Na Un, Yu Wendou, Cox James, Bricker Daniel K, Brockmann Knut, Rutter Jared, Thummel Carl S, Winge Dennis R
Department of Medicine, University of Utah Health Sciences Center 5C426 School of Medicine, 30 North 1900 East, Salt Lake City, UT 84132-2408, USA; Department of Biochemistry, University of Utah, 15 North Medical Drive East, Salt Lake City, UT 84112-5650, USA.
Department of Human Genetics, University of Utah, 15 North 2030 East, Salt Lake City, UT 84112-5330, USA.
Cell Metab. 2014 Aug 5;20(2):253-66. doi: 10.1016/j.cmet.2014.05.014. Epub 2014 Jun 19.
Disorders arising from impaired assembly of succinate dehydrogenase (SDH) result in a myriad of pathologies, consistent with its unique role in linking the citric acid cycle and electron transport chain. In spite of this critical function, however, only a few factors are known to be required for SDH assembly and function. We show here that two factors, Sdh6 (SDHAF1) and Sdh7 (SDHAF3), mediate maturation of the FeS cluster SDH subunit (Sdh2/SDHB). Yeast and Drosophila lacking SDHAF3 are impaired in SDH activity with reduced levels of Sdh2. Drosophila lacking the Sdh7 ortholog SDHAF3 are hypersensitive to oxidative stress and exhibit muscular and neuronal dysfunction. Yeast studies revealed that Sdh6 and Sdh7 act together to promote Sdh2 maturation by binding to a Sdh1/Sdh2 intermediate, protecting it from the deleterious effects of oxidants. These studies in yeast and Drosophila raise the possibility that SDHAF3 mutations may be associated with idiopathic SDH-associated diseases.
由琥珀酸脱氢酶(SDH)组装受损引起的疾病会导致多种病理状况,这与其在连接柠檬酸循环和电子传递链中的独特作用相一致。然而,尽管有这一关键功能,但已知仅少数因子是SDH组装和功能所必需的。我们在此表明,两个因子Sdh6(SDHAF1)和Sdh7(SDHAF3)介导铁硫簇SDH亚基(Sdh2/SDHB)的成熟。缺乏SDHAF3的酵母和果蝇的SDH活性受损,Sdh2水平降低。缺乏Sdh7直系同源物SDHAF3的果蝇对氧化应激高度敏感,并表现出肌肉和神经功能障碍。酵母研究表明,Sdh6和Sdh7共同作用,通过与Sdh1/Sdh2中间体结合来促进Sdh2成熟,保护其免受氧化剂的有害影响。这些在酵母和果蝇中的研究增加了SDHAF3突变可能与特发性SDH相关疾病有关的可能性。