Collaborative effect of Csnk1a1 haploinsufficiency and mutant p53 in Myc induction can promote leukemic transformation

Author:

Fuchs Stijn N. R.12,Stalmann Ursula S. A.12,Snoeren Inge A. M.12,Bindels Eric3,Schmitz Stephani12ORCID,Banjanin Bella12,Hoogenboezem Remco M.3,van Herk Stanley3,Saad Mohamed4,Walter Wencke5ORCID,Haferlach Torsten5,Seillier Lancelot67,Saez-Rodriguez Julio8ORCID,Dugourd Aurélien J. F.8ORCID,Lehmann Kjong-Van67ORCID,Ben-Neriah Yinon9ORCID,Gleitz Hélène F. E.12ORCID,Schneider Rebekka K.124ORCID

Affiliation:

1. 1Department of Developmental Biology, Erasmus Medical Center, Rotterdam, the Netherlands

2. 2Oncode Institute, Erasmus Medical Center Cancer Institute, Rotterdam, the Netherlands

3. 3Department of Hematology, Erasmus Medical Center Cancer Institute, Rotterdam, the Netherlands

4. 4Department of Cell and Tumor Biology, Faculty of Medicine, Rheinisch-Westfälische Technische Hochschule Aachen University, Aachen, Germany

5. 5MLL Munich Leukemia Laboratory, Munich, Germany

6. 6Cancer Research Center Cologne Essen, University Hospital Cologne, Cologne, Germany

7. 7Joint Research Center for Computational Biomedicine, University Hospital Rheinisch-Westfälische Technische Hochschule Aachen, Aachen, Germany

8. 9Heidelberg University, Faculty of Medicine, and Heidelberg University Hospital, Institute for Computational Biomedicine, Bioquant, Heidelberg, Germany

9. 8The Lautenberg Center for Immunology and Cancer Research, Institute of Medical Research Israel-Canada, Hebrew University-Hadassah Medical School, Jerusalem, Israel

Abstract

Abstract It is still not fully understood how genetic haploinsufficiency in del(5q) myelodysplastic syndrome (MDS) contributes to malignant transformation of hematopoietic stem cells. We asked how compound haploinsufficiency for Csnk1a1 and Egr1 in the common deleted region on chromosome 5 affects hematopoietic stem cells. Additionally, Trp53 was disrupted as the most frequently comutated gene in del(5q) MDS using CRISPR/Cas9 editing in hematopoietic progenitors of wild-type (WT), Csnk1a1–/+, Egr1–/+, Csnk1a1/Egr1–/+ mice. A transplantable acute leukemia only developed in the Csnk1a1–/+Trp53–edited recipient. Isolated blasts were indefinitely cultured ex vivo and gave rise to leukemia after transplantation, providing a tool to study disease mechanisms or perform drug screenings. In a small-scale drug screening, the collaborative effect of Csnk1a1 haploinsufficiency and Trp53 sensitized blasts to the CSNK1 inhibitor A51 relative to WT or Csnk1a1 haploinsufficient cells. In vivo, A51 treatment significantly reduced blast counts in Csnk1a1 haploinsufficient/Trp53 acute leukemias and restored hematopoiesis in the bone marrow. Transcriptomics on blasts and their normal counterparts showed that the derived leukemia was driven by MAPK and Myc upregulation downstream of Csnk1a1 haploinsufficiency cooperating with a downregulated p53 axis. A collaborative effect of Csnk1a1 haploinsufficiency and p53 loss on MAPK and Myc upregulation was confirmed on the protein level. Downregulation of Myc protein expression correlated with efficient elimination of blasts in A51 treatment. The “Myc signature” closely resembled the transcriptional profile of patients with del(5q) MDS with TP53 mutation.

Publisher

American Society of Hematology

Subject

Hematology

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