Flt3-dependent transformation by inactivating c-Cbl mutations in AML

In acute myeloid leukemia (AML), mutational activation of the receptor tyrosine kinase (RTK) Flt3 is frequently involved in leukemic transformation. However, little is known about a possible role of highly expressed wild-type Flt3 in AML. The proto-oncogene c-Cbl is an important regulator of RTK sig...

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Veröffentlicht in:Blood 2007-08, Vol.110 (3), p.1004-1012
Hauptverfasser: Sargin, Bülent, Choudhary, Chunaram, Crosetto, Nicola, Schmidt, Mirko H.H., Grundler, Rebekka, Rensinghoff, Marion, Thiessen, Christine, Tickenbrock, Lara, Schwäble, Joachim, Brandts, Christian, August, Benjamin, Koschmieder, Steffen, Bandi, Srinivasa Rao, Duyster, Justus, Berdel, Wolfgang E., Müller-Tidow, Carsten, Dikic, Ivan, Serve, Hubert
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Sprache:eng
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Zusammenfassung:In acute myeloid leukemia (AML), mutational activation of the receptor tyrosine kinase (RTK) Flt3 is frequently involved in leukemic transformation. However, little is known about a possible role of highly expressed wild-type Flt3 in AML. The proto-oncogene c-Cbl is an important regulator of RTK signaling, acting through its ubiquitin ligase activity and as a platform for several signaling adaptor molecules. Here, we analyzed the role of c-Cbl in Flt3 signal transduction and myeloid transformation. C-Cbl physically interacted with Flt3 and was tyrosine phosphorylated in the presence of Flt3-ligand (FL). Overexpression of a dominant-negative form of c-Cbl (Cbl-70Z) inhibited FL-induced Flt3 ubiquitylation and internalization, indicating involvement of c-Cbl in Flt3 signaling. DNA sequencing of AML bone marrow revealed a case with a c-Cbl point mutation (Cbl-R420Q). Cbl-R420Q inhibited Flt3 internalization and ubiquitylation. Coexpression of Cbl-R420Q or Cbl-70Z with Flt3 induced cytokine-independent growth and survival of 32Dcl3 cells in the absence of FL. Also, the mutant Cbl proteins altered the amplitude and duration of Flt3-dependent signaling events. Our results indicate an important role of Cbl proteins in Flt3 signal modulation. Also, the data suggest a novel mechanism of leukemic transformation in AML by mutational inactivation of negative RTK regulators.
ISSN:0006-4971
1528-0020
DOI:10.1182/blood-2007-01-066076