Loss of Dnmt3b accelerates MLL-AF9 leukemia progression

被引:0
|
作者
Y Zheng
H Zhang
Y Wang
X Li
P Lu
F Dong
Y Pang
S Ma
H Cheng
S Hao
F Tang
W Yuan
X Zhang
T Cheng
机构
[1] State Key Laboratory of Experimental Hematology,Department of Medicine
[2] Institute of Hematology and Blood Diseases Hospital,Department of Stem Cell and Regenerative Medicine
[3] Chinese Academy of Medical Sciences and Peking Union Medical College,undefined
[4] Loma Linda University,undefined
[5] Biodynamic Optical Imaging Center,undefined
[6] College of Life Sciences,undefined
[7] Peking University,undefined
[8] Ministry of Education Key Laboratory of Cell Proliferation and Differentiation,undefined
[9] Peking University,undefined
[10] Peking Union Medical College,undefined
[11] Center for Stem Cell Medicine,undefined
[12] Chinese Academy of Medical Sciences,undefined
[13] Collaborative Innovation Center for Cancer Medicine,undefined
来源
Leukemia | 2016年 / 30卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Acute myeloid leukemia (AML) is a heterogeneous hematopoietic disorder with a poor prognosis. Abnormal DNA methylation is involved in the initiation and progression of AML. The de novo methyltransferases Dnmt3a and Dnmt3b are responsible for the generation of genomic methylation patterns. While DNMT3A is frequently mutated in hematological malignancies, DNMT3B is rarely mutated. Although it has been previously reported that Dnmt3b functions as a tumor suppressor in a mouse model of Myc-induced lymphomagenesis, its function in AML is yet to be determined. In this study, we demonstrated that deletion of Dnmt3b accelerated the progression of MLL-AF9 leukemia by increasing stemness and enhancing cell cycle progression. Gene profiling analysis revealed upregulation of the oncogenic gene set and downregulation of the cell differentiation gene set. Furthermore, loss of Dnmt3b was able to synergize with Dnmt3a deficiency in leukemia development. Taken together, these results demonstrate that Dnmt3b plays a tumor suppressive role in MLL-AF9 AML progression, thereby providing new insights into the roles of DNA methylation in leukemia development.
引用
收藏
页码:2373 / 2384
页数:11
相关论文
共 50 条
  • [31] A CASE OF MLL-AF9 REARRANGED ACUTE MONOCYTIC LEUKEMIA WITH MARKED BILATERAL NEPHROMEGALY
    Mitani, Kazuki
    Fujino, Hisanori
    Okada, Hidenori
    Shiraishi, Kei
    Harada, Taro
    Obu, Satoshi
    Nomura, Anryu
    Sumimoto, Shinichi
    PEDIATRIC BLOOD & CANCER, 2022, 69
  • [32] Structure of the MLL CXXC domain-DNA complex and its functional role in MLL-AF9 leukemia
    Cierpicki, Tomasz
    Risner, Laurie E.
    Grembecka, Jolanta
    Lukasik, Stephen M.
    Popovic, Relja
    Omonkowska, Monika
    Shultis, David D.
    Zeleznik-Le, Nancy J.
    Bushweller, John H.
    NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2010, 17 (01) : 62 - U82
  • [33] Distinct roles of hematopoietic cytokines in the regulation of leukemia stem cells in murine MLL-AF9 leukemia
    Li, Yanchun
    Seet, Christopher S.
    Mack, Ryan
    Joshi, Kanak
    Runde, Austin P.
    Hagen, Patrick A.
    Barton, Kevin
    Breslin, Peter
    Kini, Ameet
    Ji, Hong-Long
    Zhang, Jiwang
    STEM CELL REPORTS, 2024, 19 (01): : 100 - 111
  • [34] Loss of Dnmt3b function upregulates the tumor modifier Ment and accelerates mouse lymphomagenesis
    Hlady, Ryan A.
    Novakova, Slavomira
    Opavska, Jana
    Klinkebiel, David
    Peters, Staci L.
    Bies, Juraj
    Hannah, Jay
    Iqbal, Javeed
    Anderson, Kristi M.
    Siebler, Hollie M.
    Smith, Lynette M.
    Greiner, Timothy C.
    Bastola, Dhundy
    Joshi, Shantaram
    Lockridge, Oksana
    Simpson, Melanie A.
    Felsher, Dean W.
    Wagner, Kay-Uwe
    Chan, Wing C.
    Christman, Judith K.
    Opavsky, Rene
    JOURNAL OF CLINICAL INVESTIGATION, 2012, 122 (01): : 163 - 177
  • [35] MLL-AF9 and MLL-ENL alter the dynamic association of transcriptional regulators with genes critical for leukemia
    Monroe, Sara C.
    Jo, Stephanie Y.
    Sanders, Daniel S.
    Basrur, Venkatesha
    Elenitoba-Johnson, Kojo S.
    Slany, Robert K.
    Hess, Jay L.
    EXPERIMENTAL HEMATOLOGY, 2011, 39 (01) : 77 - 86
  • [36] CRISPR Gene Editing of Murine Blood Stem and Progenitor Cells Induces MLL-AF9 Chromosomal Translocation and MLL-AF9 Leukaemogenesis
    Sarrou, Evgenia
    Richmond, Laura
    Carmody, Ruaidhri J.
    Gibson, Brenda
    Keeshan, Karen
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2020, 21 (12) : 1 - 15
  • [37] P2X7 promotes the progression of MLL-AF9 induced acute myeloid leukemia by upregulation of Pbx3
    Feng, Wenli
    Yang, Xiao
    Wang, Lina
    Wang, Rong
    Yang, Feifei
    Wang, Hao
    Liu, Xiaoli
    Ren, Qian
    Zhang, Yingchi
    Zhu, Xiaofan
    Zheng, Guoguang
    HAEMATOLOGICA, 2021, 106 (05) : 1278 - 1289
  • [38] THREE CASES OF CHILDHOOD MATURE B-ACUTE LYMPHOBLASTIC LEUKEMIA WITH NON-L3 MORPHOLOGY AND MLL-AF9
    Sarashina, T.
    Goto, H.
    Miyagawa, N.
    Yokosuka, T.
    Fukuda, K.
    Iwasaki, F.
    Hamanoue, S.
    Iwabuchi, H.
    Takachi, T.
    Saito, A.
    Imai, C.
    PEDIATRIC BLOOD & CANCER, 2014, 61 : S265 - S266
  • [39] Direct Binding of BCOR, but Not CBX8, to MLL-AF9 Is Essential for MLL-AF9 Leukemia Via Regulation of the EYA1/SIX1 Gene Network
    Bushweller, John H.
    Schmidt, Charles
    Achille, Nicholas
    Kuntimaddi, Aravinda
    Boulton, Adam
    Leach, Benjamin
    Zhang, Shubin
    Zeleznik-Le, Nancy J.
    BLOOD, 2018, 132
  • [40] Establishing Human Niche Xenograft Models for Myeloid and Lymphoid Leukemia Driven By MLL-AF9
    Carretta, Marco
    Jaques, Jennifer
    de Boer, Bauke
    Yuan, Huipin
    Martens, Anton C.
    Vellenga, Edo
    Groen, Richard W. J.
    Schuringa, Jan Jacob
    BLOOD, 2014, 124 (21)