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Updated: Aug 8, 2026

Murine Model of CD40-activation of B cells
Published on: March 6, 2010
Characterization of CD40 signaling determinants regulating nuclear factor-kappa B activation in B lymphocytes
Y Hsing1, B S Hostager, G A Bishop
1The Immunology Graduate Program, University of Iowa, Iowa City 52242, USA.
Insights
CD40 signaling activates NF-kappa B in B cells, crucial for antibody secretion and immune responses. This process is independent of certain TRAF proteins, revealing new insights into B cell activation pathways.
Area of Science:
- Immunology
- Molecular Biology
- Cell Signaling
Background:
- CD40 signaling is vital for B cell humoral immune responses, including proliferation, Ig secretion, and memory B cell generation.
- NF-kappa B (nuclear factor kappa B) activation is a key downstream event of CD40 ligation, essential for many B cell activation processes.
Purpose of the Study:
- To identify CD40 signaling components upstream of NF-kappa B activation.
- To elucidate the functional consequences of NF-kappa B activation downstream of CD40 signaling in B cells.
Main Methods:
- Analysis of mouse B cell transfectants expressing wild-type or mutant human CD40.
- Examination of CD40 cytoplasmic domain truncation and point mutants.
- Assessing NF-kappa B activation, protein degradation, and cell surface molecule expression.
Main Results:
- A 10-amino acid CD40 cytoplasmic determinant is required for NF-kappa B activation.
- NF-kappa B activation is independent of TRAF2, TRAF3, and TRAF5 association, and the CD40 transmembrane domain.
- Proteasome-dependent degradation of I kappa B alpha and I kappa B beta precedes NF-kappa B nuclear translocation.
- NF-kappa B activation correlates with Ab secretion and ICAM-1/LFA-1 up-regulation, but not B7-1, Fas, or CD23.
Conclusions:
- CD40-induced NF-kappa B activation in B cells can occur independently of TRAF2 and TRAF5.
- Specific CD40 cytoplasmic regions are critical for NF-kappa B activation and subsequent B cell functions.
- NF-kappa B activation is necessary but not sufficient for all CD40-mediated B cell responses.
Abstract:
CD40 signaling to B cells is important for generating an effective humoral immune response. CD40 ligation leads to B cell activation events such as proliferation, Ig secretion, isotype switching, and up-regulation of cell surface molecules, as well as the generation of memory B cells. Many of these events are dependent upon the ability of CD40 to activate the transcription factor NF-kappa B (NF-kappa B). To define the CD40 signaling components upstream of NF-kappa B activation and the functional consequences downstream of NF-kappa B activation, we examined mouse B cell transfectants expressing wild-type or mutant human CD40. Analysis of CD40 cytoplasmic domain truncation and point mutants defined a 10-amino acid CD40 cytoplasmic signaling determinant required for NF-kappa B activation. A threonine residue at position 234, previously shown to be important for CD40 association with TNF receptor-associated factor 2 (TRAF2), TRAF3, and TRAF5, was not required for NF-kappa B activation. This suggests that in B cells, CD40-induced NF-kappa B activation can occur independently of TRAF2 and TRAF5 association. NF-kappa B activation was independent of the transmembrane domain of CD40, suggesting that it is independent of p23, a molecule that associates with CD40 in a region other than the cytoplasmic domain. Proteasome-dependent inhibitory kappa B alpha (I kappa B alpha) and I kappa B beta degradation occurred downstream of CD40 ligation and preceded CD40-mediated NF-kappa B nuclear translocation. CD40- or pervanadate-mediated I kappa B tyrosine phosphorylation was not detected. NF-kappa B activation correlated with the ability of CD40 to induce Ab secretion and the up-regulation of ICAM-1 and LFA-1. However, NF-kappa B activation was insufficient for CD40-mediated up-regulation of B7-1, Fas, and CD23.
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