YAP activation in melanoma contributes to anoikis resistance and metastasis
Bei Zhao1, Jun Xie1, Xiyuan Zhou1
1Institute of Dermatology and Venereology, Sichuan Academy of Medical Sciences and Sichuan Provincial People's Hospital, Chengdu 610072, China.
Abstract:
Melanoma is inherently heterogeneous, providing resistance to apoptosis. Anoikis resistance is a hallmark feature of metastatic melanoma to escape apoptosis when cells lose contact with adjacent cells or extracellular matrix. The yes-associated protein transcription co-activator is the effector of Hippo pathway. Herein, we investigated the function of yes-associated protein in anoikis resistance of melanoma cells. When melanoma cells were grown under anchorage-independent condition, anoikis-resistant cells displayed higher levels of yes-associated protein activation than the cells that were attached to the basement membrane, as evidenced by downregulated phosphorylated yes-associated protein at Ser127 and higher expression of downstream genes BCL2 and MCL-1. Yes-associated protein overexpression directly enhanced the anoikis resistance and metastatic potential of melanoma cells. Conversely, yes-associated protein inhibitor CA3 exhibited Dose-dependent induction of anoikis in resistant melanoma cells and exerted great inhibition on cell migration. Knockdown of yes-associated protein expression by shRNA also rendered melanoma cells susceptible to anoikis and interrupted cell invasiveness. Yes-associated protein inhibition in anoikis-resistant cells also reduced the number of metastatic nodules in the lung sections of SCID mice. Clinically, higher yes-associated protein level in the lung metastasis tissues correlated with higher BCL2 and MCL1 expressions compared with the non-metastasis tissues. Overall, our finding suggests that the aberrant activation of yes-associated protein exerts important role on anoikis resistance and metastatic capability of melanoma cells.
Insights
Yes-associated protein (YAP) activation promotes melanoma cell survival and metastasis by resisting anoikis. Inhibiting YAP reduces melanoma cell invasion and lung metastasis, highlighting YAP as a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Melanoma exhibits inherent heterogeneity and resistance to apoptosis.
- Anoikis resistance is crucial for metastatic melanoma survival, enabling escape from apoptosis upon detachment.
- Yes-associated protein (YAP) is a key effector of the Hippo pathway, regulating cellular processes.
Purpose of the Study:
- To investigate the role of yes-associated protein (YAP) in anoikis resistance of melanoma cells.
- To determine the impact of YAP activation and inhibition on melanoma cell metastatic potential.
Main Methods:
- Melanoma cells were cultured under anchorage-independent conditions to assess anoikis resistance.
- YAP activation was measured by p-YAP (Ser127) levels and downstream gene expression (BCL2, MCL-1).
- YAP overexpression, inhibition (CA3), and knockdown (shRNA) were used to evaluate effects on anoikis, migration, and invasiveness. Lung metastasis in SCID mice was assessed. Clinical tissue analysis correlated YAP levels with gene expression.
Main Results:
- Anoikis-resistant melanoma cells showed higher YAP activation (decreased p-YAP Ser127) and elevated BCL2/MCL-1 expression.
- YAP overexpression enhanced anoikis resistance and metastatic potential.
- YAP inhibition (CA3) dose-dependently induced anoikis, inhibited migration, and reduced lung metastasis.
- YAP knockdown sensitized cells to anoikis and reduced invasiveness.
Conclusions:
- Aberrant YAP activation is critical for melanoma anoikis resistance and metastatic capability.
- YAP signaling represents a promising therapeutic target for melanoma treatment.
- Clinical data supports the correlation between YAP levels, BCL2/MCL-1 expression, and melanoma metastasis.
Related Concept Videos
The Intrinsic Apoptotic Pathway
mTOR Signaling and Cancer Progression
The mTOR pathway or the...
Adaptive Mechanisms in Cancer Cells
Some of the advantages that cancer cells have on normal cells include - enhanced ability to divide without terminally differentiating, induce new blood vessel formation,...
Metastasis
Epithelial-to-Mesenchymal Transition
The epithelial-to-mesenchymal transition or EMT is a developmental process commonly observed in wound healing, embryogenesis, and cancer metastasis. EMT is induced by transforming growth factor-beta (TGF-β) or receptor tyrosine kinase (RTK) ligands, which further...
Induced Pluripotent Stem Cells
Somatic...
The Extrinsic Apoptotic Pathway


