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Abundance of Plasma Antioxidant Proteins Confers Tolerance to Acute Hypobaric Hypoxia Exposure

机译:血浆抗氧化蛋白丰富可以耐受急性低压缺氧

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摘要

Padhy, Gayatri, Niroj Kumar Sethy, Lilly Ganju, and Kalpana Bhargava. Abundance of plasma antioxidant proteins confers tolerance to acute hypobaric hypoxia exposure. High Alt Med Biol 14:289–297, 2013—Systematic identification of molecular signatures for hypobaric hypoxia can aid in better understanding of human adaptation to high altitude. In an attempt to identify proteins promoting hypoxia tolerance during acute exposure to high altitude, we screened and identified hypoxia tolerant and susceptible rats based on hyperventilation time to a simulated altitude of 32,000 ft (9754 m). The hypoxia tolerance was further validated by estimating 8-isoprotane levels and protein carbonyls, which revealed that hypoxia tolerant rats possessed significant lower plasma levels as compared to susceptible rats. We used a comparative plasma proteome profiling approach using 2-dimensional gel electrophoresis (2-DGE) combined with MALDI TOF/TOF for both groups, along with an hypoxic control group. This resulted in the identification of 19 differentially expressed proteins. Seven proteins (TTR, GPx-3, PON1, Rab-3D, CLC11, CRP, and Hp) were upregulated in hypoxia tolerant rats, while apolipoprotein A-I (APOA1) was upregulated in hypoxia susceptible rats. We further confirmed the consistent higher expression levels of three antioxidant proteins (PON1, TTR, and GPx-3) in hypoxia-tolerant animals using ELISA and immunoblotting. Collectively, these proteomics-based results highlight the role of antioxidant enzymes in conferring hypoxia tolerance during acute hypobaric hypoxia. The expression of these antioxidant enzymes could be used as putative biomarkers for screening altitude adaptation as well as aiding in better management of altered oxygen pathophysiologies.
机译:Padhy,Gayatri,Niroj Kumar Sethy,Lilly Ganju和Kalpana Bhargava。血浆抗氧化剂蛋白丰富,可耐受急性低压缺氧。 High Alt Med Biol 14:289–297,2013年–系统识别低压氧不足的分子特征可以帮助人们更好地了解人类对高海拔的适应性。为了鉴定在急性暴露于高海拔条件下能促进耐缺氧的蛋白质,我们根据过度通风的时间筛选并鉴定了耐缺氧的易感大鼠,模拟的海拔高度为32,000 ft(9754 m)。通过估计8-异丙烷水平和蛋白羰基化合物进一步验证了低氧耐受性,这表明与易感大鼠相比,低氧耐受性大鼠的血浆水平明显降低。对于两组,以及缺氧对照组,我们使用了比较血浆蛋白组分析的方法,该方法采用了二维凝胶电泳(2-DGE)结合MALDI TOF / TOF。这导致鉴定出19种差异表达的蛋白质。在耐缺氧的大鼠中,七种蛋白质(TTR,GPx-3,PON1,Rab-3D,CLC11,CRP和Hp)上调,而载脂蛋白A-I(APOA1)在易缺氧的大鼠中被上调。我们进一步使用ELISA和免疫印迹法证实了耐缺氧动物中三种抗氧化蛋白(PON1,TTR和GPx-3)的一致较高表达水平。总的来说,这些基于蛋白质组学的结果强调了抗氧化酶在急性低压缺氧过程中赋予耐缺氧能力的作用。这些抗氧化酶的表达可以用作推定高度适应性的生物标志物,并有助于更好地管理改变的氧病理生理学。

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