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Published on: October 27, 2020
Functional Genomics Approach Identifies Novel Signaling Regulators of TGFα Ectodomain Shedding
Jennifer L Wilson1, Eirini Kefaloyianni2, Lauren Stopfer1
1Department of Biological Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts.
Abstract:
Ectodomain shedding of cell-surface precursor proteins by metalloproteases generates important cellular signaling molecules. Of importance for disease is the release of ligands that activate the EGFR, such as TGFα, which is mostly carried out by ADAM17 [a member of the A-disintegrin and metalloprotease (ADAM) domain family]. EGFR ligand shedding has been linked to many diseases, in particular cancer development, growth and metastasis, as well as resistance to cancer therapeutics. Excessive EGFR ligand release can outcompete therapeutic EGFR inhibition or the inhibition of other growth factor pathways by providing bypass signaling via EGFR activation. Drugging metalloproteases directly have failed clinically because it indiscriminately affected shedding of numerous substrates. It is therefore essential to identify regulators for EGFR ligand cleavage. Here, integration of a functional shRNA genomic screen, computational network analysis, and dedicated validation tests succeeded in identifying several key signaling pathways as novel regulators of TGFα shedding in cancer cells. Most notably, a cluster of genes with NFκB pathway regulatory functions was found to strongly influence TGFα release, albeit independent of their NFκB regulatory functions. Inflammatory regulators thus also govern cancer cell growth-promoting ectodomain cleavage, lending mechanistic understanding to the well-known connection between inflammation and cancer.Implications: Using genomic screens and network analysis, this study defines targets that regulate ectodomain shedding and suggests new treatment opportunities for EGFR-driven cancers. Mol Cancer Res; 16(1); 147-61. ©2017 AACR.
Insights
Researchers identified novel regulators of TGFα shedding, a process crucial for EGFR-driven cancers. Targeting these regulators, including NFκB pathway genes, offers new therapeutic strategies for cancer treatment.
Area of Science:
- Molecular biology
- Cancer research
- Signaling pathways
Background:
- Ectodomain shedding by metalloproteases generates signaling molecules, including EGFR ligands like TGFα.
- ADAM17 mediates TGFα shedding, implicated in cancer development, metastasis, and therapeutic resistance.
- Directly inhibiting metalloproteases is clinically unsuccessful due to substrate promiscuity.
Purpose of the Study:
- To identify novel regulators of TGFα shedding in cancer cells.
- To understand the link between inflammatory regulators and cancer cell growth-promoting ectodomain cleavage.
Main Methods:
- Functional shRNA genomic screen
- Computational network analysis
- Validation tests
Main Results:
- Identified key signaling pathways regulating TGFα shedding.
- Discovered a cluster of NFκB pathway genes strongly influencing TGFα release, independent of NFκB function.
- Established a mechanistic link between inflammatory regulators and cancer cell growth via ectodomain cleavage.
Conclusions:
- Novel regulators of TGFα shedding were identified, offering new therapeutic targets.
- Findings provide mechanistic insight into the inflammation-cancer connection.
- Suggests new treatment opportunities for EGFR-driven cancers by targeting identified regulators.
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