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Published on: July 16, 2012
Viral entry defines the hepatitis E virus species barrier in murine hepatocytes
Nicola Frericks1,2, Olinda Pinto Veiga3, Leyla Sirkinti2,4
1Department of Molecular and Medical Virology, Ruhr University Bochum, Bochum, Germany.
Abstract:
The Paslahepevirus balayani hepatitis E virus (HEV) and the distantly related Rocahepevirus ratti rat HEV pose a risk for zoonotic transmission to humans. Despite the broad host range, including its ability to infect certain rodent species, infections of animals of the genus Mus within the subfamily Murinae are rarely documented. Further, experimental infection of non-humanized mice has proven challenging. To dissect the molecular mechanisms underlying species barriers to HEV infection, this study aimed to investigate the virus replication cycle and immune-related determinants responsible for restricted HEV infection in murine hepatocytes. Murine hepatic cell lines supported moderate levels of zoonotic HEV replication and infectious virion production upon transfection of in vitro transcribed viral RNA. Notably, viral replication was not restricted by innate immune responses or presence of dominant restriction factors but was limited by absence of host-specific dependency factors in murine cell lines. While successful attachment to murine hepatic cells and recombinant capsid protein cleavage was observable, viral particle disassembly was not observed in murine hepatocytes, correlating with murine cell lines and primary murine hepatocytes being refractory to HEV infection. In summary, the murine barrier to HEV infection is defined at the viral entry stage, specifically by a block post attachment and before viral replication is initiated. These findings shed new light on the fundamental role of viral entry mechanisms in defining HEV species tropism.
Insights
Hepatitis E virus (HEV) zoonotic transmission is a concern. Murine hepatocytes restrict HEV infection post-attachment, revealing viral entry as key to species tropism.
Area of Science:
- Virology
- Hepatology
- Zoonotic Diseases
Background:
- Hepatitis E virus (HEV) poses zoonotic risks, with human and rat strains identified.
- HEV infections in the *Mus* genus are rare, and experimental mouse infections are challenging.
- Understanding species barriers is crucial for controlling HEV transmission.
Purpose of the Study:
- Investigate molecular mechanisms of HEV restriction in murine hepatocytes.
- Identify immune determinants and replication cycle factors influencing HEV tropism.
- Elucidate the basis of the murine barrier to HEV infection.
Main Methods:
- Utilized murine hepatic cell lines and primary hepatocytes.
- Transfected cells with *in vitro* transcribed viral RNA for HEV replication studies.
- Analyzed viral attachment, capsid protein cleavage, particle disassembly, and innate immune responses.
Main Results:
- Murine hepatic cells supported moderate HEV replication and virion production.
- Replication was limited by the absence of host-specific dependency factors, not innate immunity.
- HEV attachment and capsid cleavage occurred, but particle disassembly was blocked.
- Murine cells were refractory to HEV infection due to a post-attachment entry block.
Conclusions:
- The murine barrier to HEV infection is primarily at the viral entry stage.
- A block post-attachment and pre-replication initiation defines HEV species tropism.
- Viral entry mechanisms are fundamental to HEV host specificity.
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