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Updated: Jan 23, 2026

Comprehensive Autopsy Program for Individuals with Multiple Sclerosis
Published on: July 19, 2019
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.
Abstract:
Axonal degeneration is central to clinical disability and disease progression in multiple sclerosis (MS). Myeloid cells such as brain-resident microglia and blood-borne monocytes are thought to be critically involved in this degenerative process. However, the exact underlying mechanisms have still not been clarified. We have previously demonstrated that human endogenous retrovirus type W (HERV-W) negatively affects oligodendroglial precursor cell (OPC) differentiation and remyelination via its envelope protein pathogenic HERV-W (pHERV-W) ENV (formerly MS-associated retrovirus [MSRV]-ENV). In this current study, we investigated whether pHERV-W ENV also plays a role in axonal injury in MS. We found that in MS lesions, pHERV-W ENV is present in myeloid cells associated with axons. Focusing on progressive disease stages, we could then demonstrate that pHERV-W ENV induces a degenerative phenotype in microglial cells, driving them toward a close spatial association with myelinated axons. Moreover, in pHERV-W ENV-stimulated myelinated cocultures, microglia were found to structurally damage myelinated axons. Taken together, our data suggest that pHERV-W ENV-mediated microglial polarization contributes to neurodegeneration in MS. Thus, this analysis provides a neurobiological rationale for a recently completed clinical study in MS patients showing that antibody-mediated neutralization of pHERV-W ENV exerts neuroprotective effects.
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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