Leu-574 of HIF-1α Is Essential for the von Hippel-Lindau (VHL)-mediated Degradation Pathway*

Abstract

Oxygen homeostasis is crucial for a myriad of developmental, physiological, and pathophysiological processes. Hypoxia-inducible factor 1α (HIF-1α) plays a pivotal role in response to hypoxia by transcriptionally activating target genes involving oxygen uptake, transport, delivery, and consumption. HIF-1α activity is regulated primarily through the ubiquitin-proteasome degradation pathway, which targets the oxygen-dependent degradation domain (ODD) of HIF-1α. In particular, the von Hippel-Lindau (VHL) protein complex, an E3 ubiquitin ligase, binds to the ODD upon hydroxylation of HIF-1α Pro-564. Here, we show that in vivo VHL interacts with the N-terminal as well as the C-terminal ODD independently, supporting the notion of functional redundancy within the ODD. Moreover, we demonstrate that Leu-574 of HIF-1α is essential for VHL binding to the C-terminal ODD. Despite the presence of Pro-564, deletion or mutation of Leu-574 resulted in a loss of VHL binding and a gain of protein stability. Furthermore, the identification of Leu-574 redefines the N-terminal activation domain of HIF-1α to be constitutively active. Taken together, this study provides new insight into the mechanisms underlying VHL-mediated HIF-1α degradation and transcriptional activation, and a molecular basis for drug targeting.

  • Abbreviations:
    HIF-1α
    hypoxia-inducible factor 1α
    ODD
    oxygen-dependent degradation domain
    VHL
    von Hippel-Lindau
    HA
    hemagglutinin
    NAD
    N-terminal activation domain
    CAD
    C-terminal activation domain
    • Received July 19, 2002.
    • Revision received August 16, 2002.
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    This Article

    1. The Journal of Biological Chemistry 277, 41750-41755.
    1. All Versions of this Article:
      1. M207280200v1
      2. 277/44/41750 (most recent)

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