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.

Antiviral Research
|February 16, 2023
PubMed

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.

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