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Uroporphyria in the Cyp1a2-/- mouse
John D Phillips1, James P Kushner, Hector A Bergonia
1University of Utah School of Medicine, Department of Internal Medicine, Division of Hematology, Salt Lake City, UT 84132, USA. john.phillips@hsc.utah.edu
Abstract:
Cytochrome P4501A2 (Cyp1a2) is important in the development of uroporphyria in mice, a model of porphyria cutanea tarda in humans. Heretofore, mice homozygous for the Cyp1a2-/- mutation do not develop uroporphyria with treatment regimens that result in uroporphyria in wild-type mice. Here we report uroporphyria development in Cyp1a2-/- mice additionally null for both alleles of the hemochromatosis (Hfe) gene and heterozygous for deletion of the uroporphyrinogen decarboxylase (Urod) gene (genotype: Cyp1a2-/-;Hfe-/-;Urod+/-), demonstrating that upon adding porphyria-predisposing genetic manipulations, Cyp1a2 is not essential. Cyp1a2-/-;Hfe-/-;Urod+/- mice were treated with various combinations of an iron-enriched diet, parenteral iron-dextran, drinking water containing δ-aminolevulinic acid and intraperitoneal Aroclor 1254 (a polychlorinated biphenyl mixture) and analyzed for uroporphyrin accumulation. Animals fed an iron-enriched diet alone did not develop uroporphyria but uroporphyria developed with all treatments that included iron supplementation and δ-aminolevulinic acid, even with a regimen without Aroclor 1254. Hepatic porphyrin levels correlated with low UROD activity and high levels of an inhibitor of UROD but marked variability in the magnitude of the porphyric response was present in all treatment groups. Gene expression profiling revealed no major differences between genetically identical triple cross mice exhibiting high and low magnitude porphyric responses from iron-enriched diet and iron-dextran supplementation, and δ-aminolevulinic acid. Even though the variation in porphyric response did not parallel the hepatic iron concentration, the results are compatible with the presence of a Cyp1a2-independent, iron-dependent pathway for the generation of uroporphomethene, the UROD inhibitor required for the expression of uroporphyria in mice and PCT in humans.
Insights
Cytochrome P4501A2 (Cyp1a2) is not essential for developing uroporphyria in mice when genetic factors like hemochromatosis (Hfe) and uroporphyrinogen decarboxylase (Urod) are manipulated, revealing an iron-dependent pathway.
Area of Science:
- Biochemistry
- Genetics
- Toxicology
Background:
- Cytochrome P4501A2 (Cyp1a2) plays a role in uroporphyria development in mice, a model for human porphyria cutanea tarda.
- Mice lacking Cyp1a2 typically do not develop uroporphyria under standard conditions.
Purpose of the Study:
- To investigate if Cyp1a2 is essential for uroporphyria development in mice with combined genetic predispositions.
- To explore the role of iron and other factors in triggering uroporphyria in genetically modified mice.
Main Methods:
- Generation of triple mutant mice (Cyp1a2-/-;Hfe-/-;Urod+/-).
- Treatment of mice with iron-enriched diets, parenteral iron-dextran, δ-aminolevulinic acid, and Aroclor 1254.
- Analysis of uroporphyrin accumulation and UROD activity.
Main Results:
- Uroporphyria developed in Cyp1a2-/-;Hfe-/-;Urod+/- mice treated with iron and δ-aminolevulinic acid, irrespective of Aroclor 1254.
- Hepatic porphyrin levels correlated with low UROD activity and high levels of a UROD inhibitor.
- Variability in porphyric response was observed, independent of major gene expression differences or hepatic iron concentration.
Conclusions:
- Cyp1a2 is not essential for uroporphyria development when specific genetic manipulations (Hfe, Urod) are present.
- An iron-dependent pathway, independent of Cyp1a2, likely contributes to the generation of the UROD inhibitor, driving uroporphyria.

