1. Cysteine-rich domain 1 of CD40 mediates receptor self-assembly.
- Author
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Smulski CR, Beyrath J, Decossas M, Chekkat N, Wolff P, Estieu-Gionnet K, Guichard G, Speiser D, Schneider P, and Fournel S
- Subjects
- CD40 Antigens genetics, CD40 Ligand chemistry, CD40 Ligand genetics, CD40 Ligand metabolism, Dendritic Cells cytology, HEK293 Cells, Humans, Protein Structure, Tertiary, CD40 Antigens chemistry, CD40 Antigens metabolism, Dendritic Cells metabolism, Models, Molecular, Protein Multimerization physiology, Signal Transduction physiology
- Abstract
The activation of CD40 on B cells, macrophages, and dendritic cells by its ligand CD154 (CD40L) is essential for the development of humoral and cellular immune responses. CD40L and other TNF superfamily ligands are noncovalent homotrimers, but the form under which CD40 exists in the absence of ligand remains to be elucidated. Here, we show that both cell surface-expressed and soluble CD40 self-assemble, most probably as noncovalent dimers. The cysteine-rich domain 1 (CRD1) of CD40 participated to dimerization and was also required for efficient receptor expression. Modelization of a CD40 dimer allowed the identification of lysine 29 in CRD1, whose mutation decreased CD40 self-interaction without affecting expression or response to ligand. When expressed alone, recombinant CD40-CRD1 bound CD40 with a K(D) of 0.6 μM. This molecule triggered expression of maturation markers on human dendritic cells and potentiated CD40L activity. These results suggest that CD40 self-assembly modulates signaling, possibly by maintaining the receptor in a quiescent state. more...
- Published
- 2013
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