Galectin-3, a Druggable Vulnerability for KRAS-Addicted Cancers
Identifying the molecular basis for cancer cell dependence on oncogenes such as can provide new opportunities to target these addictions. Here, we identify a novel role for the carbohydrate-binding protein galectin-3 as a lynchpin for KRAS dependence. By directly binding to the cell surface receptor...
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Veröffentlicht in: | Cancer discovery 2017-12, Vol.7 (12), p.1464-1479 |
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Sprache: | eng |
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Zusammenfassung: | Identifying the molecular basis for cancer cell dependence on oncogenes such as
can provide new opportunities to target these addictions. Here, we identify a novel role for the carbohydrate-binding protein galectin-3 as a lynchpin for KRAS dependence. By directly binding to the cell surface receptor integrin αvβ3, galectin-3 gives rise to KRAS addiction by enabling multiple functions of KRAS in anchorage-independent cells, including formation of macropinosomes that facilitate nutrient uptake and ability to maintain redox balance. Disrupting αvβ3/galectin-3 binding with a clinically active drug prevents their association with mutant KRAS, thereby suppressing macropinocytosis while increasing reactive oxygen species to eradicate αvβ3-expressing
-mutant lung and pancreatic cancer patient-derived xenografts and spontaneous tumors in mice. Our work reveals galectin-3 as a druggable target for KRAS-addicted lung and pancreas cancers, and indicates integrin αvβ3 as a biomarker to identify susceptible tumors.
There is a significant unmet need for therapies targeting
-mutant cancers. Here, we identify integrin αvβ3 as a biomarker to identify mutant KRAS-addicted tumors that are highly sensitive to inhibition of galectin-3, a glycoprotein that binds to integrin αvβ3 to promote KRAS-mediated activation of AKT.
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ISSN: | 2159-8274 2159-8290 |
DOI: | 10.1158/2159-8290.CD-17-0539 |