4.6 Article

Tuning the Transcriptional Response to Hypoxia by Inhibiting Hypoxia-inducible Factor (HIF) Prolyl and Asparaginyl Hydroxylases

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 291, 期 39, 页码 20661-20673

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M116.749291

关键词

erythropoiesis; hydroxylase; hypoxia; hypoxia-inducible factor (HIF); inhibitor; 2-oxoglutarate and ferrous iron dioxygenase; anaemia; metallo-enzyme inhibitor; oxygen sensing; transcriptional regulation

资金

  1. Wellcome Trust [090532/Z/09/Z]
  2. MRC Hub Grant [G0900747 91070]
  3. National Institutes of Health Research (NIHR) [RP-2015-06-004] Funding Source: National Institutes of Health Research (NIHR)
  4. Biotechnology and Biological Sciences Research Council [BB/J003018/1, BB/D011523/1] Funding Source: researchfish
  5. British Heart Foundation [PG/12/33/29546, RG/11/1/28684] Funding Source: researchfish
  6. Cancer Research UK [16016, 18245, 16466] Funding Source: researchfish
  7. Medical Research Council [MC_EX_UU_G1000902, MC_UU_12021/1] Funding Source: researchfish
  8. National Institute for Health Research [RP-2015-06-004] Funding Source: researchfish
  9. BBSRC [BB/J003018/1, BB/D011523/1] Funding Source: UKRI
  10. MRC [MC_UU_12021/1, MC_EX_UU_G1000902] Funding Source: UKRI

向作者/读者索取更多资源

The hypoxia-inducible factor (HIF) system orchestrates cellular responses to hypoxia in animals. HIF is an /-heterodimeric transcription factor that regulates the expression of hundreds of genes in a tissue context-dependent manner. The major hypoxia-sensing component of the HIF system involves oxygen-dependent catalysis by the HIF hydroxylases; in humans there are three HIF prolyl hydroxylases (PHD1-3) and an asparaginyl hydroxylase (factor-inhibiting HIF (FIH)). PHD catalysis regulates HIF levels, and FIH catalysis regulates HIF activity. How differences in HIF hydroxylation status relate to variations in the induction of specific HIF target gene transcription is unknown. We report studies using small molecule HIF hydroxylase inhibitors that investigate the extent to which HIF target gene expression is induced by PHD or FIH inhibition. The results reveal substantial differences in the role of prolyl and asparaginyl hydroxylation in regulating hypoxia-responsive genes in cells. PHD inhibitors with different structural scaffolds behave similarly. Under the tested conditions, a broad-spectrum 2-oxoglutarate dioxygenase inhibitor is a better mimic of the overall transcriptional response to hypoxia than the selective PHD inhibitors, consistent with an important role for FIH in the hypoxic transcriptional response. Indeed, combined application of selective PHD and FIH inhibitors resulted in the transcriptional induction of a subset of genes not fully responsive to PHD inhibition alone. Thus, for the therapeutic regulation of HIF target genes, it is important to consider both PHD and FIH activity, and in the case of some sets of target genes, simultaneous inhibition of the PHDs and FIH catalysis may be preferable.

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