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Published on: March 1, 2019
Pteropine orthoreoviruses use cell surface heparan sulphate as an attachment receptor
Chee Wah Tan1, Akshamal M Gamage1, Wee Chee Yap1
1Programme in Emerging Infectious Diseases, Duke-NUS Medical School, Singapore, Singapore.
Abstract:
Pteropine orthoreoviruses (PRVs) are an emerging group of fusogenic, bat-borne viruses from the Orthoreovirus genus. Since the isolation of PRV from a patient with acute respiratory tract infections in 2006, the zoonotic potential of PRV has been further highlighted following subsequent isolation of PRV species from patients in Malaysia, Hong Kong and Indonesia. However, the entry mechanism of PRV is currently unknown. In this study, we investigated the role of previously identified mammalian orthoreovirus (MRV) receptors, sialic acid and junctional adhesion molecule-1 for PRV infection. However, none of these receptors played a significant role in PRV infection, suggesting PRV uses a distinct entry receptor from MRV. Given its broad tissue tropism, we hypothesized that PRV may use a receptor that is widely expressed in all cell types, heparan sulphate (HS). Enzymatic removal of cell surface HS by heparinase treatment and genetic ablation of HS biosynthesis genes, SLC35B2, exostosin-1, N-deacetylase/N-sulfotransferase I and beta-1,3-glucuronyltransferase 3, significantly reduced infection with multiple genetically distinct PRV species. Replication kinetic of PRV3M in HS knockout cells revealed that HS plays a crucial role in the early phase of PRV infection. Mechanistic studies demonstrated that HS is an essential host-factor for PRV attachment and internalization into cells. To our knowledge, this is the first report on the use of HS as an attachment receptor by PRVs.
Insights
Pteropine orthoreoviruses (PRVs) use heparan sulfate (HS) as a crucial attachment receptor for cell entry. This finding reveals a distinct mechanism from other orthoreoviruses, impacting our understanding of PRV infection.
Area of Science:
- Virology
- Cell Biology
- Infectious Diseases
Background:
- Pteropine orthoreoviruses (PRVs) are emerging bat-borne viruses with zoonotic potential.
- PRVs cause acute respiratory tract infections, but their entry mechanism remains unknown.
- Previous studies on mammalian orthoreoviruses (MRVs) identified sialic acid and junctional adhesion molecule-1 as receptors.
Purpose of the Study:
- To investigate the cellular receptors used by PRVs for entry.
- To determine if PRVs utilize the same receptors as MRVs.
- To identify the specific host factors involved in PRV infection.
Main Methods:
- Investigated sialic acid and junctional adhesion molecule-1 as potential PRV receptors.
- Utilized heparinase treatment to enzymatically remove cell surface heparan sulfate (HS).
- Generated genetically modified cells lacking HS biosynthesis genes to assess HS role in PRV infection.
Main Results:
- Sialic acid and junctional adhesion molecule-1 were not significant receptors for PRV.
- Enzymatic removal or genetic ablation of HS significantly reduced PRV infection across multiple species.
- HS was identified as an essential host factor for PRV attachment and internalization.
Conclusions:
- PRVs utilize heparan sulfate (HS) as a distinct attachment and entry receptor.
- HS plays a critical role in the early stages of PRV infection.
- This study is the first to report HS as an attachment receptor for PRVs.
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