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Updated: Aug 13, 2026

Human Neutrophil Flow Chamber Adhesion Assay
Published on: July 2, 2014
Characterization of two new CD18 alleles causing severe leukocyte adhesion deficiency
C López Rodríguez1, A Nueda, B Grospierre
1Unidad de Biología Molecular, Hospital de la Princesa, Madrid, Spain.
Insights
Leukocyte adhesion deficiency (LAD) is a genetic disorder affecting immune cells. This study identifies two novel mutations in the CD18 gene, a 10-base pair deletion and a nonsense mutation, causing severe LAD phenotypes.
Area of Science:
- Immunology
- Molecular Biology
- Genetics
Background:
- Leukocyte adhesion deficiency (LAD) is an autosomal recessive disorder characterized by mutations in the CD18 gene, crucial for leukocyte integrin function.
- Two LAD phenotypes, severe and moderate, are defined by CD18 expression levels on leukocytes, correlating with disease severity.
Observation:
- Two unrelated severe LAD patients (HS and ZJO) exhibited a complete absence of CD18 protein but differed in CD18 mRNA levels.
- Patient HS had normal CD18 mRNA with a 10-base pair deletion in exon 3, causing a frameshift and premature termination.
- Patient ZJO had undetectable CD18 mRNA and a nonsense mutation in exon 12 (TGC to TGA at Cys534).
Findings:
- A 10-base pair deletion in CD18 exon 3 was identified in patient HS, leading to frameshift and premature stop codon.
- A nonsense mutation within CD18 exon 12 was identified in patient ZJO.
- Both identified genetic abnormalities were confirmed at the genomic level, allowing for carrier detection in family studies.
Implications:
- These findings reveal two new CD18 alleles responsible for severe LAD, highlighting the genetic heterogeneity of the disease.
- Understanding these specific mutations aids in diagnosing LAD and potentially developing targeted therapeutic strategies.
- The identified mutations provide valuable insights into the structure-function relationship of the CD18 protein and integrin biology.
Abstract:
Leukocyte adhesion deficiency (LAD) is an autosomal recessive disease caused by heterogeneous mutations within the gene encoding the common beta subunit (CD18) of the three leukocyte integrins LFA-1 (CD11a/CD18), Mac-1 (CD11b/CD18), and p150,95 (CD11c/CD18). Based on the level of expression of CD18 on patient leukocytes, two phenotypes of LAD have been defined (severe and moderate) which correlate with the severity of the disease. We have investigated the molecular basis of the disease in two unrelated severe patients (HS and ZJO). Both patients share a complete absence of CD18 protein precursor and cell surface expression, but they differ in the level of CD18 mRNA, which is normal in HS and undetectable by Northern blot in ZJO. Determination of the primary structure of the patient HS CD18 mRNA revealed a 10-base pair deletion between nucleotides 190-200 (CD18 exon 3), which eliminates residues 41-43 and causes a frameshift into a premature termination codon 17 base pairs downstream from the deleted region. The 10-base pair frameshift deletion maps to a region of the CD18 gene where aberrant mRNA processing has been detected in HS and two other unrelated LAD patients. In the ZJO patient, amplification of lymphoblast CD18 mRNA demonstrated the presence of a non-sense mutation in the third nucleotide of the triplet encoding Cys534 (TGC-->TGA), within exon 12. Both genetic abnormalities were also detected at the genomic level, and affect the restriction pattern of their corresponding genes, thus enabling the detection of the mutant alleles among healthy heterozygous alleles in family studies. The identification of two new LAD CD18 alleles, either carrying a non-sense mutation (ZJO) or a partial gene deletion (HS), further illustrates the heterogeneity of the genetic alterations in LAD.
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