IL-4 Licenses B Cell Activation Through Cholesterol Synthesis
Steach, H. R.; York, A. G.; Skadow, M. H.; Chen, S.; Zhao, J.; Williams, K. J.; Zhou, Q.; Hsieh, W.-Y.; Brewer, J. R.; Qu, R.; Shyer, J. A.; Harman, C.; Sefik, E.; Mowell, W. K.; Bailis, W.; Cui, C.; Kluger, Y.; Bensinger, S. J.; Craft, J.; Flavell, R.
Show abstract
Lymphocyte 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 activation in vivo. By limiting lipid availability in 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.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- The nutrient-sensing Rag-GTPase complex in B cells controls humoral immunity via TFEB/TFE3-dependent mitochondrial fitness 97%
- An integrated proteome and transcriptome of B cell maturation defines poised activation states of transitional and mature B cells 96%
- T cell receptor and IL-2 signaling strength control memory CD8+ T cell functional fitness via chromatin remodeling 96%
Similar papers in this journal
- A negative feedback loop mediated by the NR4A family of nuclear hormone receptors restrains expansion of B cells that receive signal one in the absence of signal two 97%
- The transcription factor Hhex cooperates with the corepressor Tle3 to promote memory B cell development 95%
- Loss of the intracellular enzyme QPCTL limits chemokine function and reshapes myeloid infiltration to augment tumor immunity 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.