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Novel CARMIL2 Mutations in Patients with Variable Clinical Dermatitis, Infections, and Combined Immunodeficiency
Anas M Alazami1,2, Maryam Al-Helale3, Safa Alhissi1
1Department of Genetics, King Faisal Specialist Hospital and Research Centre, Riyadh, Saudi Arabia.
Insights
Mutations in CARMIL2 cause a novel combined immunodeficiency disorder, presenting with infections and immune cell defects. This study identifies new CARMIL2 mutations, expanding understanding of this primary immune disorder.
Area of Science:
- Immunology
- Genetics
Background:
- Combined immunodeficiencies (CIDs) are primary immune disorders affecting T cell function.
- CARMIL2 (RLTPR) is crucial for T cell signaling and cytoskeletal organization.
- CARMIL2 mutations have been linked to novel primary immunodeficiency disorders.
Purpose of the Study:
- To identify the genetic cause of a novel CID in seven patients from three families.
- To characterize the functional consequences of newly identified CARMIL2 mutations.
Main Methods:
- Whole exome sequencing and autozygome-guided analysis were used to identify mutations.
- Real-time PCR and immunoblotting assessed mutation effects on RNA and protein levels.
- Immunophenotyping and T cell proliferation assays evaluated immune cell function.
Main Results:
- Two novel CARMIL2 mutations (p.R50T and p.L846Sfs) were identified in affected patients.
- Both mutations led to loss of detectable CARMIL2 protein.
- Patients exhibited reduced T regulatory cells, skewed CD4+ T cell populations towards naïve status, and impaired T cell signaling.
Conclusions:
- This study expands the known CARMIL2 allelic heterogeneity in primary immunodeficiency.
- A deleterious missense mutation outside the LRR domain was identified, broadening mutation sites.
- CARMIL2 deficiency results in combined immunodeficiency with significant T cell defects.
Abstract:
Combined immunodeficiencies are a heterogeneous collection of primary immune disorders that exhibit defects in T cell development or function, along with impaired B cell activity even in light of normal B cell maturation. CARMIL2 (RLTPR) is a protein involved in cytoskeletal organization and cell migration, which also plays a role in CD28 co-signaling of T cells. Mutations in this protein have recently been reported to cause a novel primary immunodeficiency disorder with variable phenotypic presentations. Here, we describe seven patients from three unrelated, consanguineous multiplex families that presented with dermatitis, esophagitis, and recurrent skin and chest infections with evidence of combined immunodeficiency. Through the use of whole exome sequencing and autozygome-guided analysis, we uncovered two mutations not previously reported (p.R50T and p.L846Sfs) in CARMIL2. Real-time PCR analysis revealed that the biallelic frameshift mutation is under negative selection, likely due to nonsense-mediated RNA decay and leading to loss of detectable protein upon immunoblotting. Protein loss was also observed for the missense mutation, and 3D modeling suggested a disturbance in structural stability due to an increase in the electrostatic energy for the affected amino acid and surrounding residues. Immunophenotyping revealed that patient Treg counts were significantly depressed, and that CD4+ T cells were heavily skewed towards the naïve status. CD3/CD28 signaling impairment was evidenced by reduced proliferative response to stimulation. This work broadens the allelic heterogeneity associated with CARMIL2 and highlights a deleterious missense alteration located outside the leucine-rich repeat of the protein, where all other missense mutations have been reported to date.
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