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Updated: Aug 8, 2026

Generation of Human CD40-activated B cells
Published on: October 17, 2009
CD40 ligand gene defects responsible for X-linked hyper-IgM syndrome
R C Allen1, R J Armitage, M E Conley
1Howard Hughes Medical Institute, Baylor College of Medicine, Houston, TX 77030.
Insights
Mutations in the CD40 ligand (CD40L) gene cause X-linked immunodeficiency, leading to hyper-IgM syndrome. This T cell defect prevents B cells from switching immunoglobulin types, impacting immune response.
Area of Science:
- Immunology
- Genetics
Background:
- CD40 ligand (CD40L) on T cells is crucial for B cell activation and immunoglobulin production.
- Hyper-IgM syndrome, an X-linked immunodeficiency, is characterized by elevated IgM and reduced other immunoglobulin isotypes.
Purpose of the Study:
- Investigate the genetic basis of hyper-IgM syndrome by examining the CD40L gene.
- Determine the functional consequences of CD40L mutations on T and B cell interactions.
Main Methods:
- Sequencing of CD40L complementary DNA (cDNA) from patients.
- Recombinant expression of mutant CD40L to assess protein function.
- Analysis of T cell expression and B cell response to CD40L.
Main Results:
- Point mutations were identified in the CD40L cDNA of three out of four patients.
- Mutant CD40L proteins failed to bind CD40 and could not induce B cell proliferation or IgE secretion.
- Affected patients' T cells did not express functional CD40L, while their B cells responded normally to wild-type CD40L.
Conclusions:
- CD40L gene defects are the cause of hyper-IgM syndrome in these patients.
- These defects result in T cell dysfunction, impairing B cell immunoglobulin class switching.
- Understanding CD40L function is critical for diagnosing and potentially treating X-linked immunodeficiencies.
Abstract:
The ligand for CD40 (CD40L) is a membrane glycoprotein on activated T cells that induces B cell proliferation and immunoglobulin secretion. Abnormalities in the CD40L gene were associated with an X-linked immunodeficiency in humans [hyper-IgM (immunoglobulin M) syndrome]. This disease is characterized by elevated concentrations of serum IgM and decreased amounts of all other isotypes. CD40L complementary DNAs from three of four patients with this syndrome contained distinct point mutations. Recombinant expression of two of the mutant CD40L complementary DNAs resulted in proteins incapable of binding to CD40 and unable to induce proliferation or IgE secretion from normal B cells. Activated T cells from the four affected patients failed to express wild-type CD40L, although their B cells responded normally to wild-type CD40L. Thus, these CD40L defects lead to a T cell abnormality that results in the failure of patient B cells to undergo immunoglobulin class switching.
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