首页> 外文期刊>World Journal of Gastroenterology >Effects of hypobaric hypoxia on adenine nucleotide pools, adenine nucleotide transporter activity and protein expression in rat liver.
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Effects of hypobaric hypoxia on adenine nucleotide pools, adenine nucleotide transporter activity and protein expression in rat liver.

机译:低压缺氧对大鼠肝脏腺嘌呤核苷酸库,腺嘌呤核苷酸转运蛋白活性和蛋白质表达的影响。

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AIM: To explore the effect of hypobaric hypoxia on mitochondrial energy metabolism in rat liver. METHODS: Adult male Wistar rats were exposed to a hypobaric chamber simulating 5,000 m high altitude for 23 h every day for 0 (H0), 1 (H1), 5 (H5), 15 (H15) and 30 d (H30) respectively. Rats were sacrificed by decapitation and liver was removed. Liver mitochondria were isolated by differential centrifugation program. The size of adenine nucleotide pool (ATP, ADP, and AMP) in tissue and mitochondria was separated and measured by high performance liquid chromatography (HPLC). The adenine nucleotide transporter (ANT) activity was determined by isotopic technique. The ANT total protein level was determined by Western blot. RESULTS: Compared with H0 group, intra-mitochondrial ATP content decreased in all hypoxia groups. However, the H5 group reached the lowest point (70.6%) (P<0.01) when compared to the control group. Intra-mitochondrial ADP and AMP level showed similar change in all hypoxia groups and were significantly lower than that in H0 group. In addition, extra-mitochondrial ATP and ADP content decreased significantly in all hypoxia groups. Furthermore, extra-mitochondrial AMP in groups H5, H15 and H30 was significantly lower than that in H0 group, whereas H1 group had no marked change compared to the control situation. The activity of ANT in hypoxia groups decreased significantly, which was the lowest in H5 group (55.7%) (P<0.01) when compared to H0 group. ANT activity in H30 group was higher than in H15 group, but still lower than that in H0 group. ANT protein level in H5, H15, H30 groups, compared with H0 group decreased significantly, which in H5 group was the lowest, being 27.1% of that in H0 group (P<0.01). ANT protein level in H30 group was higher than in H15 group, but still lower than in H0 group. CONCLUSION: Hypobaric hypoxia decreases the mitochondrial ATP content in rat liver, while mitochondrial ATP level recovers during long-term hypoxia exposure. The lower level of extra-mitochondrial ATP may be related to the decrease of ANT activity during hypoxia exposure.
机译:目的:探讨低压缺氧对大鼠肝脏线粒体能量代谢的影响。方法:成年雄性Wistar大鼠每天在模拟5,000 m高海拔的低压舱中暴露23 h,分别为0(H0),1(H1),5(H5),15(H15)和30 d(H30)。断头处死大鼠并切除肝脏。通过差速离心程序分离肝线粒体。分离组织和线粒体中腺嘌呤核苷酸库(ATP,ADP和AMP)的大小,并通过高效液相色谱(HPLC)进行测量。通过同位素技术测定腺嘌呤核苷酸转运蛋白(ANT)的活性。 ANT总蛋白水平通过蛋白质印迹法确定。结果:与缺氧组相比,所有缺氧组线粒体内ATP含量均降低。然而,与对照组相比,H5组达到最低点(70.6%)(P <0.01)。线粒体内的ADP和AMP水平在所有缺氧组均表现出相似的变化,并且显着低于H0组。此外,在所有缺氧组中,线粒体ATP和ADP含量均显着降低。此外,H5,H15和H30组线粒体AMP明显低于H0组,而H1组与对照组相比没有明显变化。与低氧组相比,低氧组的ANT活性明显降低,在H5组最低(55.7%)(P <0.01)。 H30组的ANT活性高于H15组,但仍低于H0组。与H0组相比,H5,H15,H30组的ANT蛋白水平显着下降,最低的是H5组,为H0组的27.1%(P <0.01)。 H30组的ANT蛋白水平高于H15组,但仍低于H0组。结论:低压缺氧可降低大鼠肝脏中线粒体ATP的含量,而线粒体ATP水平可在长期缺氧条件下恢复。线粒体ATP的较低水平可能与低氧暴露期间ANT活性的降低有关。

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