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The CD40/CD40 ligand dyad and its downstream effector molecule ISG54 in relating acute neuroinflammation with
Bishal Hazra1, Jayasri Das Sarma1,2
1Department of Biological Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur, India.
Abstract:
Although Multiple Sclerosis (MS) is primarily thought to be an autoimmune condition, its possible viral etiology must be taken into consideration. When mice are administered neurotropic viruses like mouse hepatitis virus MHV-A59, a murine coronavirus, or its isogenic recombinant strain RSA59, neuroinflammation along with demyelination are observed, which are some of the significant manifestations of MS. MHV-A59/RSA59 induced neuroinflammation is one of the best-studied experimental animal models to understand the viral-induced demyelination concurrent with axonal loss. In this experimental animal model, one of the major immune checkpoint regulators is the CD40-CD40L dyad, which helps in mediating both acute-innate, innate-adaptive, and chronic-adaptive immune responses. Hence, they are essential in reducing acute neuroinflammation and chronic progressive adaptive demyelination. While CD40 is expressed on antigen-presenting cells and endothelial cells, CD40L is expressed primarily on activated T cells and during severe inflammation on NK cells and mast cells. Experimental evidences revealed that genetic deficiency of both these proteins can lead to deleterious effects in an individual. On the other hand, interferon-stimulated genes (ISGs) possess potent antiviral properties and directly or indirectly alter acute neuroinflammation. In this review, we will discuss the role of an ISG, ISG54, and its tetratricopeptide repeat protein Ifit2; the genetic and experimental studies on the role of CD40 and CD40L in a virus-induced neuroinflammatory demyelination model.
Insights
Investigating viral causes of Multiple Sclerosis (MS), this study examines how mouse hepatitis virus (MHV-A59) induces neuroinflammation and demyelination. It highlights the roles of CD40-CD40L and interferon-stimulated genes (ISGs) in this experimental MS model.
Area of Science:
- Neuroimmunology
- Virology
- Demyelinating Diseases
Background:
- Multiple Sclerosis (MS) is often viewed as autoimmune, but viral triggers are considered.
- Mouse hepatitis virus (MHV-A59) in mice models MS-like neuroinflammation and demyelination.
- The CD40-CD40L pathway is crucial for immune responses in viral-induced demyelination.
Purpose of the Study:
- To review the role of CD40 and CD40L in a viral-induced neuroinflammatory demyelination model.
- To discuss the function of interferon-stimulated genes (ISGs), specifically ISG54 and Ifit2, in antiviral and neuroinflammatory processes.
- To explore the viral etiology of MS using experimental models.
Main Methods:
- Utilizing the MHV-A59 mouse model for studying viral-induced neuroinflammation and demyelination.
- Reviewing genetic and experimental data on CD40 and CD40L immune checkpoint regulators.
- Examining the impact of interferon-stimulated genes (ISGs) on neuroinflammation.
Main Results:
- CD40-CD40L dyad is a key regulator of innate and adaptive immune responses in neuroinflammation.
- Genetic deficiency of CD40 or CD40L can have detrimental effects.
- Interferon-stimulated genes (ISGs) exhibit antiviral properties and modulate neuroinflammation.
Conclusions:
- Viral infections, like MHV-A59, can induce MS-like pathology in experimental models.
- CD40-CD40L interactions are critical for managing neuroinflammation and demyelination.
- ISGs play a significant role in host defense against viral-induced neuroinflammation.
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