Related Experiment Video
Updated: Aug 9, 2025

Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
An antiviral targeting strategy based on the inducible interference with cytomegalovirus nuclear egress complex
Jintawee Kicuntod1, Sigrun Häge1, Josephine Lösing1
1Institute for Clinical and Molecular Virology, Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Erlangen, Germany.
Insights
Targeting the human cytomegalovirus (HCMV) nuclear egress complex (NEC) by interfering with pUL50-pUL53 interactions shows potent antiviral activity. This strategy blocks viral replication by preventing NEC formation and capsid egress.
Area of Science:
- Virology
- Molecular Biology
- Drug Discovery
Background:
- Nucleocytoplasmic capsid egress is crucial for herpesvirus replication, involving the nuclear egress complex (NEC).
- The HCMV NEC, a pUL50-pUL53 heterodimer, forms hexameric lattices and is a validated target for antiviral strategies.
- Previous approaches included small molecules, cell-penetrating peptides, and mutagenesis to target the NEC.
Purpose of the Study:
- To provide proof-of-concept for an antiviral strategy targeting the HCMV NEC.
- To investigate the interference with the pUL50-pUL53 hook-into-groove interaction for blocking NEC formation.
- To assess the antiviral activity of inducible intracellular expression of a NLS-Hook-GFP construct.
Main Methods:
- Generated primary fibroblasts with inducible NLS-Hook-GFP expression.
- Utilized confocal imaging to visualize NEC formation and construct localization.
- Performed quantitative nuclear egress assays to measure viral transition and assembly.
Main Results:
- NLS-Hook-GFP localized to the nucleus and specifically interacted with HCMV NEC.
- Overexpression of the construct showed strong antiviral activity against three HCMV strains.
- Demonstrated interference with NEC nuclear rim formation and blocked viral nucleocytoplasmic transition and cVAC formation.
Conclusions:
- Interfering with the HCMV NEC pUL50-pUL53 protein-protein interaction is an effective antiviral strategy.
- Inducible intracellular expression of NLS-Hook-GFP provides a novel approach to inhibit HCMV replication.
- Targeting NEC formation offers a promising avenue for developing new anti-HCMV therapies.
Abstract:
The nucleocytoplasmic capsid egress of herpesviruses like the human cytomegalovirus (HCMV) is based on a uniquely regulated process. The core nuclear egress complex (NEC) of HCMV, represented by the pUL50-pUL53 heterodimer, is able to oligomerize and thus to build hexameric lattices. Recently, we and others validated the NEC as a novel target for antiviral strategies. So far, the experimental targeting approaches included the development of NEC-directed small molecules, cell-penetrating peptides and NEC-directed mutagenesis. Our postulate states that an interference with the hook-into-groove interaction of pUL50-pUL53 prevents NEC formation and strictly limits viral replication efficiency. Here, we provide an experimental proof-of-concept of the antiviral strategy: the inducible intracellular expression of a NLS-Hook-GFP construct exerted a pronounced level of antiviral activity. The data provide evidence for the following points: (i) generation of a primary fibroblast population with inducible NLS-Hook-GFP expression showed nuclear localization of the construct, (ii) interaction between NLS-Hook-GFP and the viral core NEC was found specific for cytomegaloviruses but not for other herpesviruses, (iii) construct overexpression exerted a strong antiviral activity against three strains of HCMV, (iv) confocal imaging demonstrated the interference with NEC nuclear rim formation in HCMV-infected cells, and (v) quantitative nuclear egress assay confirmed the block of viral nucleocytoplasmic transition and, consequently, an inhibitory effect onto viral cytoplasmic virion assembly complex (cVAC). Combined, data confirmed that the specific interference with protein-protein interaction of the HCMV core NEC represents an efficient antiviral targeting strategy.
More Related Videos
Related Concept Videos
Viruses with RNA Genomes
Immune Response Against Viral Pathogens
NK Cells
NK cells are a crucial part of our innate immune system, acting as the first line of defense against viral infections. These cells can recognize and kill infected cells without prior exposure to the virus, effectively slowing down the spread of infection. Additionally, NK cells produce proinflammatory...
Retrovirus Life Cycles
Retroviruses
Mechanisms of Retrovirus-induced Cancers

