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Published on: March 1, 2019
Low-density Lipoprotein Receptor is an important host factor in flaviviral entry and replication in neurons
Meenakshi Bhaskar1, Anirudh Satheesan1, Anirban Basu1
1National Brain Research Centre, Manesar, Haryana, 122052, India.
Abstract:
Flaviviruses, which are transmitted by mosquitoes, are arthropod-borne infections that are pathogenic to both humans and animals, posing a significant global threat to public health. So far, various endocytic pathways have been reported for flaviviral entry; however, the role of cellular factors in viral replication and entry remains uncertain. Here in this study, we identified the role of Low-density lipoprotein receptor, which has long been established as a cholesterol carrier for neurons but remained unexplored as an essential host factor for JEV/WNV replication. To explore this, we utilized 10-day old BALB/c pups and two neuronal cell lines, NSC34 and HT22, both of different origin, as experimental models. Transient knockdown of LDLR gene in vitro using siRNA-mediated gene silencing drastically reduced viral specific transcripts and proteins upon viral incubation. Moreover, flaviviral binding and internalization were significantly compromised upon infection in LDLR-transfected cells when compared with non-specific eGFP-transfected cells. Antibody neutralization experiments using LDLR-specific polyclonal antibody significantly reduced viral entry in vitro, suggesting the role of LDLR as an important cell attachment factor for JEV and WNV uptake. Furthermore, ectopic expression of LDLR via plasmid transfection led to significant increase in virus replication in cells, indicating significant role of LDLR in flavivirus replication beside acting as an active attachment factor for JEV and WNV. Overall, our results indicate that LDLR act as novel host factor involved in both flaviviral entry and replication, thus serving as a suitable candidate for antiviral research.
Insights
Low-density lipoprotein receptor (LDLR) is a novel host factor essential for flavivirus entry and replication. This discovery offers a promising target for developing new antiviral therapies against mosquito-borne flaviviruses like JEV and WNV.
Area of Science:
- Virology
- Molecular Biology
- Neuroscience
Background:
- Flaviviruses are significant global public health threats transmitted by mosquitoes.
- Cellular factors governing flavivirus entry and replication are not fully understood.
- Low-density lipoprotein receptor (LDLR) is known for cholesterol transport but its role in flavivirus infection is unexplored.
Purpose of the Study:
- To investigate the role of LDLR as a host factor in Japanese Encephalitis Virus (JEV) and West Nile Virus (WNV) replication and entry.
- To determine if LDLR acts as a cellular attachment factor for flavivirus uptake.
- To assess LDLR's potential as a target for antiviral research.
Main Methods:
- Utilized 10-day old BALB/c pups and neuronal cell lines (NSC34, HT22).
- Employed siRNA-mediated gene silencing to knockdown LDLR expression in vitro.
- Performed viral binding, internalization, and replication assays.
- Used antibody neutralization experiments and ectopic LDLR expression.
Main Results:
- Transient knockdown of LDLR significantly reduced viral transcripts and proteins.
- Flavivirus binding and internalization were compromised in LDLR-deficient cells.
- LDLR-specific antibody neutralization reduced viral entry.
- Ectopic LDLR expression increased flavivirus replication.
Conclusions:
- LDLR is a novel host factor crucial for both flavivirus entry and replication.
- LDLR functions as an attachment factor facilitating JEV and WNV uptake.
- LDLR presents a potential target for developing new antiviral strategies against flaviviruses.
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