ALDH1A Isozymes are Markers of Human Melanoma Stem Cells and Potential Therapeutic Targets

Author:

Luo Yuchun1,Dallaglio Katiuscia12,Chen Ying3,Robinson William A.4,Robinson Steven E.4,McCarter Martin D.5,Wang Jianbin6,Gonzalez Rene4,Thompson David C.7,Norris David A.18,Roop Dennis R.12,Vasiliou Vasilis3,Fujita Mayumi128

Affiliation:

1. Department of Dermatology, University of Colorado Denver, Aurora, Colorado, USA

2. Charles C Gates Center for Regenerative Medicine and Stem Cell Biology, University of Colorado Denver, Aurora, Colorado, USA

3. Department of Pharmaceutical Sciences, University of Colorado Denver, Aurora, Colorado, USA

4. Division of Medical Oncology, Department of Medicine, University of Colorado Denver, Aurora, Colorado, USA

5. Department of Surgery, University of Colorado Denver, Aurora, Colorado, USA

6. Department of Biochemistry and Molecular Genetics, Aurora, Colorado, USA

7. Clinical Pharmacy, University of Colorado Denver, Aurora, Colorado, USA

8. Denver Veterans Affairs Medical Center, Denver, Colorado, USA

Abstract

Abstract Although the concept of cancer stem cells (CSCs) is well-accepted for many tumors, the existence of such cells in human melanoma has been the subject of debate. In this study, we demonstrate the existence of human melanoma cells that fulfill the criteria for CSCs (self-renewal and differentiation) by serially xenotransplanting cells into nonobese diabetic/severe combined immunodeficiency (NOD/SCID) mice. These cells possess high aldehyde dehydrogenase (ALDH) activity with ALDH1A1 and ALDH1A3 being the predominant ALDH isozymes. ALDH-positive melanoma cells are more tumorigenic than ALDH-negative cells in both NOD/SCID mice and NSG mice. Biological analyses of the ALDH-positive melanoma cells reveal the ALDH isozymes to be key molecules regulating the function of these cells. Silencing ALDH1A by siRNA or shRNA leads to cell cycle arrest, apoptosis, decreased cell viability in vitro, and reduced tumorigenesis in vivo. ALDH-positive melanoma cells are more resistant to chemotherapeutic agents and silencing ALDH1A by siRNA sensitizes melanoma cells to drug-induced cell death. Furthermore, we, for the first time, examined the molecular signatures of ALDH-positive CSCs from patient-derived tumor specimens. The signatures of melanoma CSCs include retinoic acid (RA)-driven target genes with RA response elements and genes associated with stem cell function. These findings implicate that ALDH isozymes are not only biomarkers of CSCs but also attractive therapeutic targets for human melanoma. Further investigation of these isozymes and genes will enhance our understanding of the molecular mechanisms governing CSCs and reveal new molecular targets for therapeutic intervention of cancer.

Funder

NIH

Veterans Affairs Merit Review Award

UCCC

Wendy Will Case Cancer Fund

Tadamitsu Cancer Research Fund

NEI

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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