» Articles » PMID: 1184741

Heme Synthetase Deficiency in Human Protoporphyria. Demonstration of the Defect in Liver and Cultured Skin Fibroblasts

Overview
Journal J Clin Invest
Specialty General Medicine
Date 1975 Nov 1
PMID 1184741
Citations 50
Authors
Affiliations
Soon will be listed here.
Abstract

The final step in heme biosynthesis is chelation of porphyrin with Fe++ catalyzed by the mitochondrial enzyme heme synthetase. We have employed a sensitive radiochemical assay for this enzyme, using 59Fe and deuteroporphyrin or protoporphyrin as substrates. In this method iron is maintained in the ferrous state, oxygen is excluded from the incubation system, and labeled heme product is extracted into ethyl acetate. This assay has been used to measure the activity of heme synthetase in homogenates of liver, obtained by needle biopsy, and in sonicates of human skin fibroblasts, cultured in vitro. In addition, activity of the first enzyme of the heme synthetic pathway, delta-aminolevulinic acid synthetase, has been measured in fibroblast lysates. Lysates of fibroblasts from eight patients with protoporphyria had activities of delta-aminolevulinic acid synthetase which did not differ significantly from those of eight normal fibroblast lines, whereas activity of heme synthetase, with either deuteroporphyrin or protoporphyrin as substrate, was markedly decreased in sonicates of skin fibroblasts from these patients, the mean being 8% of control with deuteroporphyrin and 14% with protoporphyrin as substrate. In homogenates of liver from five patients with protoporphyria, activity of heme synthetase was also significantly less than that found in six patients without prophyria, the mean being 13% of control with protoporphyrin as substrate. These results provide evidence that decreased activity of heme synthetase is the basic defect in the heme synthetic pathway in protoporphyria. This deficiency is probably responsible for protoporphyrin accumulation and hence the biochemical and clinical features observed in protoporphyria.

Citing Articles

Illuminating Dersimelagon: A Novel Agent in the Treatment of Erythropoietic Protoporphyria and X-Linked Protoporphyria.

Madigan K, Rudnick S, Agnew M, Urooj N, Bonkovsky H Pharmaceuticals (Basel). 2024; 17(1).

PMID: 38256864 PMC: 10819203. DOI: 10.3390/ph17010031.


How I treat erythropoietic protoporphyria and X-linked protoporphyria.

Leaf R, Dickey A Blood. 2023; 141(24):2921-2931.

PMID: 36898083 PMC: 10646811. DOI: 10.1182/blood.2022018688.


Assessment of Solar Filters for Erythropoietic Protoporphyria in the Action Spectrum of Protoporphyrin IX.

Sernicola A, Cama E, Pelizzo M, Tessarolo E, Nicolli A, Viero G Front Med (Lausanne). 2022; 8:796884.

PMID: 34988101 PMC: 8720878. DOI: 10.3389/fmed.2021.796884.


Strong correlation of ferrochelatase enzymatic activity with Mitoferrin-1 mRNA in lymphoblasts of patients with protoporphyria.

Phillips J, Farrell C, Wang Y, Singal A, Anderson K, Balwani M Mol Genet Metab. 2018; 128(3):391-395.

PMID: 30391163 PMC: 7328821. DOI: 10.1016/j.ymgme.2018.10.005.


The multifaceted contributions of mitochondria to cellular metabolism.

Spinelli J, Haigis M Nat Cell Biol. 2018; 20(7):745-754.

PMID: 29950572 PMC: 6541229. DOI: 10.1038/s41556-018-0124-1.


References
1.
TENHUNEN R, MARVER H, Schmid R . Microsomal heme oxygenase. Characterization of the enzyme. J Biol Chem. 1969; 244(23):6388-94. View

2.
McIntyre N, Pearson A, Allan D, Craske S, West G, Moore M . Hepatic delta-aminolaevulinic acid synthetase in an attack of hereditary coproporphyria and during remission. Lancet. 1971; 1(7699):560-4. DOI: 10.1016/s0140-6736(71)91161-5. View

3.
Bonkowsky H, TSCHUDY D, Weinbach E, EBERT P, Doherty J . Porphyrin synthesis and mitochondrial respiration in acute intermittent porphyria: studies using cultured human fibroblasts. J Lab Clin Med. 1975; 85(1):93-102. View

4.
Sassa S, Granick S, Bickers D, Bradlow H, Kappas A . A microassay for uroporphyrinogen I synthase, one of three abnormal enzyme activities in acute intermittent porphyria, and its application to the study of the genetics of this disease. Proc Natl Acad Sci U S A. 1974; 71(3):732-6. PMC: 388087. DOI: 10.1073/pnas.71.3.732. View

5.
KLATSKIN G, Bloomer J . Birefringence of hepatic pigment deposits in erythropoietic protoporphyria. Specificity of polarization microscopy in the identification of hepatic protoporphyrin deposits. Gastroenterology. 1974; 67(2):294-302. View