Posttranslational stability of the heme biosynthetic enzyme ferrochelatase is dependent on iron availability and intact iron-sulfur cluster assembly machinery

被引:97
作者
Crooks, Daniel R. [1 ,2 ]
Ghosh, Manik C. [1 ]
Haller, Ronald G. [3 ,4 ,5 ]
Tong, Wing-Hang [1 ]
Rouault, Tracey A. [1 ]
机构
[1] Eunice Kennedy Shriver Natl Inst Child Hlth & Hum, Program Mol Med, Bethesda, MD 20892 USA
[2] Georgetown Univ, Med Ctr, Dept Biochem Mol & Cellular Biol, Washington, DC 20007 USA
[3] Univ Texas SW Med Ctr Dallas, Dept Neurol, Dallas, TX 75390 USA
[4] Vet Adm N Texas Med Ctr, Dallas, TX USA
[5] Inst Exercise & Environm Med, Neuromuscular Ctr, Dallas, TX USA
关键词
ERYTHROPOIETIC PROTOPORPHYRIA; MAMMALIAN FERROCHELATASE; REGULATORY PROTEIN-2; MITOCHONDRIAL LON; 2FE-2S CLUSTER; MESSENGER-RNA; DEFICIENCY; EXPRESSION; MYOPATHY; ISCU;
D O I
10.1182/blood-2009-09-243105
中图分类号
R5 [内科学];
学科分类号
100201 [内科学];
摘要
Mammalian ferrochelatase, the terminal enzyme in the heme biosynthetic pathway, possesses an iron-sulfur [2Fe-2S] cluster that does not participate in catalysis. We investigated ferrochelatase expression in iron-deficient erythropoietic tissues of mice lacking iron regulatory protein 2, in iron-deficient murine erythro-leukemia cells, and in human patients with ISCU myopathy. Ferrochelatase activity and protein levels were dramatically decreased in Irp2(-/-) spleens, whereas ferrochelatase mRNA levels were increased, demonstrating posttranscriptional regulation of ferrochelatase in vivo. Translation of ferrochelatase mRNA was unchanged in iron-depleted murine erythro-leukemia cells, and the stability of mature ferrochelatase protein was also unaffected. However, the stability of newly formed ferrochelatase protein was dramatically decreased during iron deficiency. Ferrochelatase was also severely depleted in muscle biopsies and cultured myoblasts from patients with ISCU myopathy, a disease caused by deficiency of a scaffold protein required for Fe-S cluster assembly. Together, these data suggest that decreased Fe-S cluster availability because of cellular iron depletion or impaired Fe-S cluster assembly causes reduced maturation and stabilization of apoferrochelatase, providing a direct link between Fe-S biogenesis and completion of heme biosynthesis. We propose that decreased heme biosynthesis resulting from impaired Fe-S cluster assembly can contribute to the pathogenesis of diseases caused by defective Fe-S cluster biogenesis. ( Blood. 2010;115:860-869)
引用
收藏
页码:860 / 869
页数:10
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