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Oxygen level is a critical regulator of human B cell differentiation and IgG class switch recombination.


ABSTRACT: The generation of high-affinity antibodies requires an efficient germinal center (GC) response. As differentiating B cells cycle between GC dark and light zones they encounter different oxygen pressures (pO2). However, it is essentially unknown if and how variations in pO2 affect B cell differentiation, in particular for humans. Using optimized in vitro cultures together with in-depth assessment of B cell phenotype and signaling pathways, we show that oxygen is a critical regulator of human naive B cell differentiation and class switch recombination. Normoxia promotes differentiation into functional antibody secreting cells, while a population of CD27++ B cells was uniquely generated under hypoxia. Moreover, time-dependent transitions between hypoxic and normoxic pO2 during culture - reminiscent of in vivo GC cyclic re-entry - steer different human B cell differentiation trajectories and IgG class switch recombination. Taken together, we identified multiple mechanisms trough which oxygen pressure governs human B cell differentiation.

SUBMITTER: Koers J 

PROVIDER: S-EPMC9795029 | biostudies-literature | 2022

REPOSITORIES: biostudies-literature

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Oxygen level is a critical regulator of human B cell differentiation and IgG class switch recombination.

Koers Jana J   Marsman Casper C   Steuten Juulke J   Tol Simon S   Derksen Ninotska I L NIL   Ten Brinke Anja A   van Ham S Marieke SM   Rispens Theo T  

Frontiers in immunology 20221214


The generation of high-affinity antibodies requires an efficient germinal center (GC) response. As differentiating B cells cycle between GC dark and light zones they encounter different oxygen pressures (<i>p</i>O<sub>2</sub>). However, it is essentially unknown if and how variations in <i>p</i>O<sub>2</sub> affect B cell differentiation, in particular for humans. Using optimized <i>in vitro</i> cultures together with in-depth assessment of B cell phenotype and signaling pathways, we show that o  ...[more]

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