the three viral genes UL128, UL130, and UL131 of the HCMV UL128 locus (UL128L). Products of this locus, together with gH/gL, were shown to form the gH/gL/pUL128L pentamer complex (PC) required for infection of epithelial cells/endothelial cells, whereas gH/gL and gO form the gH/gL/gO trimer complex (TC) required for infection of all cell types. In 2016, following previous work, a receptor for the TC that mediates entry into fibroblasts was identified as PDGFRα, while in 2018, a receptor for the PC that mediates entry into endothelial/epithelial cells was identified as neuropilin2 (Nrp2). Furthermore, the olfactory receptor family member OR14I1 was recently identified as a possible additional receptor for the PC in epithelial cells. Thus, current data support two models of viral entry: (i) in fibroblasts, following interaction of PDGFRα with TC, the latter activates gB to fuse the virus envelope with the cell membrane, whereas (ii) in epithelial cells/endothelial cells, interaction of Nrp2 (and OR14I1) with PC promotes endocytosis of virus particles, followed by gB activation by gH/gL/gO (or gH/gL) and final low-pH entry into the cell.
topic HCMV
epithelial cells/endothelial cells
cell tropism
cellular receptors
PDGFRα
Nrp2
url https://www.mdpi.com/2076-393X/7/3/70
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