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A Novel Homozygous JAK3 Mutation Leading to T-B+NK- SCID in Two Brazilian Patients
Lucila A Barreiros1, Gesmar R S Segundo2, Anete S Grumach3
1Laboratory of Human Immunology, Department of Immunology, Institute of Biomedical Sciences, University of São Paulo, São Paulo, Brazil.
Insights
Two Brazilian infants with T-B+NK- Severe Combined Immunodeficiency (SCID) were identified with a novel homozygous JAK3 mutation. This genetic defect disrupts T-cell development, leading to a nonfunctional JAK3 protein.
Area of Science:
- Immunology
- Genetics
- Pediatrics
Background:
- Severe Combined Immunodeficiency (SCID) is a group of rare genetic disorders characterized by profound defects in T-cell, B-cell, and/or NK-cell function.
- JAK3 (Janus Kinase 3) is crucial for cytokine signaling in lymphoid cells, and mutations can lead to SCID.
- Early diagnosis and treatment, such as hematopoietic stem cell transplantation (HSCT), are critical for SCID survival.
Abstract:
We report a novel homozygous JAK3 mutation in two female Brazilian SCID infants from two unrelated kindreds. Patient 1 was referred at 2 months of age due to a family history of immunodeficiency and the appearance of a facial rash. The infant was screened for TRECs (T-cell receptor excision circles) and KRECs (kappa-deleting recombination excision circles) for the assessment of newly formed naïve T and B cells respectively, which showed undetectable TRECs and normal numbers of KRECs. Lymphocyte immunophenotyping by flow cytometry confirmed the screening results, revealing a T-B+NK- SCID. The patient underwent successful HSCT. Patient 2 was admitted to an intensive care unit at 8 months of age with severe pneumonia, BCGosis, and oral moniliasis; she also had a positive family history for SCID but newborn screening was not performed at birth. At 10 months of age she was diagnosed as a T-B+NK- SCID and underwent successful HSCT. JAK3 sequencing revealed the same homozygous missense mutation (c.2350G>A) in both patients. This mutation affects the last nucleotide of exon 17 and it is predicted to disrupt the donor splice site. cDNA sequencing revealed skipping of exon 17 missing in both patients, confirming the predicted effect on mRNA splicing. Skipping of exon 17 leads to an out of frame deletion of 151 nucleotides, frameshift and creation of a new stop codon 60 amino acids downstream of the mutation resulting in a truncated protein which is likely nonfunctional.
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