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Two Methods of Heterokaryon Formation to Discover HCV Restriction Factors
Published on: July 16, 2012
Mice Expressing Minimally Humanized CD81 and Occludin Genes Support Hepatitis C Virus Uptake In Vivo
Qiang Ding1, Markus von Schaewen1, Gabriela Hrebikova1
1Princeton University, Department of Molecular Biology, Lewis Thomas Laboratory, Princeton New Jersey, USA.
Abstract:
Hepatitis C virus (HCV) causes chronic infections in at least 150 million individuals worldwide. HCV has a narrow host range and robustly infects only humans and chimpanzees. The underlying mechanisms for this narrow host range are incompletely understood. At the level of entry, differences in the amino acid sequences between the human and mouse orthologues of two essential host factors, the tetraspanin CD81 and the tight junction protein occludin (OCLN), explain, at least in part, HCV's limited ability to enter mouse hepatocytes. We have previously shown that adenoviral or transgenic overexpression of human CD81 and OCLN facilitates HCV uptake into mouse hepatocytes in vitro and in vivo In efforts to refine these models, we constructed knock-in mice in which the second extracellular loops of CD81 and OCLN were replaced with the respective human sequences, which contain the determinants that are critical for HCV uptake. We demonstrate that the humanized CD81 and OCLN were expressed at physiological levels in a tissue-appropriate fashion. Mice bearing the humanized alleles formed normal tight junctions and did not exhibit any immunologic abnormalities, indicating that interactions with their physiological ligands were intact. HCV entry factor knock-in mice take up HCV with an efficiency similar to that in mice expressing HCV entry factors transgenically or adenovirally, demonstrating the utility of this model for studying HCV infection in vivo IMPORTANCE: At least 150 million individuals are chronically infected with hepatitis C virus (HCV). Chronic hepatitis C can result in progressive liver disease and liver cancer. New antiviral treatments can cure HCV in the majority of patients, but a vaccine remains elusive. To gain a better understanding of the processes culminating in liver failure and cancer and to prioritize vaccine candidates more efficiently, small-animal models are needed. Here, we describe the characterization of a new mouse model in which the parts of two host factors that are essential for HCV uptake, CD81 and occludin (OCLN), which differ between mice and humans, were humanized. We demonstrate that such minimally humanized mice develop normally, express the modified genes at physiological levels, and support HCV uptake. This model is of considerable utility for studying viral entry in the three-dimensional context of the liver and to test approaches aimed at preventing HCV entry.
Insights
Hepatitis C virus (HCV) entry into mouse cells was improved by humanizing key host factors, CD81 and occludin (OCLN). This new mouse model supports HCV uptake, aiding research into chronic hepatitis C and vaccine development.
Area of Science:
- Virology
- Immunology
- Genetics
Background:
- Hepatitis C virus (HCV) chronically infects over 150 million people globally, leading to liver disease and cancer.
- HCV's narrow host range, primarily humans and chimpanzees, limits small-animal model development for studying infection and disease.
- Differences in host factors CD81 and occludin (OCLN) between humans and mice contribute to HCV's restricted entry into mouse cells.
Purpose of the Study:
- To develop a refined small-animal model for studying Hepatitis C virus (HCV) infection in vivo.
- To investigate the role of human CD81 and occludin (OCLN) in facilitating HCV entry into mouse hepatocytes.
- To create genetically modified mice supporting efficient HCV uptake for research and therapeutic development.
Main Methods:
- Constructed knock-in mice replacing critical regions of mouse CD81 and occludin (OCLN) with human sequences.
- Verified physiological expression levels and tissue-appropriate distribution of humanized CD81 and OCLN.
- Assessed the functionality of humanized proteins by confirming normal tight junction formation and lack of immunologic abnormalities.
Main Results:
- Humanized CD81 and OCLN were expressed at normal physiological levels in knock-in mice.
- Mice with humanized alleles exhibited normal development, intact physiological interactions, and normal tight junctions.
- These "humanized" mice demonstrated efficient Hepatitis C virus (HCV) uptake, comparable to existing transgenic models.
Conclusions:
- Minimally humanized mice provide a viable model for studying Hepatitis C virus (HCV) entry in a three-dimensional liver context.
- This model supports HCV uptake, offering a valuable tool for understanding viral entry mechanisms.
- The developed mouse model is crucial for prioritizing vaccine candidates and testing preventative strategies against HCV infection.

