MED12 controls the response to multiple cancer drugs through regulation of TGF-β receptor signaling.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 23178117.
- Also identified by DOI 10.1016/j.cell.2012.10.035 and PMC identifier 3672971.
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Abstract
Inhibitors of the ALK and EGF receptor tyrosine kinases provoke dramatic but short-lived responses in lung cancers harboring EML4-ALK translocations or activating mutations of EGFR, respectively. We used a large-scale RNAi screen to identify MED12, a component of the transcriptional MEDIATOR complex that is mutated in cancers, as a determinant of response to ALK and EGFR inhibitors. MED12 is in part cytoplasmic where it negatively regulates TGF-βR2 through physical interaction. MED12 suppression therefore results in activation of TGF-βR signaling, which is both necessary and sufficient for drug resistance. TGF-β signaling causes MEK/ERK activation, and consequently MED12 suppression also confers resistance to MEK and BRAF inhibitors in other cancers. MED12 loss induces an EMT-like phenotype, which is associated with chemotherapy resistance in colon cancer patients and to gefitinib in lung cancer. Inhibition of TGF-βR signaling restores drug responsiveness in MED12(KD) cells, suggesting a strategy to treat drug-resistant tumors that have lost MED12.
Medical subject headings
- Antineoplastic Agents
- Drug Resistance, Neoplasm
- Mediator Complex
- Neoplasms
- Receptors, Transforming Growth Factor beta
- Signal Transduction