Molecular and Cellular Biology · 2014 · 93 citations · 37 references
Breast OncologyNonspliceable FormsCancer BiologyMammary Gland DevelopmentTumor BiologyTranscriptional RegulationSignaling PathwayOncologyAntiestrogen ResponsivenessCancer Cell BiologyRadiation OncologyCell SignalingCancer ResearchMolecular SignalingCell BiologyNf-κb SignalingEndocrine-related CancerAntiestrogen TherapyBreast CancerSystems BiologyMedicine
Antiestrogen therapy induces the unfolded protein response (UPR) in estrogen receptor-positive (ER(+)) breast cancer. X-box binding protein 1 (XBP1), which exists in the transcriptionally inactive unspliced form [XBP1(U)] and the spliced active form [XBP1(S)], is a key UPR component mediating antiestrogen resistance. We now show a direct link between the XBP1 and NF-κB survival pathways in driving the cell fate decisions in response to antiestrogens in ER(+) breast cancer cells, both in vitro and in a xenograft mouse model. Using novel spliced and nonspliceable forms of XBP1, we show that XBP1(U) functions beyond being a dominant negative of XBP1(S). Both isoforms regulate NF-κB activity via ERα; XBP1(S) is more potent because it also directly regulates p65/RelA expression. These findings provide new insights into the fundamental signaling activities of spliced and unspliced XBP1 in breast cancer, establish NF-κB to be a mediator of these activities, and identify XBP1 and its splicing to be novel therapeutic targets.
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A new mathematical model for relative quantification in real-time RT-PCR
Michael W. Pfaffl · Nucleic Acids Research · 2001 · 34.3K citations · Full text
Christos Sotiriou, Pratyaksha Wirapati, Sherene Loi et al. · JNCI Journal of the National Cancer Institute · 2006 · 2.1K citations · Full text