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Published on: March 27, 2020
Sequence-specific activation of TAK1-D by short double-stranded RNAs induces apoptosis in NCI-H460 cells
Reinhard Kodym1, Elisabeth Kodym, Micheal D Story
1Division of Molecular Radiation Biology, Department of Radiation Oncology, The University of Texas Southwestern Medical Center, 2201 Inwood Road, Dallas, TX 75390-9187, USA. reinhard.kodym@utsouthwestern.edu
Abstract:
Short double-stranded RNAs (dsRNA) are potent biological entities triggering a number of cellular effects. Most prominent among these is the post-transcriptional gene silencing of target genes by small interfering RNAs (siRNAs). In addition dsRNAs activate signal transduction processes through molecules like PKR or the Toll-like receptor important in viral defense and in explaining off target effects of siRNAs. Only a few of these dsRNA triggered pathways have been characterized yet. Here we show that the splicing variant D of the TAK1 gene is activated by short double-stranded RNAs in a sequence-specific manner. Activation of TAK1-D leads to the downstream activation of the p38 MAPK and of SAPK/JNK but not the NFkappaB pathway. In the human lung cancer cell line NCI-H460 the activation of these pathways leads to cell cycle arrest and apoptosis. Our results demonstrate that TAK1-D is activated by siRNAs of specific sequences, offering a new explanation for off target effects triggered by these molecules. In addition the dsRNA triggered activation of a cell death pathway in the human lung cancer cell line studied suggests that TAK1-D might be a new and promising therapeutic target for the treatment of nonsmall cell lung cancer.
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