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MicroRNA-224 is implicated in lung cancer pathogenesis through targeting caspase-3 and caspase-7.

Oncotarget (2015-08-27)
Ri Cui, Taewan Kim, Matteo Fassan, Wei Meng, Hui-Lung Sun, Young-Jun Jeon, Caterina Vicentini, Esmerina Tili, Yong Peng, Aldo Scarpa, Guang Liang, Yong Kui Zhang, Arnab Chakravarti, Carlo M Croce
RÉSUMÉ

We recently reported that miR-224 was significantly up-regulated in non-small cell lung cancer (NSCLC) tissues, in particular in resected NSCLC metastasis. We further demonstrated that miR-224 functions as an oncogene in NSCLC by directly targeting TNFAIP1 and SMAD4. However, the biological functions of miR-224 in NSCLC are controversial and underlying mechanisms of miR-224 in the progression and metastasis of lung cancer remain to be further explored. Here we report that caspase3 (CASP3) and caspase7 (CASP7) are previously unidentified targets of miR-224 in NSCLC, and that miR-224 promotes lung cancer cells proliferation and migration in part by directly targeting CASP7 and down-regulating its expression. In addition, miR-224 attenuated TNF-α induced apoptosis by direct targeting of CASP3 resulting in reduction of cleaved PARP1 expression in lung cancer cells. Furthermore, the expression of miR-224 negatively correlates with the expression of CASP7 and CASP3 in tissue samples from patients with lung cancer. Finally, we found that activated NF-κB signaling is involved in the regulation of miR-224 expression in lung cancer. Our study provides new insight in understanding of oncogenic role of miR-224 in the lung cancer pathogenesis and suggests that NF-κB/miR-224/CASP3, 7 pathway could be a putative therapeutic target in lung cancer.

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Marque
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Sigma-Aldrich
MISSION® esiRNA, targeting human CASP7