PIK3R3 induces epithelial-to-mesenchymal transition and promotes metastasis in colorectal cancer

G Wang, X Yang, C Li, X Cao, X Luo, J Hu - Molecular cancer therapeutics, 2014 - AACR
G Wang, X Yang, C Li, X Cao, X Luo, J Hu
Molecular cancer therapeutics, 2014AACR
Abstract Class IA PI3K plays an essential role in the invasion and metastasis of cancer.
However, the mechanisms and specific functions of PI3K isoforms in tumor invasion and
metastasis are not fully understood. We evaluated the role of PIK3R3, a PI3K regulatory
subunit encoded by the PIK3R3 gene, in colorectal cancer invasion and metastasis. Clinical
specimens and cell lines data show that the expression level of PIK3R3 is associated with
colorectal cancer metastasis. Overexpression of PIK3R3 increases tumor migration and …
Abstract
Class IA PI3K plays an essential role in the invasion and metastasis of cancer. However, the mechanisms and specific functions of PI3K isoforms in tumor invasion and metastasis are not fully understood. We evaluated the role of PIK3R3, a PI3K regulatory subunit encoded by the PIK3R3 gene, in colorectal cancer invasion and metastasis. Clinical specimens and cell lines data show that the expression level of PIK3R3 is associated with colorectal cancer metastasis. Overexpression of PIK3R3 increases tumor migration and invasion in vitro and promotes metastasis of colorectal cancers in vivo. Furthermore, we investigated that the overexpression of PIK3R3 depends on SNAI2, inducing significant epithelial-to-mesenchymal transition (EMT). Downregulation of PIK3R3 reverses this process, which possibly contributes to the enhanced invasive and metastasizing abilities of colorectal cancer cells. In this study, we found that PIK3R3 plays an important role in colorectal cancer metastasis and might be a potential and specific target for therapies against metastatic colorectal cancer. Mol Cancer Ther; 13(7); 1837–47. ©2014 AACR.
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