Search PubMed⌕ Search

Biomedical subjects

Nili Feuerstein

Publications and source records attributed to Nili Feuerstein.

3 recordsLinked to original sources

Chronic graft-versus-host reaction is associated with a decrease in Ig light chain receptor editing in bone marrow self-reactive B cells.

The encounter of developing B cells in the bone marrow with soluble hen egg lysozyme (sHEL) self antigen induces anergy and endogenous kappa light chain rearrangements ('receptor editing'). We have previously shown that induction of chronic graft-versus-host reaction (GVH) in tolerant Ig/sHEL mice results in prevention of B cell anergy in the bone marrow and the spleen. We now report that in chronic GVH, immature self-reactive B cells also show reduced levels of receptor editing in the bone marrow. This is evidenced by the following observations: (a) a small population of'receptor-edited' B cells, which is found in tolerant mice, is markedly reduced in mice that have lost tolerance in chronic GVH; (b) self-reactive B cells in GVH mice have reduced levels of endogenous kappa chain rearrangements; and (c) recombinase-activating gene (RAG)-2 expression is markedly decreased in immature self-reactive B cells in the bone marrow of chronic GVH mice. These results suggest that in chronic GVH newly emerging B cells escape tolerance, in part because of decreased receptor editing in the bone marrow. Thus, the autoimmunity induced by chronic GVH may ultimately result from the failure of B cell tolerance at multiple checkpoints.

Animals↗

Chronic GVH prevents anergy in bone marrow self-reactive B cells: a selective increase in post-endoplasmic reticulum processing and trafficking to the cell surface of autoreactive IgM receptors.

B cell autoreactivity is a component of chronic graft versus host (GVH) disease in humans and mice. Chronic GVH driven by I-A disparity results in loss of B cell tolerance in Ig/sHEL tolerant mice. In these mice, B cell anergy is characterized by down-modulation of sIgM mediated by intracellular retention in the endoplasmic reticulum (ER) and/or a block in post-ER processing of IgM receptors. Here, we report that GVH induces a selective increase in post-ER processing of the micro chain and trafficking to the cell surface of IgM receptors in B cells that bind HEL self-antigen. The increase in sIgM was detectable as early as 6 days post-GVH, before the appearance of circulating autoantibodies, and was particularly prominent in B cells that up-regulated surface I-A. A further increase in sIgM was found at later time points, along with circulating anti-HEL autoantibodies and a marked decrease in serum-free HEL, but no significant change in the amounts of HEL bound to B cells in vivo. These findings suggest that (i) abrogation of ER retention of IgM receptors in self-reactive B cells is an early event triggered by allogeneic T cells and (ii) at later stages of GVH disease the appearance of autoantibodies reduces the availability of free autoantigen, which may further escalate anergy escape of self-reactive B cells, and lead to exacerbation and perpetuation of autoimmunity.

Adoptive Transfer↗