|  Help  |  About  |  Contact Us

Publication : Autoreactive preplasma cells break tolerance in the absence of regulation by dendritic cells and macrophages.

First Author  Gilbert MR Year  2012
Journal  J Immunol Volume  189
Issue  2 Pages  711-20
PubMed ID  22675201 Mgi Jnum  J:189561
Mgi Id  MGI:5446110 Doi  10.4049/jimmunol.1102973
Citation  Gilbert MR, et al. (2012) Autoreactive preplasma cells break tolerance in the absence of regulation by dendritic cells and macrophages. J Immunol 189(2):711-20
abstractText  The ability to induce Ab responses to pathogens while maintaining the quiescence of autoreactive cells is an important aspect of immune tolerance. During activation of TLR4, dendritic cells (DCs) and macrophages (MFs) repress autoantibody production through their secretion of IL-6 and soluble CD40L (sCD40L). These soluble mediators selectively repress B cells chronically exposed to Ag, but not naive cells, suggesting a means to maintain tolerance during TLR4 stimulation, yet allow immunity. In this study, we identify TNF-alpha as a third repressive factor, which together with IL-6 and CD40L account for nearly all the repression conferred by DCs and MFs. Similar to IL-6 and sCD40L, TNF-alpha did not alter B cell proliferation or survival. Instead, it reduced the number of Ab-secreting cells. To address whether the soluble mediators secreted by DCs and MFs functioned in vivo, we generated mice lacking IL-6, CD40L, and TNF-alpha. Compared to wild-type mice, these mice showed prolonged anti-nuclear Ab responses following TLR4 stimulation. Furthermore, adoptive transfer of autoreactive B cells into chimeric IL-6(-/-) x CD40L(-/-) x TNF-alpha(-/-) mice showed that preplasma cells secreted autoantibodies independent of germinal center formation or extrafollicular foci. These data indicate that in the absence of genetic predisposition to autoimmunity, loss of endogenous IL-6, CD40L, and TNF-alpha promotes autoantibody secretion during TLR4 stimulation.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

23 Bio Entities

Trail: Publication

0 Expression