Abstract

Intermittent hypoxia (IH) occurs in many pathological conditions. However, very little is known about the molecular mechanisms associated with IH. Hypoxia-inducible factor 1 (HIF-1) mediates transcriptional responses to continuous hypoxia. In the present study, we investigated whether IH activates HIF-1 and, if so, which signaling pathways are involved. PC12 cells were exposed to either to 20% O2 (non-hypoxic control) or to 60 cycles consisting of 30 s at 1.5% O2, followed by 4 min at 20% O2 (IH). Western blot analysis revealed significant increases in HIF-1alpha protein in nuclear extracts of cells subjected to IH. Expression of a HIF-1-dependent reporter gene was increased 3-fold in cells subjected to IH. Although IH induced the activation of ERK1, ERK2, JNK, PKC-alpha, and PKC-gamma, inhibitors of these kinases and of phosphatidylinositol 3-kinase did not block HIF-1-mediated reporter gene expression induced by IH, indicating that signaling via these kinases was not required. In contrast, addition of the intracellular Ca2+ chelator BAPTA-AM or the Ca2+/calmodulin-dependent (CaM) kinase inhibitor KN93 blocked reporter gene activation in response to IH. CaM kinase activity was increased 5-fold in cells subjected to IH. KN 93 prevented IH-induced transactivation mediated by HIF-1alpha, and its coactivator p300, which was phosphorylated by CaM kinase II in vitro. Expression of the HIF-1-regulated gene encoding tyrosine hydroxylase was induced by IH and this effect was blocked by KN93. These observations suggest that IH induces HIF-1 transcriptional activity via a novel signaling pathway involving CaM kinase.

Highlights

  • Intermittent hypoxia (IH) occurs in many pathological conditions

  • We demonstrate that Hypoxia-inducible factor 1 (HIF-1)␣ protein expression and HIF-1 transcriptional activity are induced in PC12 cells subjected to IH via signal transduction pathways that are distinct from those involved in the response to continuous hypoxia

  • To demonstrate an increase in HIF-1 transcriptional activity, PC12 cells were transfected with reporter gene p2.1, in which the expression of firefly luciferase was driven by a HIF-1-dependent hypoxia response element (HRE) upstream of an SV40 promoter [23]

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Summary

Introduction

Intermittent hypoxia (IH) occurs in many pathological conditions. very little is known about the molecular mechanisms associated with IH. We demonstrate that HIF-1␣ protein expression and HIF-1 transcriptional activity are induced in PC12 cells subjected to IH via signal transduction pathways that are distinct from those involved in the response to continuous hypoxia.

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