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The Elongin BC Complex Negatively Regulates AXL and Marks a Differentiated Phenotype in Melanoma
Sebastiaan M Schieven1, Joleen J H Traets1, Alex V Vliet1
1Division of Molecular Oncology and Immunology, Oncode Institute, Netherlands Cancer Institute, Amsterdam, The Netherlands.
Abstract:
High expression of the receptor tyrosine kinase AXL is implicated in epithelial-to-mesenchymal transition, cancer progression, and therapy resistance. For example, AXL is abundant in BRAF mutant melanomas progressing on targeted BRAF/MEK inhibition. Therefore, AXL is thought to represent an attractive therapeutic target. This notwithstanding, little is known about the mechanisms governing expression of AXL. Here, we describe a FACS-based whole-genome-wide CRISPR-Cas9 screen to uncover regulators of AXL expression. We identified several genes, inactivation of which led to increased AXL expression. Most remarkable was the identification of five components that associate with the Elongin BC heterodimer. Elongin B/C engage in multiple protein-protein interactions, including the transcription factor complex subunit Elongin A, the von Hippel-Lindau (VHL) tumor suppressor protein, and members of the SOCS-box protein family. The screen identified ELOB, ELOC, SOCS5, UBE2F, and RNF7, each of which we demonstrate to serve as an inhibitor of AXL expression. Although the AXL promoter contains hypoxia response elements and Elongin B/C are found in the VHL complex, Elongin B/C unexpectedly regulate AXL independently of hypoxia. Instead, we demonstrate that the Elongin BC complex interacts with AXL through ELOB, and contributes to proteasomal AXL turnover. RNA-sequencing and IHC analyses of melanoma patient-derived xenografts and clinical samples revealed a negative association between Elongin B/C and dedifferentiation. Together, the Elongin BC complex regulates AXL and marks a differentiated melanoma phenotype.
Implications:
This study identifies the Elongin BC complex as a key regulator of AXL expression and marker of melanoma differentiation.
Insights
The Elongin BC complex regulates AXL expression, a key factor in melanoma progression and therapy resistance. This complex also marks a differentiated melanoma phenotype, offering new therapeutic insights.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- High AXL receptor tyrosine kinase expression drives melanoma progression, epithelial-to-mesenchymal transition, and therapy resistance.
- AXL is particularly abundant in BRAF-mutant melanomas under targeted BRAF/MEK inhibition, making it a therapeutic target.
- Mechanisms controlling AXL expression remain largely unknown.
Purpose of the Study:
- To identify novel regulators of AXL expression using a genome-wide CRISPR-Cas9 screen.
- To elucidate the role of the Elongin BC complex in controlling AXL levels and its impact on melanoma biology.
Main Methods:
- A fluorescence-activated cell sorting (FACS)-based whole-genome-wide CRISPR-Cas9 screen was employed to identify genes regulating AXL expression.
- Candidate genes, including components of the Elongin BC complex (ELOB, ELOC), SOCS5, UBE2F, and RNF7, were validated.
- Mechanisms of regulation, including interaction with AXL and proteasomal turnover, were investigated.
- RNA-sequencing and immunohistochemistry (IHC) were performed on melanoma patient samples.
Main Results:
- The screen identified ELOB, ELOC, SOCS5, UBE2F, and RNF7 as inhibitors of AXL expression.
- The Elongin BC complex directly interacts with AXL and promotes its proteasomal degradation, independent of hypoxia.
- Reduced Elongin B/C expression correlates with increased AXL and a dedifferentiated melanoma phenotype in patient samples.
Conclusions:
- The Elongin BC complex is a critical negative regulator of AXL expression in melanoma.
- Elongin BC complex activity is linked to melanoma cell differentiation, suggesting its potential as a biomarker.
- Targeting the Elongin BC complex or understanding its regulatory pathway may offer new therapeutic strategies for melanoma.
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