bioRxiv · 10.1101/629139
An in vivo inflammatory loop potentiates KRAS blockade
Abstract
KRAS inhibitors perform inferior to other targeted drugs. To investigate a possible reason for this, we treated cancer cells with KRAS inhibitors deltarasin (targeting phosphodiesterase-{delta}), cysmethynil (targeting isoprenylcysteine carboxylmethyltransferase), and AA12 (targeting KRASG12C), and silenced/overexpressed mutant KRAS using custom vectors. We show that KRAS-mutant tumor cells exclusively respond to KRAS blockade in vivo, because the oncogene co-opts host myeloid cells via a C-C-motif chemokine ligand 2/interleukin-1{beta} signaling loop for sustained tumorigenicity. Indeed, KRAS-mutant tumors did not respond to deltarasin in Ccr2 and Il1b gene-deficient mice, but were deltarasin-sensitive in wild-type and Ccr2-deficient mice adoptively transplanted with wild-type murine bone marrow. A KRAS-dependent pro-inflammatory transcriptome was prominent in human cancers with high KRAS mutation prevalence and predicted poor survival. Hence the findings support that in vitro systems are suboptimal for anti-KRAS drug screens, and suggest that interleukin-1{beta} blockade might be specific for KRAS-mutant cancers.
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Stathopoulos, G. T., Arendt, K. A., Ntaliarda, G., Armenis, V., Kati, D., Henning, C., Giotopoulou, G., Pepe, M. A., Klotz, L. V., Lamort, A. S., Hatz, R. A., Kobold, S.. 2019-05-07. An in vivo inflammatory loop potentiates KRAS blockade. https://doi.org/10.1101/629139
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