4.7 Article

Role of NF-kappaB2-p100 in regulatory T cell homeostasis and activation

Journal

SCIENTIFIC REPORTS
Volume 9, Issue -, Pages -

Publisher

NATURE RESEARCH
DOI: 10.1038/s41598-019-50454-z

Keywords

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Funding

  1. Department of Biotechnology [BT/PR12849/MED/15/35/2009, BT/PR14420/Med/29/213/2010, BT/PR-14592/BRB/10/858/2010]
  2. Department of Science and Technology, Government of India [SR/SO/HS-0005/2011, EMR/2015/001074, SB/SO/HS/210/2013]
  3. Department of Biotechnology, Government of India

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The immunological roles of the nuclear factor-kappaB (NF-.B) pathway are mediated via the canonical components in immune responses and via non-canonical components in immune organogenesis and homeostasis, although the two components are capable of crosstalk. Regulatory CD4 T cells (Tregs) are homeostatically functional and represent an interesting potential meeting point of these two NF-kappa B components. We show that mice deficient in the non-canonical NF-.B component gene Nfkb2 (p100) had normal thymic development and suppressive function of Tregs. However, they had enhanced frequencies of peripheral ` effector-phenotype' Tregs (eTregs). In bi-parental chimeras of wild-type (WT) and Nfkb2-/- mice, the Nfkb2-/- genotype was over-represented in Tregs, with a further increase in the relative prominence of eTregs. Consistent with distinct properties of eTregs, the Nfkb2-/- genotype was more prominent in Tregs in extra-lymphoid tissues such as liver in the bi-parental chimeras. The Nfkb2-/- Tregs also displayed greater survival, activation and proliferation in vivo. These Nfkb2-/- Tregs showed higher nuclear NF-.B activity mainly comprising of RelB-containing dimers, in contrast to the prominence of cRel-and RelA-containing dimers in WT Tregs. Since p100 is an inhibitor of RelB activation as well as a participant as cleaved p52 in RelB nuclear activity, we tested biparental chimeras of WT and Relb-/- mice, and found normal frequencies of Relb-/- Tregs and eTregs in these chimeric mice. Our findings confirm and extend recent data, and indicate that p100 normally restrains RelB-mediated Treg activation, and in the absence of p100, p50-RelB dimers can contribute to Treg activation.

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