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Distinct super-enhancer elements differentially control Il2ra gene expression in a cell-type specific fashion

Spolski, R.; Li, P.; Chandra, V.; Shin, B.; Liu, C.; Oh, J.; Ren, M.; Enomoto, Y.; West, E. E.; Christensen, S.; Wan, E. C. K.; Ge, M.; Lin, J.-X.; Vijayanand, P.; Rothenberg, E. V.; Leonard, W. J.

2022-11-18 immunology
10.1101/2022.11.18.516445 bioRxiv
Show abstract

The IL-2 receptor -chain (IL-2R/CD25) is constitutively expressed on DN2/DN3 thymocytes and Treg cells but induced by IL-2 on mature T and NK cells. Il2ra expression is regulated by a super-enhancer extensively bound by STAT5 in mature T cells. Here, we demonstrate that STAT5 cooperates with Notch to induce/maintain Il2ra/CD25 expression in DN2/DN3 cells. Moreover, we systematically investigated CD25 regulation using a series of mice with deletions spanning STAT5 binding elements. Deleting the upstream super-enhancer region mainly affected constitutive CD25 expression on DN2/DN3 thymocytes and Tregs, whereas deleting an intronic region primarily decreased IL-2-induced CD25 on peripheral T and NK cells. Thus, distinct elements preferentially control constitutive versus inducible expression in a cell-type-specific manner, with the MED1 coactivator co-localizing with specific STAT5 binding sites. Moreover, the intronic region was a dominant element whose deletion altered the structure throughout the super-enhancer in mature T cells. These results demonstrate differential functions for distinct super-enhancer elements, thereby indicating ways to manipulate CD25 expression in a cell-type specific fashion.

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