Identifying functional defects in patients with immune dysregulation due to LRBA and CTLA-4 mutations

Tie Zheng Hou1, Nisha Verma1, Jennifer Wanders1

  • 1Institute of Immunity and Transplantation, Division of Infection & Immunity, School of Life and Medical Sciences, University College London, Royal Free Hospital, London, United Kingdom.

Blood
|February 5, 2017
PubMed

Insights

New assays can distinguish defects in the cytotoxic T-lymphocyte-associated protein 4 (CTLA-4) pathway, crucial for understanding immune dysregulation syndromes and identifying mutations affecting CTLA-4 function.

Area of Science:

  • Immunology
  • Molecular Biology
  • Genetics

Background:

  • Heterozygous CTLA-4 deficiency causes immune dysregulation, impacting regulatory T-cell (Treg) function and CTLA-4 ligand control.
  • Mutations in genes like LRBA indirectly affect CTLA-4, leading to similar clinical disorders, necessitating precise diagnostic tools.

Purpose of the Study:

  • To develop and validate robust assays for distinguishing various defects within the CTLA-4 pathway.
  • To improve the understanding and diagnosis of immune dysregulation syndromes linked to CTLA-4 pathway mutations.

Main Methods:

  • Assessing total CTLA-4 expression in CD45RA-Foxp3+ T-cells.
  • Analyzing CTLA-4 induction post-stimulation and using lysosomal inhibitors to differentiate CTLA-4 and LRBA mutations.
  • Employing short-term T-cell stimulation to identify Treg expansions and developing a ligand uptake assay for CTLA-4 function.

Main Results:

  • Specific assay conditions optimized CTLA-4 expression analysis.
  • Distinct patterns of CTLA-4 induction and lysosomal activity differentiated CTLA-4 from LRBA mutations.
  • Treg compartment analysis revealed expansions, and a ligand uptake assay detected subtle CTLA-4 binding/trafficking defects.

Conclusions:

  • The developed assays effectively distinguish various CTLA-4 pathway defects, aiding in the diagnosis of immune dysregulation.
  • These functional assays are valuable for interpreting the significance of novel CTLA-4 pathway gene mutations identified through sequencing.