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Identification of two molecular defects in a child with leukocyte adherence deficiency
A L Back1, W W Kwok, D D Hickstein
1Medical Research Service, Seattle Veterans Affairs Medical Center, Washington 98108.
Insights
Leukocyte Adherence Deficiency (LAD) involves recurrent infections due to defective leukocyte integrins. This study identified two new CD18 gene mutations in a child with severe LAD, revealing compound heterozygosity.
Area of Science:
- Immunology
- Molecular Biology
- Genetics
Background:
- Leukocyte Adherence Deficiency (LAD) is a severe primary immunodeficiency characterized by recurrent bacterial infections.
- It stems from a deficiency in leukocyte cell adhesion molecules, specifically the CD11/CD18 integrin complexes.
- Defects in the common CD18 (beta) subunit prevent proper surface expression of these crucial molecules.
Observation:
- This study investigated the molecular underpinnings of severe LAD in a pediatric patient.
- Two distinct molecular defects within the CD18 subunit were identified in the patient's DNA.
- These defects included a single-base pair C-to-T substitution and a 220-base pair deletion.
Findings:
- The C-to-T substitution resulted in a proline-to-leucine amino acid change at position 178 of the CD18 protein.
- The deletion caused a frameshift mutation, leading to a premature stop codon within the extracellular domain of CD18.
- These findings indicate the patient has a compound heterozygous form of LAD.
Implications:
- The identified mutations highlight critical regions within the CD18 subunit essential for integrin function.
- Understanding these molecular defects aids in diagnosing LAD and provides insights into CD11/CD18 heterodimer formation.
- This research contributes to the genetic understanding of primary immunodeficiencies and leukocyte adhesion.
Abstract:
Children with leukocyte adherence deficiency (LAD), or leukocyte cell adhesion molecule deficiency, experience recurrent, life-threatening bacterial infections related to severe deficiency in surface expression of the leukocyte integrin molecules. The leukocyte integrins consist of a common CD18 (beta) subunit and individual, noncovalently associated alpha subunits designated CD11a, CD11b, and CD11c. Defects in the CD18 subunit prevent surface expression of the CD11/CD18 complexes in children with this disease. We investigated the molecular basis of the disease in a child with the severe deficiency form of LAD and identified two molecular defects in the CD18 subunit. The first defect is a single-base pair C----T transposition resulting in an amino acid substitution of a leucine for a proline at amino acid 178. This amino acid substitution is located in a region that is highly conserved among the integrin beta subunits and where two previous defects have been located in LAD. The second mutation involves a deletion of 220 base pairs in the cDNA coding for a portion of the extracellular domain and results in a frameshift into a premature stop codon. The deleted region corresponds to a single exon in the CD18 gene. Identification of these two molecular defects in a single child with this disease indicates the compound heterozygous nature of the disorder in this child and identifies regions of the CD18 subunit that may be important for CD11/CD18 heterodimer formation and surface expression.
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