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Updated: Aug 5, 2026

Mouse Fetal Liver Culture System to Dissect Target Gene Functions at the Early and Late Stages of Terminal Erythropoiesis
Published on: September 9, 2014
MORC2 controls HIF-1α stability via an HDAC4-dependent mechanism to regulate erythropoiesis
Yanfei Tang1,2, Boqi Zhang1,2, Tingting Xue1,2
1Key Laboratory of Marine Drugs, The Ministry of Education of China, School of Medicine and Pharmacy, Ocean University of China, Qingdao 266003, China.
Abstract:
The hypoxia-inducible factor (HIF) signaling pathway is essential for cellular adaptation to low oxygen. Although the canonical PHD-pVHL pathway that mediates HIF-α degradation under normoxia is well established, alternative regulatory mechanisms remain poorly understood. Here, we identify Microrchidia family CW-type zinc-finger 2 (MORC2) as a negative regulator of HIF-α. In zebrafish, CRISPR/Cas9-generated morc2 mutants developed polycythemia, systemic hypoxia, and constitutive activation of the HIF pathway. Mechanistically, MORC2 counteracts histone deacetylase 4 (HDAC4) by competing for HIF-1α binding. Loss of MORC2 enhances HDAC4 recruitment to HIF-1α, reducing acetylation at lysine 629 and preventing proteasomal degradation of HIF-1α. These results define a regulatory mechanism in which MORC2 modulates HIF-1α stability via HDAC4 mediated deacetylation, shedding light on hematopoiesis and HIF-related disorders.
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