[No authors listed]
TRAIL is an attractive candidate for anticancer therapy in a variety of tumors since it targets only tumors and not normal tissue. However, a remaining major hurdle is that the majority of tumors exhibit a resistance mechanism against the effects of TRAIL via the induction of antiâapoptotic signaling pathways. In this study, we aimed to evaluate whether the modulation of CCR4âNOT transcription complex subunit 2 (CNOT2) function can promote TRAIL sensitivity in nonâsmallâcell lung cancer (NSCLC) cells. CNOT2 depletion partially decreased colony numbers and the proliferation of NSCLC cells. When combined with TRAIL, the suppression of CNOT2 expression markedly decreased the survival rate and increased apoptosis, as compared with TRAIL treatment alone in TRAILâresistant NSCLC cells. Of note, CNOT2 overexpression in TRAILâsensitive H460 cells enhanced the survival rate and decreased apoptosis when compared with TRAIL treatment alone. Gene expression analysis indicated that genes involved in the signal transducer and activator of transcription 3 signaling pathway were dominantly altered in the CNOT2âdepleted A549 cells. Under this condition, Src homology region 2 domain containing phosphataseâ1 (SHP1) was significantly upregulated and subsequently increased apoptosis. On the whole, the findings of this study demonstrate that CNOT2 participates in TRAIL sensitivity in NSCLC cells via the regulation of the signaling pathway, and suggest that combination therapy with CNOT2 depletion and TRAIL treatment may prove to be a useful strategy for overcoming TRAIL resistance in NSCLC.
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