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Use of In vivo Imaging to Monitor the Progression of Experimental Mouse Cytomegalovirus Infection in Neonates
Published on: July 6, 2013
A virally encoded high-resolution screen of cytomegalovirus dependencies
Yaara Finkel1, Aharon Nachshon1, Einav Aharon1
1Department of Molecular Genetics, Weizmann Institute of Science, Rehovot, Israel.
Abstract:
Genetic screens have transformed our ability to interrogate cellular factor requirements for viral infections1,2, but most current approaches are limited in their sensitivity, biased towards early stages of infection and provide only simplistic phenotypic information that is often based on survival of infected cells2-4. Here, by engineering human cytomegalovirus to express single guide RNA libraries directly from the viral genome, we developed virus-encoded CRISPR-based direct readout screening (VECOS), a sensitive, versatile, viral-centric approach that enables profiling of different stages of viral infection in a pooled format. Using this approach, we identified hundreds of host dependency and restriction factors and quantified their direct effects on viral genome replication, viral particle secretion and infectiousness of secreted particles, providing a multi-dimensional perspective on virus-host interactions. These high-resolution measurements reveal that perturbations altering late stages in the life cycle of human cytomegalovirus (HCMV) mostly regulate viral particle quality rather than quantity, establishing correct virion assembly as a critical stage that is heavily reliant on virus-host interactions. Overall, VECOS facilitates systematic high-resolution dissection of the role of human proteins during the infection cycle, providing a roadmap for in-depth study of host-herpesvirus interactions.
Insights
This study introduces VECOS, a new screening method for understanding viral infections. VECOS reveals how host factors impact human cytomegalovirus (HCMV) at various infection stages, particularly virion assembly.
Area of Science:
- Virology
- Genetics
- Molecular Biology
Background:
- Genetic screens are crucial for studying viral infections but often lack sensitivity and focus on early stages.
- Current methods provide limited phenotypic data, primarily based on infected cell survival.
Purpose of the Study:
- To develop a sensitive and versatile viral-centric screening approach for profiling all stages of viral infection.
- To identify host factors influencing human cytomegalovirus (HCMV) replication and virion production.
Main Methods:
- Engineered human cytomegalovirus to express single guide RNA libraries from the viral genome.
- Developed virus-encoded CRISPR-based direct readout screening (VECOS) for pooled screening.
- Quantified effects on viral genome replication, particle secretion, and infectiousness.
Main Results:
- Identified hundreds of host dependency and restriction factors for HCMV.
- Demonstrated that late-stage HCMV infection perturbations affect viral particle quality more than quantity.
- Established virion assembly as a critical, host-interaction-dependent stage.
Conclusions:
- VECOS provides a high-resolution, multi-dimensional view of virus-host interactions.
- This method enables systematic dissection of host protein roles during viral infection cycles.
- Offers a roadmap for studying host-herpesvirus interactions in depth.
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