Phenotypic characterization of disease-initiating stem cells in JAK2- or CALR-mutated myeloproliferative neoplasms

被引:4
|
作者
Ivanov, Daniel [1 ,2 ]
Milosevic Feenstra, Jelena D. [2 ]
Sadovnik, Irina [1 ,2 ]
Herrmann, Harald [2 ,3 ]
Peter, Barbara [1 ,2 ]
Willmann, Michael [2 ,4 ]
Greiner, Georg [2 ,5 ,6 ]
Slavnitsch, Katharina [2 ,7 ]
Hadzijusufovic, Emir [2 ,4 ]
Ruelicke, Thomas [2 ,8 ]
Dahlhoff, Maik [2 ,7 ]
Hoermann, Gregor [2 ,9 ]
Machherndl-Spandl, Sigrid [10 ,11 ]
Eisenwort, Gregor [1 ,2 ,12 ,13 ]
Fillitz, Michael [12 ,13 ]
Sliwa, Thamer [12 ,13 ]
Krauth, Maria-Theresa [1 ,2 ,12 ]
Bettelheim, Peter [10 ]
Sperr, Wolfgang R. [1 ,2 ]
Koller, Elisabeth [12 ,13 ]
Pfeilstoecker, Michael [2 ,12 ,13 ]
Gisslinger, Heinz [1 ]
Keil, Felix [2 ,12 ,13 ]
Kralovics, Robert [5 ]
Valent, Peter [1 ,2 ]
机构
[1] Med Univ Vienna, Dept Internal Med 1, Div Hematol & Hemostaseol, Vienna, Austria
[2] Med Univ Vienna, Ludwig Boltzmann Inst Hematol & Oncol, Vienna, Austria
[3] Med Univ Vienna, Dept Radiat Oncol, Vienna, Austria
[4] Univ Vet Med Vienna, Dept Compan Anim, Clin Unit Internal Med, Vienna, Austria
[5] Med Univ Vienna, Dept Lab Med, Vienna, Austria
[6] Med Diagnost Labs, Ihr Lab, Vienna, Austria
[7] Univ Vet Med Vienna, Inst Vivo & Vitro Models, Vienna, Austria
[8] Univ Vet Med Vienna, Dept Biomed Sci, Vienna, Austria
[9] MLL Munich Leukemia Lab, Munich, Germany
[10] Hosp Ordensklinikum Elisabethinen Linz, Linz, Austria
[11] Johannes Kepler Univ Linz, Fac Med, Linz, Austria
[12] Hanusch Hosp Vienna, Med Dept Hematol & Oncol 3, Vienna, Austria
[13] Hanusch Hosp Vienna, Med Dept Hematol & Oncol 3, Vienna, Austria
基金
奥地利科学基金会;
关键词
ACUTE MYELOID-LEUKEMIA; POLYCYTHEMIA-VERA; HEMATOPOIETIC STEM; PROGENITOR CELLS; MYELOFIBROSIS; TRANSPLANTATION; EXPRESSION; TARGET; MICE; DISCOVERIES;
D O I
10.1002/ajh.26889
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Myeloproliferative neoplasms (MPN) are characterized by uncontrolled expansion of myeloid cells, disease-related mutations in certain driver-genes including JAK2, CALR, and MPL, and a substantial risk to progress to secondary acute myeloid leukemia (sAML). Although behaving as stem cell neoplasms, little is known about disease-initiating stem cells in MPN. We established the phenotype of putative CD34(+)/CD38(-) stem cells and CD34(+)/CD38(+) progenitor cells in MPN. A total of 111 patients with MPN suffering from polycythemia vera, essential thrombocythemia, or primary myelofibrosis (PMF) were examined. In almost all patients tested, CD34(+)/CD38(-) stem cells expressed CD33, CD44, CD47, CD52, CD97, CD99, CD105, CD117, CD123, CD133, CD184, CD243, and CD274 (PD-L1). In patients with PMF, MPN stem cells often expressed CD25 and sometimes also CD26 in an aberrant manner. MPN stem cells did not exhibit substantial amounts of CD90, CD273 (PD-L2), CD279 (PD-1), CD366 (TIM-3), CD371 (CLL-1), or IL-1RAP. The phenotype of CD34(+)/CD38(-) stem cells did not change profoundly during progression to sAML. The disease-initiating capacity of putative MPN stem cells was confirmed in NSGS mice. Whereas CD34(+)/CD38(-) MPN cells engrafted in NSGS mice, no substantial engraftment was produced by CD34(+)/CD38(+) or CD34(-) cells. The JAK2-targeting drug fedratinib and the BRD4 degrader dBET6 induced apoptosis and suppressed proliferation in MPN stem cells. Together, MPN stem cells display a unique phenotype, including cytokine receptors, immune checkpoint molecules, and other clinically relevant target antigens. Phenotypic characterization of neoplastic stem cells in MPN and sAML should facilitate their enrichment and the development of stem cell-eradicating (curative) therapies.
引用
收藏
页码:770 / 783
页数:14
相关论文
共 40 条
  • [21] DECIPHERING THE IMPACT OF TYPE 1 INTERFERON IN HUMAN CALR- MUTATED AND WILDTYPE HEMATOPOIETIC STEM AND PROGENITOR CELLS IN MYELOPROLIFERATIVE NEOPLASMS VIA SINGLE-CELL MULTIOMICS
    Lama, Chhiring
    Chaligne, Ronan
    Chamely, Paulina
    Dueck, Amylou
    Dusaj, Neville
    Hoffman, Ronald
    Kosiorek, Heidi
    Kubas-Meyer, Andrea
    Landau, Dan
    Mimitou, Eleni
    Moein, Sara
    Nam, Anna
    Omans, Nathaniel
    Parghi, Neelang
    Rosenberg, Shira
    Weinberg, Rona Singer
    Smibert, Peter
    EXPERIMENTAL HEMATOLOGY, 2022, 111 : S104 - S104
  • [22] Reconstructing the Lineage Histories and Differentiation Trajectories of Individual Hematopoietic Stem Cells in JAK2-Mutant Myeloproliferative Neoplasms
    Van Egeren, Debra
    Escabi, Javier
    Nguyen, Maximilian
    Liu, Shichen
    Reilly, Christopher R.
    Patel, Sachin
    Kamaz, Baransel
    Kalyva, Maria
    DeAngelo, Daniel J.
    Galinsky, Ilene
    Wadleigh, Martha
    Winer, Eric S.
    Luskin, Marlise R.
    Stone, Richard M.
    Garcia, Jacqueline S.
    Hobbs, Gabriela S.
    Camargo, Fernando D.
    Michor, Franziska
    Mullally, Ann
    Cortes-Ciriano, Isidro
    Hormoz, Sahand
    BLOOD, 2020, 136
  • [23] Interrogating the Role of ASXL1 and JAK2 mutations in Myeloproliferative Neoplasms Utilizing Human Pluripotent Stem Cells
    Collins, Taylor B.
    Luff, Stephanie A.
    Batista, Luis F. Z.
    Sturgeon, Christopher M.
    Oh, Stephen T.
    BLOOD, 2019, 134
  • [24] Clinicopathological differences exist between CALR- and JAK2-mutated myeloproliferative neoplasms despite a similar molecular landscape: data from targeted next-generation sequencing in the diagnostic laboratory
    Rishu Agarwal
    Piers Blombery
    Michelle McBean
    Kate Jones
    Andrew Fellowes
    Ken Doig
    Cecily Forsyth
    David A. Westerman
    Annals of Hematology, 2017, 96 : 725 - 732
  • [25] Clinicopathological differences exist between CALR- and JAK2-mutated myeloproliferative neoplasms despite a similar molecular landscape: data from targeted next-generation sequencing in the diagnostic laboratory
    Agarwal, Rishu
    Blombery, Piers
    McBean, Michelle
    Jones, Kate
    Fellowes, Andrew
    Doig, Ken
    Forsyth, Cecily
    Westerman, David A.
    ANNALS OF HEMATOLOGY, 2017, 96 (05) : 725 - 732
  • [26] Absence of JAK2V617F Mutated Endothelial Colony-Forming Cells in Patients With JAK2V617F Myeloproliferative Neoplasms and Splanchnic Vein Thrombosis
    Guy, Alexandre
    Danaee, Anicee
    Paschalaki, Koralia
    Boureau, Lisa
    Riviere, Etienne
    Etienne, Gabriel
    Mansier, Olivier
    Laffan, Michael
    Sekhar, Mallika
    James, Chloe
    HEMASPHERE, 2020, 4 (03):
  • [27] TERT rs2736100 A>C SNP and JAK2 46/1 haplotype significantly contribute to the occurrence of JAK2 V617F and CALR mutated myeloproliferative neoplasms - a multicentric study on 529 patients
    Trifa, Adrian P.
    Banescu, Claudia
    Tevet, Mihaela
    Bojan, Anca
    Dima, Delia
    Urian, Laura
    Torok-Vistai, Tunde
    Popov, Viola M.
    Zdrenghea, Mihnea
    Petrov, Ljubomir
    Vasilache, Anca
    Murat, Meilin
    Georgescu, Daniela
    Popescu, Mihaela
    Patrinoiu, Oana
    Balea, Marius
    Costache, Roxana
    Coles, Elena
    Saguna, Carmen
    Berbec, Nicoleta
    Vladareanu, Ana-Maria
    Mihaila, Romeo G.
    Bumbea, Horia
    Cucuianu, Andrei
    Popp, Radu A.
    BRITISH JOURNAL OF HAEMATOLOGY, 2016, 174 (02) : 218 - 226
  • [28] Analysis of Jak2 signaling reveals resistance of mouse embryonic hematopoietic stem cells to myeloproliferative disease mutation
    Mascarenhas, Maria I.
    Bacon, Wendi A.
    Kapeni, Chrysa
    Fitch, Simon R.
    Kimber, Gillian
    Cheng, S. W. Priscilla
    Li, Juan
    Green, Anthony R.
    Ottersbach, Katrin
    BLOOD, 2016, 127 (19) : 2298 - 2309
  • [29] Modeling JAK2V617F Heterozygous and Homozygous Mutations by Using Induced Pluripotent Stem Cells Derived From Myeloproliferative Neoplasms Patients
    Saliba, Joseph
    Hamidi, Sofiane
    Di Stefano, Antonio
    Langlois, Thierry
    Lenglet, Gaelle
    Secardin, Lise
    Galy, Anne
    Opolon, Paule
    Debili, Najet
    Raslova, Hana
    Norol, Francoise
    Plo, Isabelle
    Vainchenker, William
    BLOOD, 2012, 120 (21)
  • [30] Gene expression profiling of loss of TET2 and/or JAK2V617F mutant hematopoietic stem cells from mouse models of myeloproliferative neoplasms
    Kameda, Takuro
    Shide, Kotaro
    Yamaji, Takumi
    Kamiunten, Ayako
    Sekine, Masaaki
    Hidaka, Tomonori
    Kubuki, Yoko
    Sashida, Goro
    Aoyama, Kazumasa
    Yoshimitsuc, Makoto
    Abe, Hiroo
    Miike, Tadashi
    Iwakiri, Hisayoshi
    Tahara, Yoshihiro
    Yamamoto, Shojiro
    Hasuike, Satoru
    Nagata, Kenji
    Iwama, Atsushi
    Kitanaka, Akira
    Shimoda, Kazuya
    GENOMICS DATA, 2015, 4 : 102 - 108