pHERV-W envelope protein fuels microglial cell-dependent damage of myelinated axons in multiple sclerosis

David Kremer1, Joel Gruchot1, Vivien Weyers1

  • 1Department of Neurology, Medical Faculty, Heinrich Heine University, 40225 Düsseldorf, Germany.

Insights

Pathogenic HERV-W ENV in multiple sclerosis (MS) lesions drives microglia to damage axons. Neutralizing this protein may offer neuroprotection against MS-related neurodegeneration.

Area of Science:

  • Neuroimmunology
  • Neurovirology
  • Demyelinating Diseases

Background:

  • Axonal degeneration is a key factor in multiple sclerosis (MS) disability and progression.
  • Myeloid cells, including microglia and monocytes, are implicated in MS neurodegeneration, but mechanisms remain unclear.
  • Previously, pathogenic HERV-W ENV (pHERV-W ENV) was shown to impair oligodendrocyte differentiation and remyelination.

Purpose of the Study:

  • To investigate the role of pHERV-W ENV in axonal injury within MS lesions.
  • To determine if pHERV-W ENV influences myeloid cell behavior and contributes to neurodegeneration in MS.

Main Methods:

  • Analysis of pHERV-W ENV presence in MS lesions, specifically in myeloid cells associated with axons.
  • In vitro studies using myelinated cocultures stimulated with pHERV-W ENV.
  • Assessment of microglial cell phenotype and interaction with myelinated axons.

Main Results:

  • pHERV-W ENV was detected in myeloid cells within MS lesions, particularly near axons.
  • pHERV-W ENV induced a degenerative phenotype in microglia, promoting their association with myelinated axons.
  • Microglia exposed to pHERV-W ENV caused structural damage to myelinated axons in coculture models.

Conclusions:

  • pHERV-W ENV promotes neurodegeneration in MS by polarizing microglia to damage axons.
  • These findings support a neurobiological basis for the neuroprotective effects observed with pHERV-W ENV neutralization in a clinical MS study.

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