Control of T<sub>reg</sub> cell homeostasis and immune equilibrium by Lkb1 in dendritic cells.

Chen, Song; Fang, Lijun; Guo, Wei; Zhou, Yushan; Yu, Gang; Li, Wenwen; Dong, Kui; Liu, Jingru et al. · Nat Commun · 2018

basic_science · Level V

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Abstract

To balance immunity and tolerance, the endogenous pool of Foxp3<sup>+</sup> regulatory T (T<sub>reg</sub>) cells is tightly controlled, but the underlying mechanisms of this control remain poorly understood. Here we show that the number of T<sub>reg</sub> cells is negatively regulated by the kinase Lkb1 in dendritic cells (DCs). Conditional knockout of the Lkb1 gene in DCs leads to excessive T<sub>reg</sub> cell expansion in multiple organs and dampens antigen-specific T cell immunity. Lkb1-deficient DCs are capable of enhancing, compared with wild-type DCs, T<sub>reg</sub> cell proliferation via cell-cell contact involving the IKK/IKBα-independent activation of the NF-κB/OX40L pathway. Intriguingly, treating wild-type mice with lipopolysaccharide selectively depletes Lkb1 protein in DCs, resulting in T<sub>reg</sub> cell expansion and suppressed inflammatory injury upon subsequent challenge. Loss of Lkb1 does not obviously upregulate proinflammatory molecules expression on DCs. We thus identify Lkb1 as a regulatory switch in DCs for controlling T<sub>reg</sub> cell homeostasis, immune response and tolerance.

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