IL-4 Licenses B Cell Activation Through Cholesterol Synthesis

Author:

Steach Holly R.ORCID,York Autumn G.ORCID,Skadow Mathias H.ORCID,Chen Shuting,Zhao Jun,Williams Kevin J.,Zhou Quan,Hsieh Weu-Yuan,Brewer J. Richard,Qu Rihao,Shyer Justin A.,Harman Christian,Sefik Esen,Mowell Walter K.,Bailis Will,Cui Can,Kluger YuvalORCID,Bensinger Steven J.,Craft Joe,Flavell Richard A.ORCID

Abstract

ABSTRACTLymphocyte activation involves a transition from quiescence and associated catabolic metabolism to a metabolic state with noted similarities to cancer cells such as heavy reliance on aerobic glycolysis for energy demands and increased nutrient requirements for biomass accumulation and cell division1–3. Following antigen receptor ligation, lymphocytes require spatiotemporally distinct “second signals”. These include costimulatory receptor or cytokine signaling, which engage discrete programs that often involve remodeling of organelles and increased nutrient uptake or synthesis to meet changing biochemical demands4–6. One such signaling molecule, IL-4, is a highly pleiotropic cytokine that was first identified as a B cell co-mitogen over 30 years ago7. However, how IL-4 signaling mechanistically supports B cell proliferation is incompletely understood. Here, using single cell RNA sequencing we find that the cholesterol biosynthetic program is transcriptionally upregulated following IL-4 signaling during the early B cell response to influenza virus infection, and is required for B cell activationin vivo. By limiting lipid availabilityin vitro, we determine cholesterol to be essential for B cells to expand their endoplasmic reticulum, progress through cell cycle, and proliferate. In sum, we demonstrate that the well-known ability of IL-4 to act as a B cell growth factor is through a previously unknown rewiring of specific lipid anabolic programs, relieving sensitivity of cells to environmental nutrient availability.

Publisher

Cold Spring Harbor Laboratory

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