Novel ITGB2 Mutation Is Responsible for a Severe Form of Leucocyte Adhesion Deficiency Type 1

Author:

Bouhouche Ahmed12ORCID,Tabache Yasmin34,Askander Omar2,Charoute Hicham5ORCID,Mesnaoui Nada4,Belayachi Lamiae2,El Hafidi Naima6,Hardizi Houyam2,El Fahime Elmostafa7ORCID,Erreimi Naima34,Barakat Abdelhamid8ORCID,Khattab Mohammed34,Seghrouchni Fouad9ORCID,El Hassani Amine346

Affiliation:

1. Research Team in Neurology and Neurogenetics, Genomics Center of Human Pathologies, Medical School and Pharmacy, Mohammed V University in Rabat, Morocco

2. Research Genetics Center of the Cheikh Zaid Foundation, Abulcasis International University of Health Sciences, Rabat, Morocco

3. Department of Pediatrics, Abulcasis International University of Health Sciences, Rabat, Morocco

4. Centre of childhood Care and Prevention, Cheikh Zaid International Universitary Hospital, Rabat, Morocco

5. Research Unit of Epidemiology, Biostatistics and Bioinformatics, Institut Pasteur du Maroc, Casablanca, Morocco

6. Department of Pediatric Children Hospital, Medical School and Pharmacy, Mohammed V University in Rabat, Morocco

7. Molecular Biology and Functional Genomics Platform, National Center for Scientific and Technical Research, Rabat, Morocco

8. Laboratory of Genomics and Human Genetics, Institut Pasteur du Maroc, Casablanca, Morocco

9. Laboratory of the Cellular Immunology, Institut National d'Hygiène, Rabat, Morocco

Abstract

Leukocyte adhesion deficiency type 1 (LAD1) is a rare autosomal recessive hereditary disorder characterized by recurrent infections, impaired pus formation, delayed wound healing, omphalitis, and delayed separation of the umbilical cord as hallmark features of the disease. It results from mutations in the integrin β2 subunit gene ITGB2, which encodes the integrin beta chain-2 protein CD18. In this study, we aimed to investigate the case of a five-month-old boy who presented with a clinical phenotype and flow cytometry results suggesting LAD1 disease. Sanger sequencing of all exons and intron boundaries of ITGB2 identified a novel in-frame deletion in exon 7 (ITGB2 c.844_846delAAC, p.Asn282del) in the patient. The p.Asn282del mutation was heterozygous in the child’s parents, whereas it was absent in the 96 control individuals from North Africa. This variant was evaluated by two in silico mutation analysis tools, PROVEAN and MutationTaster, which predicted that the mutation was likely to be pathogenic. In addition, molecular modeling with the YASARA View software suggested that this novel mutation may affect the structure of integrin beta-2 and, subsequently, its interaction with integrin alpha-X. In summary, we report a novel pathogenic mutation p.Asn282del associated with LAD1 that expands the mutation diversity of ITGB2 and suggest the combination of flow cytometry and ITGB2 sequencing as a first-line diagnostic approach for LAD disease.

Funder

Cheikh Zaid Foundation of Rabat, Morocco

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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