mTOR intersects antibody-inducing signals from TACI in marginal zone B cells

mTOR 与边缘区 B 细胞中 TACI 的抗体诱导信号相交

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作者:Jordi Sintes, Maurizio Gentile, Shuling Zhang, Yolanda Garcia-Carmona, Giuliana Magri, Linda Cassis, Daniel Segura-Garzón, Alessandra Ciociola, Emilie K Grasset, Sabrina Bascones, Laura Comerma, Marc Pybus, David Lligé, Irene Puga, Cindy Gutzeit, Bing He, Wendy DuBois, Marta Crespo, Julio Pascual, A

Abstract

Mechanistic target of rapamycin (mTOR) enhances immunity in addition to orchestrating metabolism. Here we show that mTOR coordinates immunometabolic reconfiguration of marginal zone (MZ) B cells, a pre-activated lymphocyte subset that mounts antibody responses to T-cell-independent antigens through a Toll-like receptor (TLR)-amplified pathway involving transmembrane activator and CAML interactor (TACI). This receptor interacts with mTOR via the TLR adapter MyD88. The resulting mTOR activation instigates MZ B-cell proliferation, immunoglobulin G (IgG) class switching, and plasmablast differentiation through a rapamycin-sensitive pathway that integrates metabolic and antibody-inducing transcription programs, including NF-κB. Disruption of TACI-mTOR interaction by rapamycin, truncation of the MyD88-binding domain of TACI, or B-cell-conditional mTOR deficiency interrupts TACI signaling via NF-κB and cooperation with TLRs, thereby hampering IgG production to T-cell-independent antigens but not B-cell survival. Thus, mTOR drives innate-like antibody responses by linking proximal TACI signaling events with distal immunometabolic transcription programs.

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