AI Article Synopsis

  • B cell antigen receptor (BCR) signaling is modified in germinal center B cells (GCBCs) to favor the selection of high-affinity B cells, but the specifics of this process are not completely clear.* -
  • A negative feedback loop driven by AKT kinase reduces BCR signaling in GCBCs, which is influenced by changes in phosphorylation and the activity of specific proteins that inhibit BCR signaling.* -
  • Inhibition of AKT can relieve this feedback mechanism, leading to increased activity of key signaling molecules associated with BCR, suggesting a potential pathway for enhancing B cell responses.*

Article Abstract

B cell antigen receptor (BCR) and CD40 signaling are rewired in germinal center (GC) B cells (GCBCs) to optimize selection for high-affinity B cells. In GCBC, BCR signals are constrained, but the mechanisms are not well understood. Here we describe a GC-specific, AKT-kinase-driven negative feedback loop that attenuates BCR signaling. Mass spectrometry revealed that AKT target activity was altered in GCBCs compared with naive B cells. Retargeting was linked to differential AKT T308 and S473 phosphorylation, in turn controlled by GC-specific upregulation of phosphoinositide-dependent protein kinase PDK1 and the phosphatase PTEN. In GCBCs, AKT preferentially targeted CSK, SHP-1 and HPK1, which are negative regulators of BCR signaling. We found that phosphorylation enhances enzymatic activity of these proteins, creating a negative feedback loop that dampens upstream BCR signaling. AKT inhibition relieved this negative feedback and enhanced activation of BCR-proximal kinase LYN, as well as downstream BCR signaling molecules in GCBCs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6724213PMC
http://dx.doi.org/10.1038/s41590-019-0376-3DOI Listing

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