MK2 and Fas receptor contribute to the severity of CNS demyelination

Silvia M Tietz1, Regina Hofmann2, Tobias Thomas3

  • 1Department of Neurology, Justus-Liebig-University Giessen, Giessen, Germany; Theodor-Kocher-Institute, Universtiy of Bern, Bern, Switzerland.

Plos One
|June 26, 2014
PubMed

Insights

Protein-kinase MK2 deficiency delays recovery in experimental autoimmune encephalomyelitis, a multiple sclerosis model. Lack of TNFα and altered FasR expression in MK2-/- mice suggest MK2 regulates immune response and apoptosis in CNS diseases.

Area of Science:

  • Neuroimmunology
  • Molecular and Cellular Biology

Background:

  • Protein-kinase MK2 (MK2) is recognized as a key mediator in inflammatory processes.
  • Experimental autoimmune encephalomyelitis (EAE) serves as a crucial animal model for studying multiple sclerosis (MS).

Purpose of the Study:

  • To investigate the role of MK2 in the pathogenesis of MOG35-55-induced EAE.
  • To elucidate the relationship between MK2, TNFα, and FasR in the context of EAE and MS.

Main Methods:

  • Utilized MK2-deficient (MK2-/-) and wild-type mice in an MOG35-55-induced EAE model.
  • Analyzed leukocyte infiltration in the central nervous system (CNS).
  • Measured serum TNFα levels and FasR mRNA expression in CNS-infiltrating leukocytes and patient blood samples.

Main Results:

  • MK2-/- mice exhibited delayed EAE onset and impaired recovery, with increased CNS leukocyte infiltration.
  • Absence of detectable serum TNFα in MK2-/- mice throughout EAE, contrasting with wild-type mice.
  • Reduced FasR mRNA expression in CNS leukocytes of MK2-/- mice, though inducible in vitro; reduced in MS patients.

Conclusions:

  • MK2 plays a critical role in regulating inflammatory cytokines and immune responses in EAE and potentially MS.
  • The MK2-dependent TNFα/FasR pathway may be crucial for the resolution of autoimmune CNS inflammation by promoting autoreactive leukocyte apoptosis.
  • Dysregulation of MK2 and FasR could contribute to prolonged disease activity in CNS autoimmune disorders.