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Silencing of PTK7 in colon cancer cells: caspase-10-dependent apoptosis via mitochondrial pathway
Authors:Meng Ling  Sefah Kwame  O'Donoghue Meghan B  Zhu Guizhi  Shangguan Dihua  Noorali Afshan  Chen Yan  Zhou Lei  Tan Weihong
Institution:Department of Chemistry, Shands Cancer Center, UF Genetics Institute, University of Florida, Gainesville, Florida, United States of America.
Abstract:Protein tyrosine kinase-7 (PTK7) is a catalytically inactive receptor tyrosine kinase (RTK). PTK7 is upregulated in many common human cancers, including colon cancer, lung cancer, gastric cancer and acute myeloid leukemia. The reason for this up-regulation is not yet known. To explore the functional role of PTK7, the expression of PTK7 in HCT 116 cells was examined using small interference (siRNA)-mediated gene silencing. Following transfection, the siRNA successfully suppressed PTK7 mRNA and protein expression. Knocking down of PTK7 in HCT 116 cells inhibited cell proliferation compared to control groups and induced apoptosis. Furthermore, this apoptosis was characterized by decreased mitochondrial membrane potential and activation of caspase-9 and -10. Addition of a caspase-10 inhibitor totally blocked this apoptosis, suggesting that caspase-10 may play a critical role in PTK7-knockdown-induced apoptosis, downstream of mitochondria. These observations may indicate a role for PTK7 in cell proliferation and cell apoptosis and may provide a potential therapeutic pathway for the treatment of a variety of cancers.
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