DNA binding properties of the Ah receptor in wild-type and variant mouse hepatoma cells

J Piskorska-Pliszczynska1, V Morrison, T Zacharewski

  • 1Department of Physiology and Pharmacology, College of Veterinary Medicine, Texas A&M University, College Station 77843-4466.

Insights

This study investigated how the aryl hydrocarbon (Ah) receptor complex transforms to activate CYP1A1 gene transcription. Class II mutant cells, lacking a factor for receptor transformation, fail to respond to dioxin (TCDD).

Area of Science:

  • Molecular Biology
  • Toxicology
  • Cell Biology

Background:

  • Mouse hepatoma Hepa 1c1c7 cells and mutants are models for CYP1A1 gene induction by 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD).
  • The aryl hydrocarbon (Ah) receptor mediates cellular responses to TCDD.

Purpose of the Study:

  • To elucidate the molecular mechanism of Ah receptor complex transformation and its role in CYP1A1 gene induction.
  • To identify defects in nonresponsive mutant cell lines.

Main Methods:

  • Utilized DNA-Sepharose chromatography to assess receptor binding affinity.
  • Employed gel shift assays to detect receptor-dioxin responsive element (DRE) complex formation.
  • Compared wild-type Hepa 1c1c7 cells with class I (TAOc1BPrcl) and class II (BPrcl) mutant cell lines.

Main Results:

  • Wild-type Ah receptor transformed into a DNA-binding form after incubation in high salt.
  • Class I and II mutants showed defective receptor transformation and DNA binding.
  • Class II mutant cytosol, when combined with class I cytosol, restored receptor transformation and DNA binding.

Conclusions:

  • Class II mutant cells' unresponsiveness to TCDD is due to a defect in factors required for cytosolic Ah receptor complex transformation.
  • A factor present in class I mutant cytosol is essential for the transformation of the liganded Ah receptor.

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