Ojano-Dirain C, Pumford N R, Iqbal M, Wing T, Cooper M, Bottje W G
Department of Poultry Science, Center of Excellence for Poultry Science, University of Arkansas, Fayetteville, Arkansas 72701, USA.
Poult Sci. 2005 Dec;84(12):1926-34. doi: 10.1093/ps/84.12.1926.
Increased H2O2 production, indicating higher oxidative stress, and lower mitochondrial function was previously observed in duodenal mitochondria isolated from broilers with low feed efficiency (FE, gain:feed). Thus, experiments were conducted to 1) evaluate the activity of the respiratory chain complexes (complexes I to V) and 2) assess protein oxidation and mitochondrial protein expression in broilers with low and high FE. Duodenal mitochondria were isolated from broiler breeders with low (0.52 +/- 0.01) and high (0.68 +/- 0.01) FE (n = 8/group). Respiratory chain complex activities were measured spectrophotometrically, whereas mitochondrial protein expression and protein oxidation (carbonyls) were assessed with Western blots. The activities of all complexes, except complex IV, were lower in the low FE compared with high FE mitochondria, whereas protein carbonyl levels were higher in low FE mitochondria. Steady-state levels of 6 out of 7 nuclear-encoded respiratory chain subunits [70S(FP), core I, core II, cytochrome c (cyt c)1, iron-sulfur protein (ISP), and ATPase-alpha] were higher, whereas 3 out of 6 mitochondrial-encoded subunits (ND4, ND6-C, and COX II) were lower in the low FE group, suggesting that sensitivity of mitochondrial proteins to H2O2 or oxidation varies. The general reduction in complex activity and differential protein expression concomitant with higher oxidized proteins in low FE mitochondria suggest that oxidative stress could be contributing to the lower mitochondrial function observed in low FE duodenal mitochondria.
先前在从饲料效率低(FE,增重:饲料)的肉鸡中分离出的十二指肠线粒体中观察到过氧化氢生成增加,这表明氧化应激更高,且线粒体功能更低。因此,进行了实验以:1)评估呼吸链复合物(复合物I至V)的活性;2)评估低FE和高FE肉鸡中的蛋白质氧化和线粒体蛋白表达。从FE低(0.52±0.01)和高(0.68±0.01)的肉种鸡中分离十二指肠线粒体(每组n = 8)。用分光光度法测量呼吸链复合物活性,而用蛋白质印迹法评估线粒体蛋白表达和蛋白质氧化(羰基)。与高FE线粒体相比,低FE线粒体中除复合物IV外的所有复合物的活性均较低,而低FE线粒体中的蛋白质羰基水平较高。7个核编码的呼吸链亚基中的6个[70S(FP)、核心I、核心II、细胞色素c(cyt c)1、铁硫蛋白(ISP)和ATP酶-α]的稳态水平较高,而低FE组中6个线粒体编码的亚基中的3个(ND4、ND6-C和COX II)较低,这表明线粒体蛋白对过氧化氢或氧化的敏感性有所不同。低FE线粒体中复合物活性普遍降低、蛋白质表达存在差异以及氧化蛋白含量较高,这表明氧化应激可能是低FE十二指肠线粒体中观察到的线粒体功能较低的原因。