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Targeting AHR Increases Pancreatic Cancer Cell Sensitivity to Gemcitabine through the ELAVL1-DCK Pathway
Darius Stukas1, Aldona Jasukaitiene1, Arenida Bartkeviciene1
1Surgical Gastroenterology Laboratory, Institute for Digestive Research, Lithuanian University of Health Sciences, Eiveniu 4, 50103 Kaunas, Lithuania.
Abstract:
The aryl hydrocarbon receptor (AHR) is a transcription factor that is commonly upregulated in pancreatic ductal adenocarcinoma (PDAC). AHR hinders the shuttling of human antigen R (ELAVL1) from the nucleus to the cytoplasm, where it stabilises its target messenger RNAs (mRNAs) and enhances protein expression. Among these target mRNAs are those induced by gemcitabine. Increased AHR expression leads to the sequestration of ELAVL1 in the nucleus, resulting in chemoresistance. This study aimed to investigate the interaction between AHR and ELAVL1 in the pathogenesis of PDAC in vitro. AHR and ELAVL1 genes were silenced by siRNA transfection. The RNA and protein were extracted for quantitative real-time polymerase chain reaction (qRT-PCR) and Western blot (WB) analysis. Direct binding between the ELAVL1 protein and AHR mRNA was examined through immunoprecipitation (IP) assay. Cell viability, clonogenicity, and migration assays were performed. Our study revealed that both AHR and ELAVL1 inter-regulate each other, while also having a role in cell proliferation, migration, and chemoresistance in PDAC cell lines. Notably, both proteins function through distinct mechanisms. The silencing of ELAVL1 disrupts the stability of its target mRNAs, resulting in the decreased expression of numerous cytoprotective proteins. In contrast, the silencing of AHR diminishes cell migration and proliferation and enhances cell sensitivity to gemcitabine through the AHR-ELAVL1-deoxycytidine kinase (DCK) molecular pathway. In conclusion, AHR and ELAVL1 interaction can form a negative feedback loop. By inhibiting AHR expression, PDAC cells become more susceptible to gemcitabine through the ELAVL1-DCK pathway.
Insights
Aryl hydrocarbon receptor (AHR) and ELAVL1 protein interaction in pancreatic cancer influences chemoresistance. Inhibiting AHR enhances gemcitabine sensitivity via the ELAVL1-DCK pathway, offering new therapeutic strategies.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- The aryl hydrocarbon receptor (AHR) is upregulated in pancreatic ductal adenocarcinoma (PDAC).
- AHR impedes nuclear-to-cytoplasmic shuttling of human antigen R (ELAVL1), affecting target mRNA stability and protein expression, including gemcitabine-induced mRNAs.
- Elevated AHR leads to ELAVL1 nuclear sequestration, contributing to chemoresistance in PDAC.
Purpose of the Study:
- To investigate the interaction between AHR and ELAVL1 in PDAC pathogenesis.
- To elucidate the roles of AHR and ELAVL1 in PDAC cell proliferation, migration, and chemoresistance.
- To explore the molecular mechanisms underlying AHR and ELAVL1 interplay and their impact on gemcitabine sensitivity.
Main Methods:
- Gene silencing of AHR and ELAVL1 using siRNA transfection.
- Quantitative real-time polymerase chain reaction (qRT-PCR) and Western blot (WB) for RNA and protein analysis.
- Immunoprecipitation (IP) assay to examine direct binding between ELAVL1 protein and AHR mRNA.
- Cell viability, clonogenicity, and migration assays to assess functional impacts.
Main Results:
- AHR and ELAVL1 exhibit mutual regulation and influence PDAC cell proliferation, migration, and chemoresistance.
- ELAVL1 silencing destabilizes target mRNAs, decreasing cytoprotective protein expression.
- AHR silencing reduces cell migration and proliferation while enhancing gemcitabine sensitivity via the AHR-ELAVL1-deoxycytidine kinase (DCK) pathway.
Conclusions:
- AHR and ELAVL1 interaction forms a negative feedback loop in PDAC.
- Inhibiting AHR expression increases PDAC cell susceptibility to gemcitabine.
- The ELAVL1-DCK pathway is crucial for mediating gemcitabine sensitivity upon AHR inhibition.
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