A virion-wide spatial and quantitative protein proximity map of herpes simplex virus 1 (HSV-1) is defined by combining cross-linking mass spectrometry with quantitative proteomics, showing how conserved organizational principles shape virus-specific virion interaction networks during herpesvirus maturation.
Abstract
Herpesvirus virions form by remodeling of intracellular virus-host interaction networks into evolutionarily conserved particle architectures. Here, we define a virion-wide spatial and quantitative protein proximity map of herpes simplex virus 1 (HSV-1) by combining cross-linking mass spectrometry with quantitative proteomics. Integration with intracellular interaction maps reveals that maturation acts as a selective filter, transforming broad virus-host associations into an organized virion network. This process depletes biosynthetic and nuclear components while enriching interactions involved in tegument organization and envelope acquisition around the viral protein UL49. Comparison with analogous maps of human cytomegalovirus (HCMV) identifies HSV-1-UL49 and HCMV-UL32 as functionally equivalent network hubs despite lacking evolutionary relatedness. Both hubs converge on shared phosphoregulatory host factors, short linear interaction motifs, and liquid-liquid phase separation. At the virion surface, the host complement regulator CD59 protects particles from complement-mediated inactivation. Together, these findings show how conserved organizational principles shape virus-specific virion interaction networks during herpesvirus maturation.
Alpha-herpesviruses, particularly herpes simplex virus type 1 (HSV-1), establish lifelong latency and employ multiple strategies to evade host immunity, thereby sustaining infection. A key mediator of this immune evasion is the viral tegument protein, unique long 21 (UL21), which disrupts the host cyclic GMP-AMP syntha...
Muhammad Suleman, Imtiaz Ali, A. M. Sayaf et al.· PLoS ONE· 0 citations
Herpes simplex virus 1 (HSV‑1) establishes infection through coordinated interactions of multiple viral glycoproteins with host cell receptors. Interactions between the viral glycoprotein D (gD) and the immunomodulatory cellular receptor HVEM (herpesvirus entry mediator) critically influence HSV‑1 latency and reactivat...
Deepak Arya, Kati Tormanen, Jay J. Oh et al.· PLoS Pathogens· 0 citations
Marek’s disease virus (MDV) UL47 tegument protein 5 (UL47_TEG5) is a major tegument protein essential for viral replication and horizontal transmission in chickens. The protein undergoes dynamic nucleocytoplasmic shuttling, likely regulated by host and viral factors, including post-translational modifications (PTMs). P...
ABSTRACT Viral factories (VFs) are dynamic, virus-induced microcompartments that serve as centralized hubs in the host cell for viral genome replication, transcription, and virion assembly. These structures employ unique viral mechanisms for remodeling cellular architecture to create specialized replication organelles...
Kathryn S. Brittain, Leonardo Martins Delfino, O. H. Thiemann et al.· Journal of Virology· 0 citations
Viruses depend on host protein networks to replicate, assemble progeny, and spread between cells and organisms. Defining these virus-host protein interactions is challenging because they are highly dependent on infection stage, cell type, species, and because mechanistic interpretation requires information about struct...
Boris Bogdanow, Fan Liu· Current Opinion in Chemical...· 0 citations
Background Coronaviruses have evolved intricate mechanisms to evade host RNA surveillance systems and sustain efficient replication. The feline infectious peritonitis virus (FIPV), a highly lethal feline coronavirus that causes systemic vasculitis and fatal peritonitis, represents a major challenge in veterinary medici...
Miao Zhang, Na Li, Kelimujiang Aishanjiang et al.· PLoS Pathogens· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.