Acute myeloid leukemias with UBTF tandem duplications are sensitive to Menin inhibitors

Author:

Barajas Juan Martin1ORCID,Rasouli Milad2,Umeda Masayuki2,Hiltenbrand Ryan Lea1ORCID,Abdelhamed Sherif3,Mohnani Rebecca4,Arthur Bright5,Westover Tamara3ORCID,Thomas Melvin E.1,Ashtiani Minoo4ORCID,Janke Laura J1,Xu Beisi6ORCID,Chang Ti-Cheng1,Rosikiewicz Wojciech1ORCID,Xiong Emily1ORCID,Rolle Chandra3,Low Jonathan1,Krishnan Reethu1ORCID,Song Guangchun3ORCID,Walsh Michael P.7,Ma Jing J.3,Rubnitz Jeffrey E.1ORCID,Iacobucci Ilaria1,Chen Taosheng1ORCID,Krippner-Heidenreich Anja8ORCID,Zwaan Christian Michel2,Heidenreich Olaf2ORCID,Klco Jeffery M3

Affiliation:

1. St. Jude Children's Research Hospital, Memphis, Tennessee, United States

2. Erasmus MC-Sophia Children's Hospital, Netherlands

3. St Jude Children's Research Hospital, Memphis, Tennessee, United States

4. Princess Maxima Centrum for Pediatric Oncology, Utrecht, Netherlands

5. St Jude children's hospital, Memphis, Tennessee, United States

6. St. Jude Children Research Hospital, Memphis, Tennessee, United States

7. St. Jude Children's Research Hospital

8. Princes Maxima Centrum voor Kinderoncologie, Utrecht, Netherlands

Abstract

UBTF tandem duplications (UBTF-TDs) have recently emerged as a recurrent alteration in pediatric and adult acute myeloid leukemia (AML). UBTF-TD leukemias are characterized by a poor response to conventional chemotherapy and a transcriptional signature that mirrors NUP98-rearranged and NPM1-mutant AMLs, including HOX gene dysregulation. However, the mechanism of how UBTF-TD drives leukemogenesis remains unknown. In this study, we investigated the genomic occupancy of UBTF-TD in transformed cord-blood CD34+ (cbCD34+) cells and patient-derived xenograft models. We found that UBTF-TD protein maintained genomic occupancy at ribosomal DNA (rDNA) loci while also occupying genomic targets commonly dysregulated in UBTF-TD myeloid malignancies, such as the HOXA/HOXB gene clusters and MEIS1. These data suggest that UBTF-TD is a gain-of-function alteration that results in mislocalization to genomic loci dysregulated in UBTF-TD leukemias. UBTF-TD also co-occupies key genomic loci with KMT2A and Menin, which are known to be key partners involved in HOX-dysregulated leukemias. Using a protein degradation system, we showed that stemness, proliferation, and transcriptional signatures are dependent on sustained UBTF-TD localization to chromatin. Finally, we demonstrate that primary cells from UBTF-TD leukemias are sensitive to the Menin inhibitor SNDX-5613, resulting in markedly reduced in vitro and in vivo tumor growth, myeloid differentiation, and abrogation of the UBTF-TD leukemic expression signature. These findings provide a viable therapeutic strategy for patients with this high-risk AML subtype.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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