Bcl11b prevents fatal autoimmunity by promoting Treg cell program and constraining innate lineages in Treg cells

Bcl11b 通过促进 Treg 细胞程序和限制 Treg 细胞中的先天谱系来预防致命的自身免疫

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作者:Theodore T Drashansky, Eric Helm, Zhiguang Huo, Nina Curkovic, Preet Kumar, Xiaoping Luo, Upasana Parthasarathy, Ashley Zuniga, Jonathan J Cho, Kyle J Lorentsen, Zhiwei Xu, Mohammad Uddin, Safiehkhathoon Moshkani, Liang Zhou, Dorina Avram

Abstract

Regulatory T (Treg) cells are essential for peripheral tolerance and rely on the transcription factor (TF) Foxp3 for their generation and function. Several other TFs are critical for the Treg cell program. We found that mice deficient in Bcl11b TF solely in Treg cells developed fatal autoimmunity, and Bcl11b-deficient Treg cells had severely altered function. Bcl11b KO Treg cells showed decreased functional marker levels in homeostatic conditions, inflammation, and tumors. Bcl11b controlled expression of essential Treg program genes at steady state and in inflammation. Bcl11b bound to genomic regulatory regions of Treg program genes in both human and mouse Treg cells, overlapping with Foxp3 binding; these genes showed altered chromatin accessibility in the absence of Bcl11b. Additionally, Bcl11b restrained myeloid and NK cell programs in Treg cells. Our study provides new mechanistic insights on the Treg cell program and identity control, with major implications for therapies in autoimmunity and cancer.

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