Nuclear interacting SET domain protein 1 inactivation impairs GATA1-regulated erythroid differentiation and causes erythroleukemia

Author:

Leonards KatharinaORCID,Almosailleakh MarwaORCID,Tauchmann Samantha,Bagger Frederik Otzen,Thirant CécileORCID,Juge Sabine,Bock ThomasORCID,Méreau Hélène,Bezerra Matheus F.ORCID,Tzankov AlexandarORCID,Ivanek RobertORCID,Losson Régine,Peters Antoine H. F. M.,Mercher Thomas,Schwaller JuergORCID

Abstract

AbstractThe nuclear receptor binding SET domain protein 1 (NSD1) is recurrently mutated in human cancers including acute leukemia. We show that NSD1 knockdown alters erythroid clonogenic growth of human CD34+ hematopoietic cells. Ablation of Nsd1 in the hematopoietic system of mice induces a transplantable erythroleukemia. In vitro differentiation of Nsd1−/− erythroblasts is majorly impaired despite abundant expression of GATA1, the transcriptional master regulator of erythropoiesis, and associated with an impaired activation of GATA1-induced targets. Retroviral expression of wildtype NSD1, but not a catalytically-inactive NSD1N1918Q SET-domain mutant induces terminal maturation of Nsd1−/− erythroblasts. Despite similar GATA1 protein levels, exogenous NSD1 but not NSDN1918Q significantly increases the occupancy of GATA1 at target genes and their expression. Notably, exogenous NSD1 reduces the association of GATA1 with the co-repressor SKI, and knockdown of SKI induces differentiation of Nsd1−/− erythroblasts. Collectively, we identify the NSD1 methyltransferase as a regulator of GATA1-controlled erythroid differentiation and leukemogenesis.

Funder

Wilhelm Sander-Stiftung

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Gertrude von Meissner-Stiftung (Gertrude von Meissner Foundation) Novartis Stiftung für Medizinisch-Biologische Forschung

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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