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棕色脂肪组织线粒体:GDP 和脂肪酸的调节取决于呼吸底物。

Brown adipose tissue mitochondria: modulation by GDP and fatty acids depends on the respiratory substrates.

机构信息

Instituto de Bioquímica Médica, Laboratório de Bioenergética, Programa de Bioquímica e Biofísica Celular, Centro de Ciências da Saúde, Universidade Federal do Rio de Janeiro, Cidade Universitária, RJ, 21941-902, Brazil.

出版信息

Biosci Rep. 2012 Feb;32(1):53-9. doi: 10.1042/BSR20100144.

Abstract

The UCP1 [first UCP (uncoupling protein)] that is found in the mitochondria of brown adipocytes [BAT (brown adipose tissue)] regulates the heat production, a process linked to non-shivering thermogenesis. The activity of UCP1 is modulated by GDP and fatty acids. In this report, we demonstrate that respiration and heat released by BAT mitochondria vary depending on the respiratory substrate utilized and the coupling state of the mitochondria. It has already been established that, in the presence of pyruvate/malate, BAT mitochondria are coupled by faf-BSA (fatty-acid-free BSA) and GDP, leading to an increase in ATP synthesis and mitochondrial membrane potential along with simultaneous decreases in both the rates of respiration and heat production. Oleate restores the uncoupled state, inhibiting ATP synthesis and increasing the rates of both respiration and heat production. We now show that in the presence of succinate: (i) the rates of uncoupled mitochondria respiration and heat production are five times slower than in the presence of pyruvate/malate; (ii) faf-BSA and GDP accelerate heat and respiration as a result and, in coupled mitochondria, these two rates are accelerated compared with pyruvate/malate; (iii) in spite of the differences in respiration and heat production noted with the two substrates, the membrane potential and the ATP synthesized were the same; and (iv) oleate promoted a decrease in heat production and respiration in coupled mitochondria, an effect different from that observed using pyruvate/malate. These effects are not related to the production of ROS (reactive oxygen species). We suggest that succinate could stimulate a new route to heat production in BAT mitochondria.

摘要

UCP1[第一个 UCP(解偶联蛋白)]存在于棕色脂肪组织(BAT)的线粒体中,调节热量产生,这一过程与不颤抖的生热作用有关。UCP1 的活性受 GDP 和脂肪酸的调节。在本报告中,我们证明 BAT 线粒体的呼吸和热量释放取决于所利用的呼吸底物和线粒体的偶联状态。已经确定,在存在丙酮酸/苹果酸的情况下,BAT 线粒体通过 faf-BSA(无脂肪酸 BSA)和 GDP 偶联,导致 ATP 合成和线粒体膜电位增加,同时呼吸和产热速率降低。油酸恢复解偶联状态,抑制 ATP 合成并增加呼吸和产热速率。我们现在表明,在存在琥珀酸盐的情况下:(i)未偶联线粒体呼吸和产热的速率比存在丙酮酸/苹果酸时慢五倍;(ii)faf-BSA 和 GDP 加速了热量和呼吸,并且在偶联的线粒体中,这两个速率比丙酮酸/苹果酸更快;(iii)尽管两种底物的呼吸和产热存在差异,但膜电位和合成的 ATP 是相同的;(iv)油酸促进偶联线粒体的产热和呼吸减少,这与使用丙酮酸/苹果酸观察到的效果不同。这些影响与 ROS(活性氧)的产生无关。我们认为琥珀酸盐可以刺激 BAT 线粒体产生热量的新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5947/3198502/55b0045a62db/bsr269i001.jpg

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