Experimental Hematology
Volume 36, Issue 7 , Pages 845-859, July 2008

Linkage of Meis1 leukemogenic activity to multiple downstream effectors including Trib2 and Ccl3

  • Bob Argiropoulos

      Affiliations

    • Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, British Columbia, Canada
  • ,
  • Lars Palmqvist

      Affiliations

    • Institute of Biomedicine, Sahlgrenska University Hospital, Göteborg, Sweden
  • ,
  • Eric Yung

      Affiliations

    • Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, British Columbia, Canada
  • ,
  • Florian Kuchenbauer

      Affiliations

    • Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, British Columbia, Canada
  • ,
  • Michael Heuser

      Affiliations

    • Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, British Columbia, Canada
  • ,
  • Laura M. Sly

      Affiliations

    • Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, British Columbia, Canada
  • ,
  • Adrian Wan

      Affiliations

    • Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, British Columbia, Canada
  • ,
  • Gerald Krystal

      Affiliations

    • Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, British Columbia, Canada
    • Department of Pathology, University of British Columbia, Vancouver, British Columbia, Canada
  • ,
  • R. Keith Humphries

      Affiliations

    • Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, British Columbia, Canada
    • Department of Medicine, University of British Columbia, Vancouver, British Columbia, Canada
    • Corresponding Author InformationOffprint requests to: R. Keith Humphries, M.D., Ph.D., Terry Fox Laboratory, British Columbia Cancer Agency, 11th Floor, 675 West 10th Avenue, Vancouver, British Columbia, Canada, V5Z 1L3

Received 15 February 2008; received in revised form 19 February 2008; accepted 26 February 2008. published online 31 March 2008.

Objective

MEIS1, a HOX cofactor, collaborates with multiple HOX and NUP98-HOX fusion proteins to accelerate the onset of acute myeloid leukemia (AML) through largely unknown molecular mechanisms.

Materials and Methods

To further resolve these mechanisms, we conducted a structure-function analysis of MEIS1 and gene-expression profiling, in the context of NUP98-HOXD13 (ND13) leukemogenesis.

Results

We show, in a murine bone marrow transplantation model, that the PBX-interaction domain, the homeodomain, and the C-terminal domain of MEIS1, are all required for leukemogenic collaboration with ND13. In contrast, the N-terminal domain of MEIS1 is dispensable for collaboration with ND13, but is required for Flt3 upregulation, indicating additional roles for MEIS1 in induction of leukemia independent of alterations in Flt3 expression. Gene-expression profiling of a cloned ND13 preleukemic cell line transduced with wild-type or Meis1 mutant forms revealed deregulation of multiple genes, including a set not previously implicated as MEIS1 targets. Chromatin immunoprecipitation revealed the in vivo occupancy of MEIS1 on regulatory sequences of Trib2, Flt3, Dlk1, Ccl3, Ccl4, Pf4, and Rgs1. Furthermore, engineered overexpression of Trib2 complements ND13 to induce AML while Ccl3 potentiates the repopulating ability of ND13.

Conclusion

This study shows that Meis1-induced leukemogenesis with ND13 can occur in the absence of Flt3 upregulation and reveals the existence of other pathways activated by MEIS1 to promote leukemia.

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PII: S0301-472X(08)00096-9

doi:10.1016/j.exphem.2008.02.011

Experimental Hematology
Volume 36, Issue 7 , Pages 845-859, July 2008