A Self-Renewal Program Controls the Expansion of Genetically Unstable Cancer Stem Cells in Pluripotent Stem Cell-Derived Tumors

Author:

Conway Anne E.12,Lindgren Anne12,Galic Zoran345,Pyle April D.45678,Wu Hong45789,Zack Jerome A.45678,Pelligrini Matteo12,Teitell Michael A.457810,Clark Amander T.12578

Affiliation:

1. Department of Molecular Cell and Developmental Biology, University of California, Los Angeles, California, USA

2. College of Letters and Science, University of California, Los Angeles, California, USA

3. Department of Medicine, University of California, Los Angeles, California, USA

4. David Geffen School of Medicine, University of California, Los Angeles, California, USA

5. Eli and Edythe Broad Center of Regenerative Medicine and Stem Cell Research, University of California, Los Angeles, California, USA

6. Department of Microbiology, Immunology and Molecular Genetics, University of California, Los Angeles, California, USA

7. Jonsson Comprehensive Cancer Center, University of California, Los Angeles, California, USA

8. Molecular Biology Institute, University of California, Los Angeles, California, USA

9. Department of Biological Chemistry, University of California, Los Angeles, California, USA

10. Department of Pathology and Laboratory Medicine, University of California, Los Angeles, California, USA

Abstract

Abstract Human germ cell tumors are often metastatic, presumably due to distal site tumor growth by cancer stem cells. To determine whether cancer stem cells can be identified in a transplantation model of testicular germ cell tumor, we transplanted murine embryonic germ cells (EGCs) into the testis of adult severe combined immunodeficient mice. Transplantation resulted in a locally invasive solid tumor, with a cellular component that generated secondary tumors upon serial transplantation. The secondary tumors were invariably metastatic, a feature not observed in the primary tumors derived from EGCs. To characterize the differences between EGCs and the tumor-derived stem cells, we performed karyotype and microarray analysis. Our results show that generation of cancer stem cells is associated with the acquisition of nonclonal genomic rearrangements not found in the originating population. Furthermore, pretreatment of EGCs with a potent inhibitor of self-renewal, retinoic acid, prevented tumor formation and the emergence of these genetically unstable cancer stem cells. Microarray analysis revealed that EGCs and first- and second-generation cancer stem cells were highly similar; however, approximately 1,000 differentially expressed transcripts could be identified corresponding to alterations in oncogenes and genes associated with motility and development. Combined, the data suggest that the activation of oncogenic pathways in a cellular background of genetic instability, coupled with an inherent ability to self-renew, is involved in the acquisition of metastatic behavior in the cancer stem cell population of tumors derived from pluripotent cells.

Funder

Department of Molecular, Cell and Developmental Biology, UCLA

Lance Armstrong Foundation

STOP Cancer

Developmental Project with the UCLA In Vivo Cellular and Molecular Imaging Center

Fuller Foundation and the Eli and Edythe Broad Center of Regenerative Medicine and Stem Cell Research at UCLA

California Institute for Regenerative Medicine RS1

NIH is supported by Eli and Edythe Broad Center of Regenerative Medicine and Stem Cell Research Center Training Grant

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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