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Author Spotlight: Elucidating the Pathways of TFH Cell Differentiation in Acute LCMV Challenges
Published on: April 26, 2024
Genome-Wide Knockout Screen Identifies Human Sialomucin CD164 as an Essential Entry Factor for Lymphocytic
Jamin Liu1,2, Kristeene A Knopp1, Elze Rackaityte1
1Department of Biochemistry and Biophysics, University of California, San Franciscogrid.266102.1, San Francisco, California, USA.
Abstract:
Lymphocytic choriomeningitis virus (LCMV) is a well-studied mammarenavirus that can be fatal in congenital infections. However, our understanding of LCMV and its interactions with human host factors remains incomplete. Here, host determinants affecting LCMV infection were investigated through a genome-wide CRISPR knockout screen in A549 cells, a human lung adenocarcinoma line. We identified and validated a variety of novel host factors that play a functional role in LCMV infection. Among these, knockout of the sialomucin CD164, a heavily glycosylated transmembrane protein, was found to ablate infection with multiple LCMV strains but not other hemorrhagic mammarenaviruses in several cell types. Further characterization revealed a dependency of LCMV entry on the cysteine-rich domain of CD164, including an N-linked glycosylation site at residue 104 in that region. Given the documented role of LCMV with respect to transplacental human infections, CD164 expression was investigated in human placental tissue and placental cell lines. CD164 was found to be highly expressed in the cytotrophoblast cells, an initial contact site for pathogens within the placenta, and LCMV infection in placental cells was effectively blocked using a monoclonal antibody specific to the cysteine-rich domain of CD164. Together, this study identifies novel factors associated with LCMV infection of human tissues and highlights the importance of CD164, a sialomucin that previously had not been associated with viral infection. IMPORTANCE Lymphocytic choriomeningitis virus (LCMV) is a human-pathogenic mammarenavirus that can be fatal in congenital infections. Although frequently used in the study of persistent infections in the field of immunology, aspects of this virus's life cycle remain incomplete. For example, while viral entry has been shown to depend on a cell adhesion molecule, DAG1, genetic knockout of this gene allows for residual viral infection, implying that additional receptors can mediate cell entry. The significance of our study is the identification of host factors important for successful infection, including the sialomucin CD164, which had not been previously associated with viral infection. We demonstrated that CD164 is essential for LCMV entry into human cells and can serve as a possible therapeutic target for treatment of congenital infection.
Insights
Lymphocytic choriomeningitis virus (LCMV) infection requires the sialomucin CD164 for cell entry. Blocking CD164 effectively prevents LCMV infection in human placental cells, offering a potential therapeutic target for congenital infections.
Area of Science:
- Virology and Immunology
- Host-Pathogen Interactions
- Molecular Biology
Background:
- Lymphocytic choriomeningitis virus (LCMV) is a significant cause of fatal congenital infections.
- The precise human host factors governing LCMV infection and entry remain incompletely understood.
- Previous studies identified DAG1 as a cell adhesion molecule involved in LCMV entry, but it does not fully explain viral infection.
Purpose of the Study:
- To identify novel host determinants crucial for LCMV infection using a genome-wide CRISPR knockout screen.
- To investigate the role of the sialomucin CD164 in LCMV infection and its potential as a therapeutic target.
Main Methods:
- Genome-wide CRISPR knockout screen in A549 human lung adenocarcinoma cells to identify host factors for LCMV.
- Validation of identified host factors, including CD164, across multiple cell types and LCMV strains.
- Characterization of CD164's role in LCMV entry, focusing on its cysteine-rich domain and glycosylation.
- Analysis of CD164 expression in human placental tissues and cell lines, and assessment of antibody-mediated blockade of LCMV infection.
Main Results:
- A genome-wide CRISPR screen identified novel host factors essential for LCMV infection.
- Knockout of CD164, a sialomucin, completely abrogated LCMV infection across multiple strains and cell types.
- LCMV entry is dependent on the cysteine-rich domain of CD164, specifically an N-linked glycosylation site at residue 104.
- CD164 is highly expressed in human placental cytotrophoblast cells, a primary site of pathogen contact.
- A monoclonal antibody targeting CD164's cysteine-rich domain effectively blocked LCMV infection in placental cells.
Conclusions:
- CD164 is a critical host factor essential for LCMV entry into human cells, previously unassociated with viral infection.
- The cysteine-rich domain of CD164 mediates LCMV binding and entry.
- CD164 represents a promising therapeutic target for preventing or treating LCMV-associated congenital infections.

