Expression profiling of a hemopoietic cell survival transcriptome implicates osteopontin as a functional prognostic factor in AML

Author:

Powell Jason A.1,Thomas Daniel1,Barry Emma F.1,Kok Chung H.2,McClure Barbara J.3,Tsykin Anna4,To L. Bik2,Brown Anna2,Lewis Ian D.2,Herbert Kirsten5,Goodall Gregory J.67,Speed Terence P.8,Asou Norio9,Jacob Bindya10,Osato Motomi10,Haylock David N.11,Nilsson Susan K.11,D'Andrea Richard J.2,Lopez Angel F.3,Guthridge Mark A.17

Affiliation:

1. Cell Growth and Differentiation Laboratory, Division of Human Immunology,

2. Department of Haematology,

3. Cytokine Receptor Laboratory, Division of Human Immunology, Centre for Cancer Biology, Adelaide, Australia;

4. Department of Mathematics, University of Adelaide, Adelaide, Australia;

5. Department of Haematology and Medical Oncology, Peter MacCallum Cancer Centre, East Melbourne, Australia;

6. Cytokine Signaling Laboratory, Division of Human Immunology, Centre for Cancer Biology, Adelaide, Australia;

7. Department of Medicine, University of Adelaide, Adelaide, Australia;

8. Division of Bioinformatics, The Walter and Eliza Hall Institute of Medical Research, Parkville, Australia;

9. Department of Hematology, Kumamoto University School of Medicine, Kumamoto, Japan;

10. Cancer Science Institute of Singapore, National University of Singapore, Singapore; and

11. Australian Stem Cell Centre, Monash University, Clayton, Australia

Abstract

Abstract Deregulated cell survival programs are a classic hallmark of cancer. We have previously identified a serine residue (Ser585) in the βc subunit of the granulocyte-macrophage colony-stimulating factor receptor that selectively and independently promotes cell survival. We now show that Ser585 phosphorylation is constitutive in 20 (87%) of 23 acute myeloid leukemia (AML) patient samples, indicating that this survival-only pathway is frequently deregulated in leukemia. We performed a global expression screen to identify gene targets of this survival pathway and report a 138-gene βc Ser585-regulated transcriptome. Pathway analysis defines a gene network enriched for PI3-kinase target genes and a cluster of genes involved in cancer and cell survival. We show that one such gene, osteopontin (OPN), is a functionally relevant target of the Ser585-survival pathway as shown by siRNA-mediated knockdown of OPN expression that induces cell death in both AML blasts and CD34+CD38−CD123+ leukemic progenitors. Increased expression of OPN at diagnosis is associated with poor prognosis with multivariate analysis indicating that it is an independent predictor of overall patient survival in normal karyotype AML (n = 60; HR = 2.2; P = .01). These results delineate a novel cytokine-regulated Ser585/PI3-kinase signaling network that is deregulated in AML and identify OPN as a potential prognostic and therapeutic target.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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