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Updated: Feb 11, 2026

Co-immunoprecipitation Assay for Studying Functional Interactions Between Receptors and Enzymes
Published on: September 28, 2018
E4bp4 regulates carboxylesterase 2 enzymes through repression of the nuclear receptor Rev-erbα in mice
Mengjing Zhao1, Tianpeng Zhang2, Fangjun Yu2
1Research Center for Biopharmaceutics and Pharmacokinetics, College of Pharmacy, Jinan University, Guangzhou, China; Guangdong Province Key Laboratory of Pharmacodynamic Constituents of TCM and New Drugs Research, Jinan University, Guangzhou, China.
Abstract:
Carboxylesterases (CES) are a family of phase I enzymes that play an important role in xenobiotic clearance and lipid metabolism. Here, we investigate a potential role of E4 promoter-binding protein 4 (E4bp4) in regulation of Ces and CPT-11 (irinotecan, a first-line drug for treating colorectal cancer) pharmacokinetics in mice. Mouse hepatoma Hepa-1c1c7 cells were transfected with Rev-erbα expression plasmid or siRNA targeting E4bp4. The relative mRNA and protein levels of Ces enzymes in the cells or the livers of wild-type and E4bp4-deficient (E4bp4-/-) mice were determined by qPCR and Western blotting, respectively. Transcriptional regulation of Ces by E4bp4/Rev-erbα were investigated using luciferase reporter, mobility shift, and co-immunoprecipitation (Co-IP) assays. Pharmacokinetic studies were performed with wild-type and E4bp4-/- mice after intraperitoneal injection of CPT-11. E4bp4 ablation down-regulated an array of hepatic Ces genes in mice. E4bp4-/- mice also showed reduced Ces-mediated metabolism and elevated systemic exposure of CPT-11, a well-known Ces substrate. Consistently, E4bp4 knockdown reduced the expression of Ces genes (Ces2b, Ces2e and Ces2f) in Hepa-1c1c7 cells. Furthermore, Rev-erbα repressed the transcription of Ces2b, whereas E4bp4 antagonized this repressive action. Co-IP experiment confirmed a direct interaction between E4bp4 and Rev-erbα. Through a combination of promoter analysis and mobility shift assays, we demonstrated that Rev-erbα trans-repressed Ces (Ces2b) through its specific binding to the -767 to-754 bp promoter region. In conclusion, E4bp4 regulates Ces enzymes through inhibition of the transrepression activity of Rev-erbα, thereby impacting the metabolism and pharmacokinetics of Ces substrates.
Insights
E4 promoter-binding protein 4 (E4bp4) regulates carboxylesterases (CES) by inhibiting Rev-erbα
Area of Science:
- Biochemistry and Pharmacology
- Enzyme kinetics and drug metabolism
- Molecular biology and gene regulation
Background:
- Carboxylesterases (CES) are crucial phase I enzymes involved in xenobiotic clearance and lipid metabolism.
- CPT-11 (irinotecan) is a vital chemotherapeutic agent for colorectal cancer, whose efficacy depends on its metabolic clearance.
- Understanding the regulation of CES is essential for optimizing drug efficacy and minimizing toxicity.
Purpose of the Study:
- To investigate the role of E4 promoter-binding protein 4 (E4bp4) in regulating CES gene expression.
- To elucidate the mechanism by which E4bp4 influences the pharmacokinetics of CPT-11.
- To determine the interaction between E4bp4 and Rev-erbα in the transcriptional control of CES.
Main Methods:
- Gene expression analysis using qPCR and Western blotting in cell lines and E4bp4-deficient mice.
- Luciferase reporter assays, mobility shift assays, and co-immunoprecipitation (Co-IP) to study transcriptional regulation and protein interactions.
- Pharmacokinetic studies in wild-type and E4bp4-deficient mice following CPT-11 administration.
Main Results:
- E4bp4 deficiency led to down-regulation of hepatic CES genes and reduced CES-mediated metabolism of CPT-11.
- E4bp4 knockdown decreased the expression of specific CES genes (Ces2b, Ces2e, Ces2f) in hepatoma cells.
- Rev-erbα repressed CES2b transcription, an effect antagonized by E4bp4 through direct interaction and promoter binding.
Conclusions:
- E4 promoter-binding protein 4 (E4bp4) plays a significant role in regulating carboxylesterases (CES) gene expression.
- E4bp4 modulates CES activity by inhibiting the transrepression function of Rev-erbα.
- This regulatory mechanism impacts the metabolism and pharmacokinetics of CES substrates like CPT-11.
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