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Transcriptional reprogramming by mutated IRF4 in lymphoma

Authors :
Schleussner, N
Cauchy, P
Franke, V
Giefing, M
Fornes, O
Vankadari, N
Assi, SA
Costanza, M
Weniger, MA
Akalin, A
Anagnostopoulos, I
Bukur, T
Casarotto, MG
Damm, F
Daumke, O
Edginton-White, B
Gebhardt, JCM
Grau, M
Grunwald, S
Hansmann, M-L
Hartmann, S
Huber, L
Kärgel, E
Lusatis, S
Noerenberg, D
Obier, N
Pannicke, U
Fischer, A
Reisser, A
Rosenwald, A
Schwarz, K
Sundararaj, S
Weilemann, A
Winkler, W
Xu, W
Lenz, G
Rajewsky, K
Wasserman, WW
Cockerill, PN
Scheidereit, C
Siebert, R
Küppers, R
Grosschedl, R
Janz, M
Bonifer, C
Mathas, S
Schleussner, N
Cauchy, P
Franke, V
Giefing, M
Fornes, O
Vankadari, N
Assi, SA
Costanza, M
Weniger, MA
Akalin, A
Anagnostopoulos, I
Bukur, T
Casarotto, MG
Damm, F
Daumke, O
Edginton-White, B
Gebhardt, JCM
Grau, M
Grunwald, S
Hansmann, M-L
Hartmann, S
Huber, L
Kärgel, E
Lusatis, S
Noerenberg, D
Obier, N
Pannicke, U
Fischer, A
Reisser, A
Rosenwald, A
Schwarz, K
Sundararaj, S
Weilemann, A
Winkler, W
Xu, W
Lenz, G
Rajewsky, K
Wasserman, WW
Cockerill, PN
Scheidereit, C
Siebert, R
Küppers, R
Grosschedl, R
Janz, M
Bonifer, C
Mathas, S
Publication Year :
2023

Abstract

Disease-causing mutations in genes encoding transcription factors (TFs) can affect TF interactions with their cognate DNA-binding motifs. Whether and how TF mutations impact upon the binding to TF composite elements (CE) and the interaction with other TFs is unclear. Here, we report a distinct mechanism of TF alteration in human lymphomas with perturbed B cell identity, in particular classic Hodgkin lymphoma. It is caused by a recurrent somatic missense mutation c.295 T > C (p.Cys99Arg; p.C99R) targeting the center of the DNA-binding domain of Interferon Regulatory Factor 4 (IRF4), a key TF in immune cells. IRF4-C99R fundamentally alters IRF4 DNA-binding, with loss-of-binding to canonical IRF motifs and neomorphic gain-of-binding to canonical and non-canonical IRF CEs. IRF4-C99R thoroughly modifies IRF4 function by blocking IRF4-dependent plasma cell induction, and up-regulates disease-specific genes in a non-canonical Activator Protein-1 (AP-1)-IRF-CE (AICE)-dependent manner. Our data explain how a single mutation causes a complex switch of TF specificity and gene regulation and open the perspective to specifically block the neomorphic DNA-binding activities of a mutant TF.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1426983392
Document Type :
Electronic Resource