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Frequent ZNF217 mutations lead to transcriptional deregulation of interferon signal transduction via altered chromatin accessibility in B cell lymphoma

Recent exome-wide studies discovered frequent somatic mutations in the epigenetic modifier ZNF217 in primary mediastinal B cell lymphoma (PMBCL) and related disorders. As functional consequences of ZNF217 alterations remain unknown, we comprehensively evaluated their impact in PMBCL. Targeted sequen...

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Detalles Bibliográficos
Autores principales: Briest, Franziska, Noerenberg, Daniel, Hennch, Cornelius, Yoshida, Kenichi, Hablesreiter, Raphael, Nimo, Jose, Sasca, Daniel, Kirchner, Marieluise, Mansouri, Larry, Inoue, Yoshikage, Wiegand, Laura, Staiger, Annette M., Casadei, Beatrice, Korkolopoulou, Penelope, Weiner, January, Lopez-Guillermo, Armando, Warth, Arne, Schneider, Tamás, Nagy, Ákos, Klapper, Wolfram, Hummel, Michael, Kanellis, George, Anagnostopoulos, Ioannis, Mertins, Philipp, Bullinger, Lars, Rosenquist, Richard, Vassilakopoulos, Theodoros P., Ott, German, Ogawa, Seishi, Damm, Frederik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10624633/
https://www.ncbi.nlm.nih.gov/pubmed/37648814
http://dx.doi.org/10.1038/s41375-023-02013-9
Descripción
Sumario:Recent exome-wide studies discovered frequent somatic mutations in the epigenetic modifier ZNF217 in primary mediastinal B cell lymphoma (PMBCL) and related disorders. As functional consequences of ZNF217 alterations remain unknown, we comprehensively evaluated their impact in PMBCL. Targeted sequencing identified genetic lesions affecting ZNF217 in 33% of 157 PMBCL patients. Subsequent gene expression profiling (n = 120) revealed changes in cytokine and interferon signal transduction in ZNF217-aberrant PMBCL cases. In vitro, knockout of ZNF217 led to changes in chromatin accessibility interfering with binding motifs for crucial lymphoma-associated transcription factors. This led to disturbed expression of interferon-responsive and inflammation-associated genes, altered cell behavior, and aberrant differentiation. Mass spectrometry demonstrates that ZNF217 acts within a histone modifier complex containing LSD1, CoREST and HDAC and interferes with H3K4 methylation and H3K27 acetylation. Concluding, our data suggest non-catalytic activity of ZNF217, which directs histone modifier complex function and controls B cell differentiation-associated patterns of chromatin structure. [Image: see text]