Knock-out of Hopx disrupts stemness and quiescence of hematopoietic stem cells in mice

被引:0
|
作者
Chien-Chin Lin
Chi-Yuan Yao
Yueh-Chwen Hsu
Hsin-An Hou
Chang-Tsu Yuan
Yi-Hung Li
Chein-Jun Kao
Po-Han Chuang
Yu-Chiao Chiu
Yidong Chen
Wen-Chien Chou
Hwei-Fang Tien
机构
[1] National Taiwan University Hospital,Department of Laboratory Medicine
[2] National Taiwan University Hospital,Division of Hematology, Department of Internal Medicine
[3] National Taiwan University,Graduate Institute of Clinical Medicine
[4] National Taiwan University,Department of Pathology, Graduate Institute of Oncology, College of Medicine
[5] Chinese Culture University,Department of Animal Science
[6] University of Texas Health Science Center at San Antonio,Greehey Children’s Cancer Research Institute
来源
Oncogene | 2020年 / 39卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
HOPX is a stem cell marker in hair follicles and intestines. It was shown critical for primitive hematopoiesis. We previously showed an association between higher HOPX expression and clinical characteristics related to stemness and quiescence of leukemic cells in acute myeloid leukemia (AML) patients. To further explore its physiologic functions in hematopoietic system, we generated a mouse model with hematopoietic cell-specific knockout of Hopx (Hopx−/−). In young Hopx−/− mice, the hematopoietic stem cells (HSC) showed decreased reconstitution ability after serial transplantation. Further transcriptomic study revealed decreased HSC signatures in long-term HSCs from the Hopx−/− mice. At 18 months of age, half of the Hopx−/− mice developed cytopenia and splenomegaly. Bone marrow (BM) from the sick mice showed myeloid hyperplasia with predominant mature neutrophils, and decreased progenitor cells and lymphocytes. These phenotypes suggested critical functions of Hopx in maintaining HSC quiescence. Transcriptomic study of the Hopx−/− marrow cells showed significant downregulation of the Cxcl12-Cxcr4 axis, which is critical for maintenance of HSC quiescence. We next examined the role of Hopx in AML by using the MN1 overexpression murine leukemia model. Mice transplanted with MN1-overexpressed Hopx−/− BM cells developed AML with more aggressive phenotypes compared with those transplanted with MN1-overexpressed Hopx-wild cells. Hopx−/−MN1-overexpressed leukemia cells showed higher proliferation rate and downregulation of Cxcl12 and Cxcr4. Furthermore, in human AML, BM plasma CXCL12 levels were lower in patients with lower HOPX expression. In conclusion, our study highlights the roles of Hopx in maintenance of quiescence of the hematopoietic stem cells through CXCL12 pathway in vivo and provides implication of this protein in normal and malignant hematopoiesis.
引用
收藏
页码:5112 / 5123
页数:11
相关论文
共 50 条
  • [41] Alterations of olfactory epithelium in stomatin knock-out mice
    Gonzalez-Velandia, Kevin Y.
    Pifferi, Simone
    Maurya, Devendra Kumar
    Wetzel, Christiane
    Begay, Valerie
    Lewin, Gary R.
    Anna, Menini
    CHEMICAL SENSES, 2019, 44 (03) : E33 - E33
  • [42] Dilated cardiomyopathy in cathepsin L "knock-out" mice
    Stypmann, J
    Petermann, I
    Gläser, K
    Mönnig, G
    Haverkamp, W
    Breithard, G
    Schmahl, W
    Peters, C
    Reinheckel, T
    CLINICAL AND EXPERIMENTAL PHARMACOLOGY AND PHYSIOLOGY, 2002, 29 (08) : A85 - A85
  • [43] Altered cardiovascular function in oxytocin knock-out mice
    Marcelo, M
    Amico, J
    Morris, M
    JOURNAL OF HYPERTENSION, 2000, 18 : S118 - S118
  • [44] Pancreatic islets of melatonin receptor knock-out mice
    Nagorny, C. L. F.
    Voss, U.
    Bennet, H.
    Stamenkovic, J. A.
    Sathanoori, R.
    Fex, M.
    Wierup, N.
    Mulder, H.
    DIABETOLOGIA, 2010, 53 : S127 - S127
  • [45] NOX expression in odontoblasts and cementoblasts of NOS knock-out mice
    Sugawara, Y.
    Watanabe, H.
    Yanagisawa, T.
    JOURNAL OF BONE AND MINERAL RESEARCH, 2007, 22 : S273 - S273
  • [46] A review of QTL and knock-out studies for emotionality in mice.
    de Groot, R
    Sluyter, F
    Lakenberg, N
    Slagboom, E
    Boomsma, D
    BEHAVIOR GENETICS, 2001, 31 (05) : 451 - 451
  • [47] Transgenic and knock-out mice for deciphering the roles of EGFR ligands
    R. W. C. Wong
    Cellular and Molecular Life Sciences CMLS, 2003, 60 : 113 - 118
  • [48] Behavioural and neurochemical profiling of prolyl oligopeptidase knock-out mice
    Rourke, C
    Deakin, HJ
    Storey, JD
    Di Daniel, E
    Dawson, LA
    Starr, KR
    JOURNAL OF PSYCHOPHARMACOLOGY, 2005, 19 (05) : A51 - A51
  • [49] Conditional Pten knock-out mice: a model for metastatic phaeochromocytoma
    Korpershoek, Esther
    Loonen, Anne J. M.
    Corvers, Suzanne
    van Nederveen, Francien H.
    Jonkers, Jos
    Ma, Xiaoqian
    Ziel-van der Made, Angelique
    Korsten, Hanneke
    Trapman, Jan
    Dinjens, Winand N. M.
    de Krijger, Ronald R.
    JOURNAL OF PATHOLOGY, 2009, 217 (04): : 597 - 604
  • [50] PrP knock-out and PrP transgenic mice in prion research
    Weissmann, C
    Flechsig, E
    BRITISH MEDICAL BULLETIN, 2003, 66 : 43 - +