Oncogenic EML4-ALK assemblies suppress growth factor perception and modulate drug tolerance

Drug resistance remains a challenge for targeted therapy of cancers driven by EML4-ALK and related fusion oncogenes. EML4-ALK forms cytoplasmic protein condensates, which result from networks of interactions between oncogene and adapter protein multimers. While these assemblies are associated with o...

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Veröffentlicht in:Nature communications 2024-11, Vol.15 (1), p.9473-17, Article 9473
Hauptverfasser: Gonzalez-Martinez, David, Roth, Lee, Mumford, Thomas R., Guan, Juan, Le, Anh, Doebele, Robert C., Huang, Bo, Tulpule, Asmin, Niewiadomska-Bugaj, Magdalena, Bivona, Trever G., Bugaj, Lukasz J.
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Sprache:eng
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Zusammenfassung:Drug resistance remains a challenge for targeted therapy of cancers driven by EML4-ALK and related fusion oncogenes. EML4-ALK forms cytoplasmic protein condensates, which result from networks of interactions between oncogene and adapter protein multimers. While these assemblies are associated with oncogenic signaling, their role in drug response is unclear. Here, we use optogenetics and live-cell imaging to find that EML4-ALK assemblies suppress transmembrane receptor tyrosine kinase (RTK) signaling by sequestering RTK adapter proteins including GRB2 and SOS1. Furthermore, ALK inhibition, while suppressing oncogenic signaling, simultaneously releases the sequestered adapters and thereby resensitizes RTK signaling. Resensitized RTKs promote rapid and pulsatile ERK reactivation that originates from paracrine ligands shed by dying cells. Reactivated ERK signaling promotes cell survival, which can be counteracted by combination therapies that block paracrine signaling. Our results identify a regulatory role for RTK fusion assemblies and uncover a mechanism of tolerance to targeted therapies. The EML4-ALK oncogene forms  cytoplasmic protein condensates that are associated with its oncogenic signaling. Here, the authors demonstrate that these EML4-ALK assemblies also sequester receptor tyrosine kinase (RTK) adapter proteins suppressing signaling which was reversed upon ALK inhibition, resulting in rapid resensitisation to growth factors and tumor cell survival.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-024-53451-7