Hypoxia‐inducedBNIP3expression and mitophagy:in vivocomparison of the rat and the hypoxia‐tolerant mole rat,Spalax ehrenbergi
- 2 March 2009
- journal article
- research article
- Published by Wiley in The FASEB Journal
- Vol. 23 (7), 2327-2335
- https://doi.org/10.1096/fj.08-122978
Abstract
The blind subterranean mole rat of the Spalax ehrenbergi superspecies is an excellent animal model for hypoxic tolerance. Unique physiological, functional, and gene structure changes allow Spalax species to survive lower oxygen levels than most terrestrial animals. BNIP3, an HIF-1 dependent hypoxia-response gene, has a proapoptotic function; however, expression is suppressed in many types of cancers. Under hypoxic conditions, BNIP3 also functions as a mediator of mitochondrial autophagy, a survival adaptation to control ROS production and DNA damage. Using real-time PCR and Western blotting, we investigated the impact of hypoxia on BNIP3 expression and mitophagy, in the skeletal muscle and heart, of the Rattus and two Spalax species. BNIP3 transcript, as well as protein levels, increased to significantly higher levels under hypoxia in Rattus tissues, with smaller changes in Spalax. Mitophagy was correlated with BNIP3 expression in the heart with an inverse correlation to hypoxia tolerance. A dense network of vessels in Spalax muscle may offer protection from physiological hypoxia, while the response in Rattus reflects the increase of hypoxic stress. In Spalax tissues, as in many cancers, BNIP3 expression and mitophagy are significantly less affected by hypoxia. Similar mechanisms, beneficial to organisms adapted to stressful environments, may also confer malignant cells with survival features. Understanding the molecular basis of such adaptations may enhance development of new therapeutic modalities.—Band, M., Joel, A., Hernandez, A., Avivi, A. Hypoxia-induced BNIP3 expression and mitophagy: in vivo comparison of the rat and the hypoxia-tolerant mole rat, Spalax ehrenbergi.Keywords
Funding Information
- United States - Israel Binational Science Foundation (2005346)
This publication has 44 references indexed in Scilit:
- Mitochondrial Autophagy Is an HIF-1-dependent Adaptive Metabolic Response to HypoxiaJournal of Biological Chemistry, 2008
- The Cell Cycle Factor E2F-1 Activates Bnip3 and the Intrinsic Death Pathway in Ventricular MyocytesCirculation Research, 2008
- The role of the hypoxia-inducible BH3-only proteins BNIP3 and BNIP3L in cancerCancer and Metastasis Reviews, 2007
- An extracellular region of the erythropoietin receptor of the subterranean blind mole rat Spalax enhances receptor maturationProceedings of the National Academy of Sciences, 2007
- BNIP3 Is an RB/E2F Target Gene Required for Hypoxia-Induced AutophagyMolecular and Cellular Biology, 2007
- The Interplay between Pro-Death and Pro-Survival Signaling Pathways in Myocardial Ischemia/Reperfusion Injury: Apoptosis Meets AutophagyCardiovascular Drugs and Therapy, 2006
- P53 in blind subterranean mole rats – loss-of-function versus gain-of-function activities on newly cloned Spalax target genesOncogene, 2006
- The role of autophagy in cancer development and response to therapyNature Reviews Cancer, 2005
- Haptoglobin DNA polymorphism in subterranean mole rats of the Spalax ehrenbergi superspecies in IsraelHeredity, 1989
- The myoglobin of rodents:Lagostomus maximus (viscacha) andSpalax ehrenbergi (mole rat)Protein Journal, 1984