Regulation of HIF-1 alpha stability through S-nitrosylation

Li, Fang;Sonveaux, Pierre;Rabbani, Zahid N.;Liu, Shanling;Li, Chuan-Yuan;et.al.
(2007) Molecular Cell — Vol. 26, n° 1, p. 63-74 (2007)

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Authors
  • Li, Fang
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  • Rabbani, Zahid N.
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  • Liu, Shanling
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  • Li, Chuan-Yuan
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Abstract
Hypoxia-inducible factor 1 (HIF-1) is a master transcriptional factor. Under normal oxygen tension, HIF-1 activity is usually suppressed due to the rapid, oxygen-dependent degradation of one of its two subunits, HIF-1 alpha. Here we report that normoxic HIF-1 activity can be upregulated through NO-mediated S-nitrosylation and stabilization of HIF-1 alpha. In murine tumors, exposure to ionizing radiation stimulated the generation of NO in tumor-associated macrophages. As a result, the HIF-1 alpha protein is S-nitrosylated at Cys533 (through "biotin switch" assay) in the oxygen-dependent degradation domain, which prevents its destruction. Importantly, this mechanism appears to be independent of the prolylhydroxylase-based pathway that is involved in oxygen-dependent regulation of HIF-1 alpha. Selective disruption of this S-nitrosylation significantly attenuated both radiation-induced and macrophage-induced activation of HIF-1 alpha. This interaction between NO and HIF-1 sheds new light on their involvement in tumor response to treatment as well as mammalian inflammation process in general.
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Citations

Li, F., Sonveaux, P., Rabbani, Z. N., Liu, S., Yan, B., Huang, Q., Vujaskovic, Z., Dewhirst, M. W., & Li, C.-Y. (2007). Regulation of HIF-1 alpha stability through S-nitrosylation. Molecular Cell, 26(1), 63-74. https://doi.org/10.1016/j.molcel.2007.02.024 (Original work published 2007)