4.8 Article

Permissive selection followed by affinity-based proliferation of GC light zone B cells dictates cell fate and ensures clonal breadth

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2016425118

关键词

GC B cells; positive selection; memory B cells; clonal diversity; affinity maturation

资金

  1. Combatting Disorders of Adaptive Immunity with Systems Medicine (COSMIC) Marie Sklodowska-Curie Grant [765158]
  2. Francis Crick Institute
  3. Cancer Research UK Grants [FC001057, FC001099]
  4. UK Medical Research Council [FC001057, FC001099, MR/J008060]
  5. Wellcome Trust [FC001057, FC001099]
  6. Marie Curie Actions (MSCA) [765158] Funding Source: Marie Curie Actions (MSCA)
  7. MRC [MR/J008060/1] Funding Source: UKRI

向作者/读者索取更多资源

Affinity maturation in germinal centers depends on efficient positive selection of B cells in the light zone. Different subpopulations of cMyc(+) GC B cells are identified and characterized, with higher-affinity cells diverging towards plasmablasts and lower-affinity cells towards memory B cell precursors. This dynamic process of positive selection leads to the generation of three distinct B cell fates, ensuring clonal diversity for broad protection.
Affinity maturation depends on how efficiently germinal centers (GCs) positively select B cells in the light zone (LZ). Positively selected GC B cells recirculate between LZs and dark zones (DZs) and ultimately differentiate into plasmablasts (PBs) and memory B cells (MBCs). Current understanding of the GC reaction presumes that cMyc-dependent positive selection of LZ B cells is a competitive affinity-dependent process; however, this cannot explain the production of GC-derived lower-affinity MBCs or retention of GC B cells with varied affinities. Here, by combining single-cell/bulk RNA sequencing and flow cytometry, we identified and characterized temporally and functionally distinct positively selected cMyc(+) GC B cell subpopulations. cMyc(+) LZ B cell subpopulations enriched with either higher- or lower-affinity cells diverged soon after permissive positive selection. The former subpopulation contained PB precursors, whereas the latter comprised less proliferative MBC precursors and future DZ entrants. The overall affinity of future DZ entrants was enhanced in the LZ through preferential proliferation of higher-affinity cells. Concurrently, lower-affinity cells were retained in GCs and protected from apoptosis. These findings redefine positive selection as a dynamic process generating three distinct B cell fates and elucidate how positive selection ensures clonal diversity for broad protection.

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