Hypoxia induces rapid, STAT3 and ROS dependent, mitochondrial translocation of RelA(p65) and IκBα

Biosci Rep. 2019 Sep 16;39(9):BSR20192101. doi: 10.1042/BSR20192101. Print 2019 Sep 30.

Abstract

The nuclear factor-κB (NF-κB) family of transcription factors can directly or indirectly regulate many important areas of biology, including immunity, inflammation and cell survival. One intriguing aspect of NF-κB crosstalk with other cell signalling pathways is its regulation of mitochondrial biology, including biogenesis, metabolism and apoptosis. In addition to regulating the expression of mitochondrial genes encoded in the nucleus, NF-κB signalling components are also found within mitochondria themselves and associated with mitochondrial DNA. However, complete biochemical analysis of mitochondrial and sub-mitochondrial localisation of all NF-κB subunits has not been undertaken. Here, we show that only the RelA NF-κB subunit and its inhibitor IκBα reside within mitochondria, whilst p50 is found in the endoplasmic reticulum (ER). Fractionation of mitochondria revealed that only RelA was found in the mitoplast, the location of the mtDNA. We demonstrate that hypoxia leads to a very rapid but transient accumulation of RelA and IκBα in mitochondria. This effect required reactive oxygen species (ROS) but was not dependent on the hypoxia sensing transcription factor subunit HIF1α or intracellular Ca2+ release. We also observed rapid mitochondrial localisation of transcription factor STAT3 following hypoxia. Inhibition of STAT3 blocked RelA and IκBα mitochondrial localisation revealing a previously unknown aspect of crosstalk between these key cellular regulators.

Keywords: hypoxia; mitochondria; nuclear factor kappaB; reactive oxygen species.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Calcium / metabolism
  • Cell Hypoxia / genetics
  • DNA, Mitochondrial / genetics
  • Endoplasmic Reticulum / genetics
  • HEK293 Cells
  • Humans
  • Hypoxia-Inducible Factor 1, alpha Subunit / genetics
  • MCF-7 Cells
  • Mitochondria / genetics*
  • Mitochondria / metabolism
  • NF-KappaB Inhibitor alpha / genetics*
  • NF-kappa B / genetics*
  • Reactive Oxygen Species / metabolism
  • STAT3 Transcription Factor / genetics*
  • Transcription Factor RelA / genetics*

Substances

  • DNA, Mitochondrial
  • HIF1A protein, human
  • Hypoxia-Inducible Factor 1, alpha Subunit
  • NF-kappa B
  • RELA protein, human
  • Reactive Oxygen Species
  • STAT3 Transcription Factor
  • Transcription Factor RelA
  • NF-KappaB Inhibitor alpha
  • Calcium