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Erythropoietin signaling regulates heme biosynthesis.

eLife (2017-05-30)
Jacky Chung, Johannes G Wittig, Alireza Ghamari, Manami Maeda, Tamara A Dailey, Hector Bergonia, Martin D Kafina, Emma E Coughlin, Catherine E Minogue, Alexander S Hebert, Liangtao Li, Jerry Kaplan, Harvey F Lodish, Daniel E Bauer, Stuart H Orkin, Alan B Cantor, Takahiro Maeda, John D Phillips, Joshua J Coon, David J Pagliarini, Harry A Dailey, Barry H Paw
ABSTRACT

Heme is required for survival of all cells, and in most eukaryotes, is produced through a series of eight enzymatic reactions. Although heme production is critical for many cellular processes, how it is coupled to cellular differentiation is unknown. Here, using zebrafish, murine, and human models, we show that erythropoietin (EPO) signaling, together with the GATA1 transcriptional target, AKAP10, regulates heme biosynthesis during erythropoiesis at the outer mitochondrial membrane. This integrated pathway culminates with the direct phosphorylation of the crucial heme biosynthetic enzyme, ferrochelatase (FECH) by protein kinase A (PKA). Biochemical, pharmacological, and genetic inhibition of this signaling pathway result in a block in hemoglobin production and concomitant intracellular accumulation of protoporphyrin intermediates. Broadly, our results implicate aberrant PKA signaling in the pathogenesis of hematologic diseases. We propose a unifying model in which the erythroid transcriptional program works in concert with post-translational mechanisms to regulate heme metabolism during normal development.

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Sigma-Aldrich
Anticorpo clone 6C5 anti-gliceraldeide-3-fosfato deidrogenasi, clone 6C5, Chemicon®, from mouse
Sigma-Aldrich
Anti-PKA RII Beta Antibody, from rabbit, purified by affinity chromatography