SETBP1 is dispensable for normal and malignant hematopoiesis

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作者
Atsushi Tanaka
Koutarou Nishimura
Wataru Saika
Ayana Kon
Yui Koike
Hiromi Tatsumi
June Takeda
Masaki Nomura
Weijia Zang
Manabu Nakayama
Masashi Matsuda
Hiromi Yamazaki
Miki Fukumoto
Hiromi Ito
Yasutaka Hayashi
Toshio Kitamura
Hiroshi Kawamoto
Akifumi Takaori-Kondo
Haruhiko Koseki
Seishi Ogawa
Daichi Inoue
机构
[1] Foundation for Biomedical Research and Innovation at Kobe,Department of Hematology
[2] Kyoto University,Oncology, Institute of Biomedical Research and Innovation
[3] Kyoto University,Laboratory of Immunology, Institute for Life and Medical Sciences
[4] Shiga University of Medical Science,Department of Hematology and Oncology, Graduate School of Medicine
[5] Kyoto University,Department of Hematology
[6] RIKEN Center for Integrative Medical Sciences,Department of Pathology and Tumor Biology, Graduate School of Medicine
[7] Facility for iPS Cell Therapy,Laboratory of Medical Omics Research, Department of Frontier Research and Development
[8] CiRA Foundation,Institute for the Advanced Study of Human Biology (WPI
[9] Kazusa DNA Research Institute,ASHBi)
[10] Kyoto University,Department of Medicine, Center for Hematology and Regenerative Medicine
[11] Karolinska Institute,undefined
来源
Leukemia | 2023年 / 37卷
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摘要
SETBP1 is a potential epigenetic regulator whose hotspot mutations preventing proteasomal degradation are recurrently detected in myeloid malignancies with poor prognosis. It is believed that the mutant SETBP1 exerts amplified effects of wild-type SETBP1 rather than neomorphic functions. This indicates that dysregulated quantitative control of SETBP1 would result in the transformation of hematopoietic cells. However, little is known about the roles of endogenous SETBP1 in malignant and normal hematopoiesis. Thus, we integrated the analyses of primary AML and healthy samples, cancer cell lines, and a newly generated murine model, Vav1-iCre;Setbp1fl/fl. Despite the expression in long-term hematopoietic stem cells, SETBP1 depletion in normal hematopoiesis minimally alters self-renewal, differentiation, or reconstitution in vivo. Indeed, its loss does not profoundly alter transcription or chromatin accessibilities. Furthermore, although AML with high SETBP1 mRNA is associated with genetic and clinical characteristics for dismal outcomes, SETBP1 is dispensable for the development or maintenance of AML. Contrary to the evidence that SETBP1 mutations are restricted to myeloid malignancies, dependency on SETBP1 mRNA expression is not observed in AML. These unexpected results shed light on the unrecognized idea that a physiologically nonessential gene can act as an oncogene when the machinery of protein degradation is damaged.
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页码:1802 / 1811
页数:9
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