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FLT3-mediated p38-MAPK activation participates in the control of megakaryopoiesis in primary myelofibrosis (CROSBI ID 176795)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Desterke, C. ; Bilhou-Nabera, C. ; Guerton, B. ; Martinaud, C. ; Tonetti, C. ; Clay, D. ; Guglielmelli, P. ; Vannucchi, A. ; Bordessoule, D. ; Hasselbalch, H. et al. FLT3-mediated p38-MAPK activation participates in the control of megakaryopoiesis in primary myelofibrosis // Cancer research (Baltimore), 71 (2011), 8; 2901-2915. doi: 10.1158/0008-5472.CAN-10-1731

Podaci o odgovornosti

Desterke, C. ; Bilhou-Nabera, C. ; Guerton, B. ; Martinaud, C. ; Tonetti, C. ; Clay, D. ; Guglielmelli, P. ; Vannucchi, A. ; Bordessoule, D. ; Hasselbalch, H. ; Dupriez, B. ; Benzoubir, N. ; Bourgeade, M.F. ; Pierre-Louis, O. ; Lazar, V. ; Vainchenker, W. ; Bennaceur-Griscelli, A. ; Gisslinger, H. ; Giraudier, S. ; Le Bousse-Kerdiles, M.C. ; Bourhis, J.H. ; de Botton, S. ; Briere, J. ; Demory, J.L. ; Fenaux, P. ; Kiladjian, J.J. ; Pasquet, J.M. ; Lippert, E. ; Praloran, V. ; Morel, P. ; Rey, J. ; Roy, L. ; Viallard, J.F. ; Barosi, G. ; Cervantes, F. ; Griesshammer, M. ; , Kreipe, H. ; Kvasnicka, H.M. ; Kušec, Rajko ; Marchetti, M. ; Merup, M. ; Pahl, H. ; Palmblad, J. ; Reilly, J.T. ; Skoda, R. ; Thiele, J.

engleski

FLT3-mediated p38-MAPK activation participates in the control of megakaryopoiesis in primary myelofibrosis

Primary myelofibrosis (PMF) is characterized by increased number of hematopoietic progenitors and a dysmegakaryopoiesis which supports the stromal reaction defining this disease. We showed that increased ligand (FL) levels in plasma, hematopoietic progenitors, and stromal cells from PMF patients were associated with upregulation of the cognate Flt3 receptor on megakaryocytic (MK) cells. This connection prompted us to study a functional role for the FL/Flt3 couple in PMF dysmegakaryopoiesis, as a route to reveal insights into pathobiology and therapy in this disease. Analysis of PMF CD34þ and MK cell transcriptomes revealed deregulation of the mitogen-activated protein kinase (MAPK) pathway along with Flt3 expression. In PMF patients, a higherproportion of circulating Flt3þCD34þCD41þ cells exhibited an increased MAPK effector phosphorylation independently of Jak2V617F mutation. Activation of FL/Flt3 axis in PMF MK cell cultures, in response to FL, induced activation of the p38–MAPK cascade, which is known to be involved in inflammation, also increasing expression of its target genes (NFATC4, p53, AP-1, IL-8). Inhibiting Flt3 or MAPK or especially p38 by chemical, antibody, or silencing strategies restored megakaryopoiesis and reduced phosphorylation of Flt3 and p38 pathway effectors, confirming the involvement of Flt3 in PMF dysmegakaryopoiesis via p38 activation. In addition, in contrast to healthy donors, MKcells derived from PMF CD34þ cells exhibited an FL-induced migration that could be reversed by p38 inhibition. Taken together, our results implicate the FL/Flt3 ligand–receptor complex in PMF dysmegakaryopoiesis through persistent p38–MAPK activation, with implications for therapeutic prospects to correct altered megakaryopoiesis in an inflammatory context.

FLT3; p38-MAPK; primary myelofibrosis; cancer

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Podaci o izdanju

71 (8)

2011.

2901-2915

objavljeno

0008-5472

10.1158/0008-5472.CAN-10-1731

Povezanost rada

Kliničke medicinske znanosti

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