Cooperative immunoregulatory function of the transmembrane adaptor proteins SIT and LAX

Börge Arndt1, Thomas Kalinski, Dirk Reinhold

  • 1Institutes of Molecular and Clinical Immunology, Otto-von-Guericke University Magdeburg, Magdeburg, Germany. boerge.arndt@med.uni-muenchen.de

Insights

Transmembrane adaptors SIT and LAX negatively regulate immune responses. Their combined deficiency in mice leads to T cell accumulation, B cell overactivation, and the development of autoimmunity, indicating functional cooperation.

Area of Science:

  • Immunology
  • Molecular and Cellular Biology

Background:

  • Transmembrane adaptors (TRAPs) regulate lymphocyte activation, a key process in immune responses.
  • While in vitro studies highlight TRAP functions, in vivo studies show minimal effects for most TRAPs (SIT, NTAL, LAX), suggesting functional redundancy.
  • Previous research indicates that combined deficiencies in certain TRAPs result in more severe phenotypes than single deficiencies.

Purpose of the Study:

  • To investigate the functional overlap between transmembrane adaptor proteins SIT and LAX.
  • To generate and characterize double knockout (DKO) mice deficient in both SIT and LAX.

Main Methods:

  • Generation of SIT/LAX double knockout (DKO) mice.
  • Analysis of immune cell populations (CD4+ T cells, B cells, B1 cells) in DKO mice.
  • Assessment of B cell proliferation, immune responses to TNP-LPS, and development of autoimmunity (ANAs, renal disease).

Main Results:

  • SIT/LAX DKO mice exhibit accumulation of activated CD4+ T cells and hyperproliferative conventional B cells.
  • DKO mice show an expanded B1 cell pool, hypergammaglobulinaemia, and enhanced T1-independent immune responses.
  • SIT/LAX deficiency leads to impaired peripheral tolerance, autoimmunity characterized by anti-nuclear antibodies (ANAs) and renal disease.

Conclusions:

  • SIT and LAX function as critical negative regulators of immune responses.
  • These adaptors exhibit functional redundancy and cooperate to maintain immune homeostasis.
  • Disruption of SIT/LAX function results in a breakdown of tolerance and the development of autoimmune diseases.

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