TACI, unlike BAFF-R, is solely activated by oligomeric BAFF and APRIL to support survival of activated B cells and plasmablasts

Author:

Bossen Claudia1,Cachero Teresa G.2,Tardivel Aubry1,Ingold Karine1,Willen Laure1,Dobles Max2,Scott Martin L.2,Maquelin Aris1,Belnoue Elodie3,Siegrist Claire-Anne3,Chevrier Stéphane1,Acha-Orbea Hans1,Leung Helen4,Mackay Fabienne4,Tschopp Jürg1,Schneider Pascal1

Affiliation:

1. Department of Biochemistry, University of Lausanne, Epalinges, Switzerland;

2. BiogenIdec, Cambridge, MA;

3. Department of Pathology-Immunology and Pediatrics, University of Geneva, Geneva, Switzerland; and

4. Garvan Institute of Medical Research, Darlinghurst, Australia

Abstract

Abstract The cytokine BAFF binds to the receptors TACI, BCMA, and BAFF-R on B cells, whereas APRIL binds to TACI and BCMA only. The signaling properties of soluble trimeric BAFF (BAFF 3-mer) were compared with those of higher-order BAFF oligomers. All forms of BAFF bound BAFF-R and TACI, and elicited BAFF-R–dependent signals in primary B cells. In contrast, signaling through TACI in mature B cells or plasmablasts was only achieved by higher-order BAFF and APRIL oligomers, all of which were also po-tent activators of a multimerization-dependent reporter signaling pathway. These results indicate that, although BAFF-R and TACI can provide B cells with similar signals, only BAFF-R, but not TACI, can respond to soluble BAFF 3-mer, which is the main form of BAFF found in circulation. BAFF 60-mer, an efficient TACI agonist, was also detected in plasma of BAFF transgenic and nontransgenic mice and was more than 100-fold more active than BAFF 3-mer for the activation of multimerization-dependent signals. TACI supported survival of activated B cells and plasmablasts in vitro, providing a rational basis to explain the immunoglobulin deficiency reported in TACI-deficient persons.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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