Background
The main causes of lung cancer are smoking, environmental pollution and genetic susceptibility. It is an indisputable fact that PAHs are related to lung cancer, and benzo(a) pyrene is a representative of PAHs. The purpose of the current investigation was to investigate the interaction between AhR and HIF-1 signaling pathways in A549 cells, which provide some experimental basis for scientists to find drugs that block AhR and HIF-1 signaling pathway to prevent and treat cancer.
Methods
This project adopts the CYP1A1 signaling pathways and the expression of CYP1B1 is expressed as a measure of AhR strength index. The expression of VEGF and CAIX volume as a measure of the strength of the signal path HIF-1 indicators. Through the construction of plasmid vector, fluorescence resonance energy transfer, real-time quantitative PCR, western blotting and immunoprecipitation, the interaction between AhR signaling pathway and HIF-1 signaling pathway was observed.
Results
BaP can enhance the binding ability of HIF-1α protein to HIF-1β/ARNT in a dose-dependent manner without CoCl2. However, the binding ability of AhR protein to HIF-1β/ARNT is inhibited by HIF-1α signaling pathway in a dose-dependent manner with CoCl2.
Conclusion
It is shown that activation of the AhR signaling pathway does not inhibit the HIF-1α signaling pathway, but activation of the HIF-1α signaling pathway inhibits the AhR signaling pathway.
A total of 12 eligible studies were included. In the overall analysis, we didn't find any statistical evidence that +936C>T polymorphism was related to the risk of lung cancer in any genetic model. However, increased lung cancer risk was detected in adenocarcinoma subgroup (OR=1.532, 95%CI: 1.016-2.312, P=0.042). For an aggregate result of survival analysis, +936C>T polymorphism was linked to an unfavorable OS (HR=2.248, 95%CI: 1.257-4.017, P=0.006) under homozygous model (TT/CC).
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