Hypoxia Signaling Cascade for Erythropoietin Production in Hepatocytes

Author:

Tojo Yutaka123,Sekine Hiroki12,Hirano Ikuo2,Pan Xiaoqing12,Souma Tomokazu2,Tsujita Tadayuki24,Kawaguchi Shin-ichi4,Takeda Norihiko5,Takeda Kotaro6,Fong Guo-Hua6,Dan Takashi4,Ichinose Masakazu3,Miyata Toshio4,Yamamoto Masayuki2,Suzuki Norio1

Affiliation:

1. Division of Interdisciplinary Medical Science, Tohoku University Graduate School of Medicine, Sendai, Japan

2. Department of Medical Biochemistry, Tohoku University Graduate School of Medicine, Sendai, Japan

3. Department of Respiratory Medicine, Tohoku University Graduate School of Medicine, Sendai, Japan

4. Division of Molecular Medicine and Therapy, Tohoku University Graduate School of Medicine, Sendai, Japan

5. Department of Cardiovascular Medicine, Graduate School of Medicine, University of Tokyo, Tokyo, Japan

6. Center for Vascular Biology, Department of Cell Biology, University of Connecticut Health Center, Farmington, Connecticut, USA

Abstract

ABSTRACT Erythropoietin (Epo) is produced in the kidney and liver in a hypoxia-inducible manner via the activation of hypoxia-inducible transcription factors (HIFs) to maintain oxygen homeostasis. Accelerating Epo production in hepatocytes is one plausible therapeutic strategy for treating anemia caused by kidney diseases. To elucidate the regulatory mechanisms of hepatic Epo production, we analyzed mouse lines harboring liver-specific deletions of genes encoding HIF-prolyl-hydroxylase isoforms (PHD1, PHD2, and PHD3) that mediate the inactivation of HIF1α and HIF2α under normal oxygen conditions. The loss of all PHD isoforms results in both polycythemia, which is caused by Epo overproduction, and fatty livers. We found that deleting any combination of two PHD isoforms induces polycythemia without steatosis complications, whereas the deletion of a single isoform induces no apparent phenotype. Polycythemia is prevented by the loss of either HIF2α or the hepatocyte-specific Epo gene enhancer ( EpoHE ). Chromatin analyses show that the histones around EpoHE dissociate from the nucleosome structure after HIF2α activation. HIF2α also induces the expression of HIF3α, which is involved in the attenuation of Epo production. These results demonstrate that the total amount of PHD activity is more important than the specific function of each isoform for hepatic Epo expression regulated by a PHD-HIF2α- EpoHE cascade in vivo .

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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