Abnormal Expression of Suppressor of Cytokine Signalling (SOCS) Molecules Contributes to the Development of Multiple
Abdollah Jafarzadeh1,2, Narges Mikaeili3, Zahra Jafarzadeh4
1Department of Immunology, School of Medicine, Kerman University of Medical Sciences, Kerman, Iran.
Abstract:
To regulate immune and inflammatory responses, suppressor of cytokine signalling (SOCS) proteins bind to multiple signalling components downstream of cytokine receptors, such as Janus kinase (JAK) and signal transducers and activators of transcription (STAT). Dysfunctional SOCS proteins in immune and tissue-resident cells may contribute to chronic inflammation. Abnormal expression of SOCS proteins, including SOCS1, SOCS2, SOCS3, SOCS5, SOCS6, and SOCS7, has been reported in multiple sclerosis (MS) and its animal model, experimental autoimmune encephalomyelitis (EAE), playing a vital role in disease pathogenesis. The expression of SOCS1 and SOCS3 varies across different cell types and stages of the disease. Genetic polymorphisms, epigenetic modifications, microRNAs, cytokines, hormones, therapeutic agents, and gender factors can influence SOCS1 and SOCS3 expression in MS patients and EAE mice. The functional impact of SOCS1 and SOCS3 is cell-type specific, with distinct roles in T cell subsets, microglia/macrophages, dendritic cells, astrocytes, and oligodendrocytes. In particular, SOCS1 and SOCS3 affect T cell subset differentiation, Th17/Treg cell balance, microglial/macrophage polarization, dendritic cell functions, as well as oligodendrocyte survival and activity. Therapeutic approaches targeting SOCS molecules, including SOCS1 mimetic peptides, have demonstrated promise in EAE models. This review provides a comprehensive explanation regarding the expression patterns of SOCS molecules in MS patients and EAE model, factors affecting their expression and their mechanistic role in disease immunopathogenesis, as well as highlights their potential as a therapeutic target for MS.
Insights
Suppressor of cytokine signalling (SOCS) proteins regulate inflammation. Abnormal SOCS expression is implicated in multiple sclerosis (MS) and its animal model (EAE), highlighting their therapeutic potential.
Area of Science:
- Immunology
- Neuroscience
- Molecular Biology
Background:
- Suppressor of cytokine signalling (SOCS) proteins are key regulators of immune and inflammatory responses.
- Dysfunctional SOCS proteins are linked to chronic inflammation and diseases like multiple sclerosis (MS).
- Abnormal expression of SOCS proteins (SOCS1-7) is observed in MS and its animal model, experimental autoimmune encephalomyelitis (EAE).
Purpose of the Study:
- To comprehensively review the expression patterns of SOCS molecules in MS and EAE.
- To elucidate the factors influencing SOCS expression in these conditions.
- To highlight the mechanistic roles of SOCS in disease pathogenesis and their therapeutic potential.
Main Methods:
- Review of existing literature on SOCS protein expression and function in MS and EAE.
- Analysis of factors affecting SOCS expression, including genetics, epigenetics, and microRNAs.
- Examination of cell-type-specific functional impacts of SOCS1 and SOCS3.
Main Results:
- SOCS1 and SOCS3 expression varies by cell type and disease stage in MS and EAE.
- Multiple factors (genetic, epigenetic, microRNAs, cytokines, hormones, gender) influence SOCS1 and SOCS3 expression.
- SOCS1 and SOCS3 have cell-type-specific roles in immune cell differentiation, polarization, and oligodendrocyte function.
Conclusions:
- SOCS proteins play a critical role in the immunopathogenesis of MS and EAE.
- Understanding SOCS expression and function is crucial for developing targeted therapies.
- Therapeutic strategies targeting SOCS molecules show promise for MS treatment.
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