首页> 外文期刊>The Biochemical Journal >Carboxyatractyloside effects on brown-fat mitochondria imply that the adenine nucleotide translocator isoforms ANT1 and ANT2 may be responsible for basal and fatty-acid-induced uncoupling respectively.
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Carboxyatractyloside effects on brown-fat mitochondria imply that the adenine nucleotide translocator isoforms ANT1 and ANT2 may be responsible for basal and fatty-acid-induced uncoupling respectively.

机译:羧苄叶苷对褐脂线粒体的影响暗示腺嘌呤核苷酸易位异构体ANT1和ANT2可能分别负责基础和脂肪酸诱导的解偶联。

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摘要

In brown-fat mitochondria, fatty acids induce thermogenic uncoupling through activation of UCP1 (uncoupling protein 1). However, even in brown-fat mitochondria from UCP1-/- mice, fatty-acid-induced uncoupling exists. In the present investigation, we used the inhibitor CAtr (carboxyatractyloside) to examine the involvement of the ANT (adenine nucleotide translocator) in the mediation of this UCP1-independent fatty-acid-induced uncoupling in brown-fat mitochondria. We found that the contribution of ANT to fatty-acid-induced uncoupling in UCP1-/- brown-fat mitochondria was minimal (whereas it was responsible for nearly half the fatty-acid-induced uncoupling in liver mitochondria). As compared with liver mitochondria, brown-fat mitochondria exhibit a relatively high (UCP1-independent) basal respiration ('proton leak'). Unexpectedly, a large fraction of this high basal respiration was sensitive to CAtr, whereas in liver mitochondria, basal respiration was CAtr-insensitive. Total ANT protein levels were similar in brown-fat mitochondria from wild-type mice and in liver mitochondria, but the level was increased in brown-fat mitochondria from UCP1-/- mice. However, in liver, only Ant2 mRNA was found, whereas in brown adipose tissue, Ant1 and Ant2 mRNA levels were equal. The data are therefore compatible with a tentative model in which the ANT2 isoform mediates fatty-acid-induced uncoupling, whereas the ANT1 isoform may mediate a significant part of the high basal proton leak in brown-fat mitochondria.
机译:在棕色脂肪线粒体中,脂肪酸通过激活UCP1(解偶联蛋白1)诱导热解偶联。但是,即使在UCP1-/-小鼠的棕色脂肪线粒体中,也存在脂肪酸诱导的解偶联。在本研究中,我们使用了抑制剂CAtr(羧基白术苷)来检查ANT(腺嘌呤核苷酸易位子)在这种UCP1独立脂肪酸诱导的褐脂线粒体解偶联中的参与。我们发现,ANT对UCP1-/-棕色脂肪线粒体中脂肪酸诱导的解偶联的贡献极小(而它却是肝脏线粒体中脂肪酸诱导的解偶联的近一半)。与肝线粒体相比,棕脂线粒体表现出相对较高的(独立于UCP1的)基础呼吸(“质子泄漏”)。出乎意料的是,这种高水平的基础呼吸很大一部分对CAtr敏感,而在肝线粒体中,基础呼吸对CAtr不敏感。在野生型小鼠的棕色脂肪线粒体和肝线粒体中,总的ANT蛋白水平相似,但是在UCP1-/-小鼠的棕色脂肪线粒体中,总的ANT蛋白水平升高。然而,在肝脏中,仅发现了Ant2 mRNA,而在棕色脂肪组织中,Ant1和Ant2 mRNA水平相等。因此,该数据与ant2异构体介导脂肪酸诱导的解偶联的暂定模型兼容,而ant1异构体可能介导了棕色脂肪线粒体中高基础质子泄漏的很大一部分。

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