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Papagianni, C.

Publications and source records attributed to Papagianni, C..

2 recordsLinked to original sources

PEBP1 is a candidate biomarker of response to the PP2A inhibitor LB-100

We recently proposed an approach for cancer therapy involving a "paradoxical" activation of oncogenic signaling combined with the inhibition of stress responses. However, as with any other treatment, resistance can also emerge with hyperactivation therapy. In this study, we explored how cancer cells can acquire resistance to a drug that hyperactivates oncogenic signaling using the Protein Phosphatase 2A (PP2A) LB-100 as an example. Our findings indicated that PEBP1 depletion confers resistance to LB-100 in different cancer models. Mechanistically, resistance is mediated by a reduced conversion of the prodrug LB-100 into the active metabolite endothall in the absence of PEBP1. Our data are compatible with a model in which PEBP1 is a hydrolase that can convert the prodrug LB-100 into the active endothall.

cancer biology↗

Paradoxical activation of oncogenic signaling as a cancer treatment strategy

Cancer homeostasis depends on a balance between activated oncogenic pathways driving tumorigenesis and engagement of stress-response programs that counteract the inherent toxicity of such aberrant signaling. While inhibition of oncogenic signaling pathways has been explored extensively, there is increasing evidence that overactivation of the same pathways can also disrupt cancer homeostasis and cause lethality. We show here that inhibition of Protein Phosphatase 2A (PP2A) hyperactivates multiple oncogenic pathways and engages stress responses in colon cancer cells. Genetic and compound screens identify combined inhibition of PP2A and WEE1 as synergistic in multiple cancer models by collapsing DNA replication and triggering premature mitosis followed by cell death. This combination also suppressed the growth of patient-derived tumors in vivo. Remarkably, acquired resistance to this drug combination suppressed the ability of colon cancer cells to form tumors in vivo. Our data suggest that paradoxical activation of oncogenic signaling can result in tumor suppressive resistance.

cancer biology↗