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March 1, 1999Journal of Biological Chemistry293 citationsOpen Access

Inhibition of Hypoxia-inducible Factor 1 Activation by Carbon Monoxide and Nitric Oxide

EHEric HuangWWWilliam G. WillmoreJGJie Gu

Key Points

  • This research aims to understand how carbon monoxide and nitric oxide influence HIF-1 activation and oxygen sensing.
  • Conducted dose-dependent experiments with carbon monoxide at 10% and 80% concentrations.
  • Utilized sodium nitroprusside as a nitric oxide donor to assess its effects on HIF-1 activity.
  • Examined the impact on HIF-1alpha protein accumulation and DNA binding in response to hypoxia.
  • Carbon monoxide suppressed HIF-1 activation and Epo mRNA induction in a dose-dependent manner.
  • Nitric oxide similarly inhibited HIF-1 DNA binding by reducing hypoxia-induced accumulation of HIF-1alpha.
  • Both CO and NO targeted the oxygen-dependent degradation domain of HIF-1alpha.

Abstract

It has been proposed that cells sense hypoxia by a heme protein, which transmits a signal that activates the heterodimeric transcription factor hypoxia-inducible factor 1 (HIF-1), thereby inducing a number of physiologically relevant genes such as erythropoietin (Epo). We have investigated the mechanism by which two heme-binding ligands, carbon monoxide and nitric oxide, affect oxygen sensing and signaling. Two concentrations of CO (10 and 80%) suppressed the activation of HIF-1 and induction of Epo mRNA by hypoxia in a dose-dependent manner. In contrast, CO had no effect on the induction of HIF-1 activity and Epo expression by either cobalt chloride or the iron chelator desferrioxamine. The affinity of CO for the putative sensor was much lower than that of oxygen (Haldane coefficient, approximately 0.5). Parallel experiments were done with 100 microM sodium nitroprusside, a nitric oxide donor. Both NO and CO inhibited HIF-1 DNA binding by abrogating hypoxia-induced accumulation of HIF-1alpha protein. Moreover, both NO and CO specifically targeted the internal oxygen-dependent degradation domain of HIF-1alpha, and also repressed the C-terminal transactivation domain of HIF-1alpha. Thus, NO and CO act proximally, presumably as heme ligands binding to the oxygen sensor, whereas desferrioxamine and perhaps cobalt appear to act at a site downstream.

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Cite This Study

Huang et al. (1999) studied this question.

synapsesocial.com/papers/6a11fff9c031bb6829a5b8a5https://doi.org/10.1074/jbc.274.13.9038
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