Glutathione-dependent redox balance characterizes the distinct metabolic properties of follicular and marginal zone B cells

Author:

Franchina Davide G.ORCID,Kurniawan Henry,Grusdat Melanie,Binsfeld Carole,Guerra Luana,Bonetti Lynn,Soriano-Baguet LeticiaORCID,Ewen Anouk,Kobayashi TakumiORCID,Farinelle Sophie,Minafra Anna Rita,Vandamme Niels,Carpentier Anaïs,Borgmann Felix K.,Jäger ChristianORCID,Chen Ying,Kleinewietfeld Markus,Vasiliou VasilisORCID,Mittelbronn Michel,Hiller KarstenORCID,Lang Philipp A.ORCID,Brenner DirkORCID

Abstract

AbstractThe metabolic principles underlying the differences between follicular and marginal zone B cells (FoB and MZB, respectively) are not well understood. Here we show, by studying mice with B cell-specific ablation of the catalytic subunit of glutamate cysteine ligase (Gclc), that glutathione synthesis affects homeostasis and differentiation of MZB to a larger extent than FoB, while glutathione-dependent redox control contributes to the metabolic dependencies of FoB. Specifically,Gclcablation in FoB induces metabolic features of wild-type MZB such as increased ATP levels, glucose metabolism, mTOR activation, and protein synthesis. Furthermore,Gclc-deficient FoB have a block in the mitochondrial electron transport chain (ETC) due to diminished complex I and II activity and thereby accumulate the tricarboxylic acid cycle metabolite succinate. Finally,Gclcdeficiency hampers FoB activation and antibody responses in vitro and in vivo, and induces susceptibility to viral infections. Our results thus suggest thatGclcis required to ensure the development of MZB, the mitochondrial ETC integrity in FoB, and the efficacy of antiviral humoral immunity.

Funder

Fonds National de la Recherche Luxembourg

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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