A whole-genome RNAi screen identifies an 8q22 gene cluster that inhibits death receptor-mediated apoptosis
A whole-genome RNAi screen identifies an 8q22 gene cluster that inhibits death receptor-mediated apoptosis
Deregulation of apoptosis is a common occurrence in cancer, for which emerging oncology therapeutic agents designed to engage this pathway are undergoing clinical trials. With the aim of uncovering strategies to activate apoptosis in cancer cells, we used a pooled shRNA screen to interrogate death receptor signaling. This screening approach identified 16 genes that modulate the sensitivity to ligand induced apoptosis, with several genes exhibiting frequent overexpression and/or copy number gain in cancer. Interestingly, two of the top hits, EDD1 and GRHL2, are found 50 kb apart on chromosome 8q22, a region that is frequently amplified in many cancers. By using a series of silencing and overexpression studies, we show that EDD1 and GRHL2 suppress death-receptor expression, and that EDD1 expression is elevated in breast, pancreas, and lung cancer cell lines resistant to death receptor-mediated apoptosis. Supporting the relevance of EDD1 and GRHL2 as therapeutic candidates to engage apoptosis in cancer cells, silencing the expression of either gene sensitizes 8q22-amplified breast cancer cell lines to death receptor induced apoptosis. Our findings highlight a mechanism by which cancer cells may evade apoptosis, and therefore provide insight in the search for new targets and functional biomarkers for this pathway.
- GENENTECH INC United States
Genome, Human, Ubiquitin-Protein Ligases, Blotting, Western, Apoptosis, Receptors, Death Domain, Sequence Analysis, DNA, Flow Cytometry, Microarray Analysis, Real-Time Polymerase Chain Reaction, DNA-Binding Proteins, Cell Line, Tumor, Multigene Family, Neoplasms, Humans, RNA Interference, Genetic Testing, Chromosomes, Human, Pair 8, DNA Primers, Transcription Factors
Genome, Human, Ubiquitin-Protein Ligases, Blotting, Western, Apoptosis, Receptors, Death Domain, Sequence Analysis, DNA, Flow Cytometry, Microarray Analysis, Real-Time Polymerase Chain Reaction, DNA-Binding Proteins, Cell Line, Tumor, Multigene Family, Neoplasms, Humans, RNA Interference, Genetic Testing, Chromosomes, Human, Pair 8, DNA Primers, Transcription Factors
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