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Updated: Jun 20, 2026

Temporal Analysis of the Nuclear-to-cytoplasmic Translocation of a Herpes Simplex Virus 1 Protein by Immunofluorescent Confocal Microscopy
Published on: November 4, 2018
Insertional mutations in herpes simplex virus type 1 gL identify functional domains for association with gH and for
Qing Fan1, Erick Lin, Patricia G Spear
1Department of Microbiology-Immunology, The Feinberg School of Medicine, Northwestern University, Chicago, Illinois 60611, USA.
Insights
Herpes simplex virus glycoprotein L (gL) binding to glycoprotein H (gH) is crucial for viral entry and cell fusion. Specific regions of gL are essential for this interaction and subsequent viral functions.
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Glycoprotein L (gL) is essential for herpes simplex virus (HSV) entry and cell fusion.
- gL forms a heterodimer with glycoprotein H (gH), which is critical for viral infectivity.
- gL can be secreted independently when not complexed with gH.
Purpose of the Study:
- To identify critical regions of gL involved in binding to gH.
- To understand the role of gL-gH interactions in viral entry and cell fusion.
- To analyze the processing and cell surface expression of gL mutants.
Main Methods:
- Generation of twelve unique gL linker-insertion mutants.
- Analysis of gL and gH expression on the cell surface via coexpression.
- Assessment of gL-gH binding affinity.
- Evaluation of cell fusion activity and viral infectivity complementation.
Main Results:
- Mutations in a conserved gL region abolished gL-gH binding and cell surface gH expression.
- Other mutations affected gH/gL heterodimer properties, cell surface gH levels, and fusion activity.
- Impaired gL-gH interaction correlated with reduced cell fusion and viral infectivity.
Conclusions:
- A conserved domain in gL is critical for gH binding.
- Two noncontiguous regions of gL, including the conserved domain, are vital for gH/gL-mediated membrane fusion.
- These findings elucidate the molecular mechanisms of HSV entry and fusion.
Abstract:
Glycoprotein L (gL) is one of four glycoproteins required for the entry of herpes simplex virus (HSV) into cells and for virus-induced cell fusion. This glycoprotein oligomerizes with gH to form a membrane-bound heterodimer but can be secreted when expressed without gH. Twelve unique gL linker-insertion mutants were generated to identify regions critical for gH binding and gH/gL processing and regions essential for cell fusion and viral entry. All gL mutants were detected on the cell surface in the absence of gH, suggesting incomplete cleavage of the signal peptide or the presence of a cell surface receptor for secreted gL. Coexpression with gH enhanced the levels of cell surface gL detected by antibodies for all gL mutants except those that were defective in their interactions with gH. Two insertions into a conserved region of gL abrogated the binding of gL to gH and prevented gH expression on the cell surface. Three other insertions reduced the cell surface expression of gH and/or altered the properties of gH/gL heterodimers. Altered or absent interaction of gL with gH was correlated with reduced or absent cell fusion activity and impaired complementation of virion infectivity. These results identify a conserved domain of gL that is critical for its binding to gH and two noncontiguous regions of gL, one of which contains the conserved domain, that are critical for the gH/gL complex to perform its role in membrane fusion.
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