Synergistic effects on erythropoiesis, thrombopoiesis, and stem cell competitiveness in mice deficient in thrombopoietin and steel factor receptors

被引:20
作者
Antonchuk, J [1 ]
Hyland, CD [1 ]
Hilton, DJ [1 ]
Alexander, WS [1 ]
机构
[1] Walter & Eliza Hall Inst Med Res, Canc Haematol Div, Parkville, Vic, Australia
关键词
D O I
10.1182/blood-2004-04-1522
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The degree of redundancy between thrombopoietin (Tpo) and steel factor (SF) cytokine pathways in the regulation of hematopolesis was investigated by generating mice lacking both c-MpI and fully functional c-Kit receptors. Double-mutant c-MpI(-/-)Kit(Wv/Wv) mice exhibited reduced viability, making up only 2% of the offspring from c-MpI(-/-)Kit(Wv/+) intercrosses. The thrombocytopenia and megakaryocytopenia characteristic of c-MpI(-/-) mice was unchanged in c-MpI(-/-)Kit(Wv/Wv) mice. However, the number of megakaryocytic colony forming units (CFU-Mks) was significantly reduced, particularly in the spleen. While Kit(Wv/Wv) mice, but not c-MpI(-/-) mice, are anemic, the anemia was more severe in double-mutant c-MpI(-/-)Kit(Wv/Wv) mice, indicating redundancy between Tpo and SF in erythropoiesis. At the primitive cell level, c-MpI(-/-) and Kit(Wv/Wv) mice have similar phenotypes, including reduced progenitors, colony forming units-spleen (CFU-Ss), and repopulating activities. All of these parameters were exacerbated in double-mutant mice. c-MpI(-/-)Kit(Wv/Wv) mice had 8-fold fewer clonogenic progenitor cells and at least 28-fold fewer CFU-Ss. c-MpI(-/-)mice also demonstrated a reduced threshold requirement for nonmyeloalblative transplant repopulation, a trait previously associated only with Kit(W) mice, and the level of nonmyeloablative engraftment was significantly greater in c-MpI(-/-)Kit(Wv/Wv) double mutants. Thus, c-MpI(-/-)Kit(Wv/Wv) mice reveal nonreduridant and synergistic effects of Tpo and SF on primitive hematopoietic cells. (C) 2004 by The American Society of Hematology.
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收藏
页码:1306 / 1313
页数:8
相关论文
共 52 条
[1]   A clonogenic common myeloid progenitor that gives rise to all myeloid lineages [J].
Akashi, K ;
Traver, D ;
Miyamoto, T ;
Weissman, IL .
NATURE, 2000, 404 (6774) :193-197
[2]   Deficiencies in progenitor cells of multiple hematopoietic lineages and defective megakaryocytopoiesis in mice lacking the thrombopoietin receptor c-mpl [J].
Alexander, WS ;
Roberts, AW ;
Nicola, NA ;
Li, RL ;
Metcalf, D .
BLOOD, 1996, 87 (06) :2162-2170
[3]   ERYTHROCYTE REPLACEMENT PRECEDES LEUKOCYTE REPLACEMENT DURING REPOPULATION OF W/W-NU MICE WITH LIMITING DILUTIONS OF +/+ DONOR MARROW-CELLS [J].
BARKER, JE ;
BRAUN, J ;
MCFARLANDSTARR, EC .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1988, 85 (19) :7332-7335
[4]  
BENESTAD HB, 1975, SCAND J HAEMATOL, V15, P219
[5]   Ability of early acting cytokines to directly promote survival and suppress apoptosis of human primitive CD34(+)CD38(-) bone marrow cells with multilineage potential at the single-cell level: Key role of thrombopoietin [J].
Borge, OJ ;
Ramsfjell, V ;
Cui, L ;
Jacobsen, SEW .
BLOOD, 1997, 90 (06) :2282-2292
[6]   Stem cell factor and hematopoiesis [J].
Broudy, VC .
BLOOD, 1997, 90 (04) :1345-1364
[7]   Interleukin-3 supports expansion of long-term multilineage repopulating activity after multiple stem cell divisions in vitro [J].
Bryder, D ;
Jacobsen, SEW .
BLOOD, 2000, 96 (05) :1748-1755
[8]  
CarverMoore K, 1996, BLOOD, V88, P803
[9]   SOCS3 is a critical physiological negative regulator of G-CSF signaling and emergency granulopoiesis [J].
Croker, BA ;
Metcalf, D ;
Robb, L ;
Wei, W ;
Mifsud, S ;
DiRago, L ;
Cluse, LA ;
Sutherland, KD ;
Hartley, L ;
Williams, E ;
Zhang, JG ;
Hilton, DJ ;
Nicola, NA ;
Alexander, WS ;
Roberts, AW .
IMMUNITY, 2004, 20 (02) :153-165
[10]   Physiological regulation of early and late stages of megakaryocytopoiesis by thrombopoietin [J].
deSauvage, FJ ;
CarverMoore, K ;
Luoh, SM ;
Ryan, A ;
Dowd, M ;
Eaton, DL ;
Moore, MW .
JOURNAL OF EXPERIMENTAL MEDICINE, 1996, 183 (02) :651-656