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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.
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.
Abstract:
Heterozygous CTLA-4 deficiency has been reported as a monogenic cause of common variable immune deficiency with features of immune dysregulation. Direct mutation in CTLA-4 leads to defective regulatory T-cell (Treg) function associated with impaired ability to control levels of the CTLA-4 ligands, CD80 and CD86. However, additional mutations affecting the CTLA-4 pathway, such as those recently reported for LRBA, indirectly affect CTLA-4 expression, resulting in clinically similar disorders. Robust phenotyping approaches sensitive to defects in the CTLA-4 pathway are therefore required to inform understanding of such immune dysregulation syndromes. Here, we describe assays capable of distinguishing a variety of defects in the CTLA-4 pathway. Assessing total CTLA-4 expression levels was found to be optimal when restricting analysis to the CD45RA-Foxp3+ fraction. CTLA-4 induction following stimulation, and the use of lysosomal-blocking compounds, distinguished CTLA-4 from LRBA mutations. Short-term T-cell stimulation improved the capacity for discriminating the Foxp3+ Treg compartment, clearly revealing Treg expansions in these disorders. Finally, we developed a functionally orientated assay to measure ligand uptake by CTLA-4, which is sensitive to ligand-binding or -trafficking mutations, that would otherwise be difficult to detect and that is appropriate for testing novel mutations in CTLA-4 pathway genes. These approaches are likely to be of value in interpreting the functional significance of mutations in the CTLA-4 pathway identified by gene-sequencing approaches.
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