Inhibition of glucose metabolism selectively targets autoreactive follicular helper T cells.

Choi, Seung-Chul; Titov, Anton A; Abboud, Georges; Seay, Howard R; Brusko, Todd M; Roopenian, Derry C; Salek-Ardakani, Shahram; Morel, Laurence · Nat Commun · 2018

basic_science · Level V

Where this comes from

Abstract

Follicular helper T (T<sub>FH</sub>) cells are expanded in systemic lupus erythematosus, where they are required to produce high affinity autoantibodies. Eliminating T<sub>FH</sub> cells would, however compromise the production of protective antibodies against viral and bacterial pathogens. Here we show that inhibiting glucose metabolism results in a drastic reduction of the frequency and number of T<sub>FH</sub> cells in lupus-prone mice. However, this inhibition has little effect on the production of T-cell-dependent antibodies following immunization with an exogenous antigen or on the frequency of virus-specific T<sub>FH</sub> cells induced by infection with influenza. In contrast, glutaminolysis inhibition reduces both immunization-induced and autoimmune T<sub>FH</sub> cells and humoral responses. Solute transporter gene signature suggests different glucose and amino acid fluxes between autoimmune T<sub>FH</sub> cells and exogenous antigen-specific T<sub>FH</sub> cells. Thus, blocking glucose metabolism may provide an effective therapeutic approach to treat systemic autoimmunity by eliminating autoreactive T<sub>FH</sub> cells while preserving protective immunity against pathogens.

Medical subject headings