VEGFR-1 expressed by malignant melanoma-initiating cells is required for tumor growth
Natasha Y Frank1, Tobias Schatton, Soo Kim
1Division of Genetics, Brigham and Women's Hospital, Boston, Massachusetts, USA.
Abstract:
Melanoma growth is driven by malignant melanoma-initiating cells (MMIC) identified by expression of the ATP-binding cassette (ABC) member ABCB5. ABCB5(+) melanoma subpopulations have been shown to overexpress the vasculogenic differentiation markers CD144 (VE-cadherin) and TIE1 and are associated with CD31(-) vasculogenic mimicry (VM), an established biomarker associated with increased patient mortality. Here we identify a critical role for VEGFR-1 signaling in ABCB5(+) MMIC-dependent VM and tumor growth. Global gene expression analyses, validated by mRNA and protein determinations, revealed preferential expression of VEGFR-1 on ABCB5(+) tumor cells purified from clinical melanomas and established melanoma lines. In vitro, VEGF induced the expression of CD144 in ABCB5(+) subpopulations that constitutively expressed VEGFR-1 but not in ABCB5(-) bulk populations that were predominantly VEGFR-1(-). In vivo, melanoma-specific shRNA-mediated knockdown of VEGFR-1 blocked the development of ABCB5(+) VM morphology and inhibited ABCB5(+) VM-associated production of the secreted melanoma mitogen laminin. Moreover, melanoma-specific VEGFR-1 knockdown markedly inhibited tumor growth (by > 90%). Our results show that VEGFR-1 function in MMIC regulates VM and associated laminin production and show that this function represents one mechanism through which MMICs promote tumor growth.
Insights
Vascular Endothelial Growth Factor Receptor-1 (VEGFR-1) signaling drives melanoma growth by promoting vasculogenic mimicry in malignant melanoma-initiating cells (MMICs). Inhibiting VEGFR-1 significantly reduces tumor growth and associated VM.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Melanoma growth is driven by malignant melanoma-initiating cells (MMICs) expressing ABCB5.
- ABCB5(+) melanoma cells exhibit vasculogenic mimicry (VM), linked to poor patient prognosis.
- VEGFR-1 signaling's role in MMIC-driven VM remains unclear.
Purpose of the Study:
- To investigate the role of VEGFR-1 signaling in ABCB5(+) MMIC-dependent VM and melanoma tumor growth.
- To determine if VEGFR-1 is expressed on ABCB5(+) melanoma cells.
- To assess the impact of VEGFR-1 inhibition on VM and tumor progression.
Main Methods:
- Global gene expression analysis, mRNA, and protein validation.
- In vitro studies using VEGF stimulation on purified melanoma subpopulations.
- In vivo studies utilizing shRNA-mediated knockdown of VEGFR-1 in melanoma models.
Main Results:
- VEGFR-1 is preferentially expressed on ABCB5(+) melanoma cells.
- VEGF induces CD144 expression in VEGFR-1-expressing ABCB5(+) cells.
- VEGFR-1 knockdown inhibits ABCB5(+) VM, laminin production, and reduces tumor growth by over 90%.
Conclusions:
- VEGFR-1 signaling in MMICs is critical for regulating VM and associated laminin production.
- VEGFR-1 plays a key role in MMIC-mediated melanoma tumor growth.
- Targeting VEGFR-1 represents a potential therapeutic strategy for melanoma.
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