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Updated: Jul 28, 2026

Generation of Human CD40-activated B cells
Published on: October 16, 2009
Mutations of CD40 gene cause an autosomal recessive form of immunodeficiency with hyper IgM
S Ferrari1, S Giliani, A Insalaco
1Istituto di Medicina Molecolare "Angelo Nocivelli," Clinica Pediatrica, Università di Brescia, Piazzale Spedali Civili 1, 25123 Brescia, Italy.
Insights
Mutations in the CD40 gene cause an autosomal recessive form of hyper IgM syndrome. This condition is clinically and immunologically similar to the X-linked form, highlighting CD40
Area of Science:
- Immunology
- Genetics
- Molecular Biology
Background:
- CD40 is a receptor on immune cells like B cells and macrophages.
- CD40 ligand (CD40L) from T cells binds CD40, crucial for B cell memory and Ig switching.
- X-linked hyper IgM syndrome results from CD40L gene mutations.
Purpose of the Study:
- To investigate the genetic basis of autosomal recessive hyper IgM syndrome.
- To identify mutations in the CD40 gene responsible for this condition.
Main Methods:
- Genetic sequencing of CD40 in affected patients.
- Analysis of CD40 genomic DNA for mutations.
- Phenotypic characterization of patients with CD40 gene mutations.
Main Results:
- Identified three patients with autosomal recessive hyper IgM lacking cell surface CD40.
- One patient had a homozygous silent mutation in CD40 exon 5 causing exon skipping.
- Two patients had a homozygous point mutation in CD40 exon 3 (Cys to Arg substitution).
Conclusions:
- CD40 gene mutations cause an autosomal recessive form of hyper IgM.
- This form is indistinguishable from the X-linked hyper IgM syndrome.
- CD40 is essential for normal B cell development and immune response.
Abstract:
CD40 is a member of the tumor necrosis factor receptor superfamily, expressed on a wide range of cell types including B cells, macrophages, and dendritic cells. CD40 is the receptor for CD40 ligand (CD40L), a molecule predominantly expressed by activated CD4(+) T cells. CD40/CD40L interaction induces the formation of memory B lymphocytes and promotes Ig isotype switching, as demonstrated in mice knocked-out for either CD40L or CD40 gene, and in patients with X-linked hyper IgM syndrome, a disease caused by CD40L/TNFSF5 gene mutations. In the present study, we have identified three patients with an autosomal recessive form of hyper IgM who fail to express CD40 on the cell surface. Sequence analysis of CD40 genomic DNA showed that one patient carried a homozygous silent mutation at the fifth base pair position of exon 5, involving an exonic splicing enhancer and leading to exon skipping and premature termination; the other two patients showed a homozygous point mutation in exon 3, resulting in a cysteine to arginine substitution. These findings show that mutations of the CD40 gene cause an autosomal recessive form of hyper IgM, which is immunologically and clinically undistinguishable from the X-linked form.
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