Leigh syndrome is a devastating mitochondrial disease for which there are no proven therapies. We previously showed that breathing chronic, continuous hypoxia can prevent and even reverse neurological disease in the Ndufs4 knockout (KO) mouse model of complex I (CI) deficiency and Leigh syndrome. Here, we show that genetic activation of the hypoxia-inducible factor transcriptional program via any of four different strategies is insufficient to rescue disease. Rather, we observe an age-dependent decline in whole-body oxygen consumption. These mice exhibit brain tissue hyperoxia, which is normalized by hypoxic breathing. Alternative experimental strategies to reduce oxygen delivery, including breathing carbon monoxide (600 ppm in air) or severe anemia, can reverse neurological disease. Therefore, unused oxygen is the most likely culprit in the pathology of this disease. While pharmacologic activation of the hypoxia response is unlikely to alleviate disease in vivo, interventions that safely normalize brain tissue hyperoxia may hold therapeutic potential.
Leigh Syndrome Mouse Model Can Be Rescued by Interventions that Normalize Brain Hyperoxia, but Not HIF Activation.
莱氏综合征小鼠模型可通过使脑高氧正常化的干预措施得到挽救,但不能通过 HIF 激活来挽救
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作者:Jain Isha H, Zazzeron Luca, Goldberger Olga, Marutani Eizo, Wojtkiewicz Gregory R, Ast Tslil, Wang Hong, Schleifer Grigorij, Stepanova Anna, Brepoels Kathleen, Schoonjans Luc, Carmeliet Peter, Galkin Alexander, Ichinose Fumito, Zapol Warren M, Mootha Vamsi K
| 期刊: | Cell Metabolism | 影响因子: | 30.900 |
| 时间: | 2019 | 起止号: | 2019 Oct 1; 30(4):824-832 |
| doi: | 10.1016/j.cmet.2019.07.006 | 种属: | Mouse |
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