The XPO6 Exportin Mediates Herpes Simplex Virus 1 gM Nuclear Release Late in Infection

Hugo Boruchowicz1,2, Josiane Hawkins1,2, Kendra Cruz-Palomar1,2

  • 1Département de Pathologie et Biologie Cellulaire, Université de Montréal, Montréal, Québec, Canada.

Journal of Virology
|August 21, 2020
PubMed

Insights

Herpes simplex virus 1 glycoprotein M (gM) is relocated from nuclear membranes to the Golgi. A proximity-dependent biotin identification (BioID) approach identified XPO6 as a host protein required for gM nuclear release.

Area of Science:

  • Virology
  • Cell Biology
  • Proteomics

Background:

  • Herpes simplex virus 1 (HSV-1) glycoprotein M (gM) relocates from nuclear membranes to the trans-Golgi network (TGN) during infection.
  • Molecular partners regulating gM's dynamic nuclear localization and subsequent release remain largely unknown.
  • Previous studies identified gN and E-Syt1, but these are not nuclear-localized, failing to explain gM's nuclear membrane association.

Purpose of the Study:

  • To identify host or viral proteins that interact with HSV-1 gM and regulate its dynamic relocalization.
  • To elucidate the mechanisms governing gM's nuclear import and export during HSV-1 infection.

Main Methods:

  • Utilized a proximity-dependent biotin identification (BioID) approach by tagging HSV-1 gM with BirA*.
  • Purified biotinylated proteins using streptavidin columns and analyzed by mass spectrometry.
  • Investigated the role of candidate interacting proteins, specifically XPO6, in gM trafficking.

Main Results:

  • BioID identified 170 gM-interacting proteins, with 35% involved in protein transport.
  • XPO6, an exportin typically involved in actin/profilin nuclear export, was identified as a key interacting partner.
  • Functional analysis revealed that XPO6 is essential for gM's release from nuclear membranes to the TGN late in infection.

Conclusions:

  • HSV-1 gM interacts with a significant number of protein transport machinery components.
  • XPO6 plays a critical, previously unrecognized role in facilitating the nuclear export of HSV-1 gM.
  • This finding opens new avenues for understanding HSV-1 nuclear interactions and XPO6 cargo specificity.

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