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Pyruvate dehydrogenase complex plays a central role in brown adipocyte energy expenditure and fuel utilization during short-term beta-adrenergic activation

机译:丙酮酸脱氢酶复合物在短期β-肾上腺素激活过程中在褐色脂肪细胞能量消耗和燃料利用中起着核心作用

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摘要

Activation of brown adipose tissue (BAT) contributes to total body energy expenditure through energy dissipation as heat. Activated BAT increases the clearance of lipids and glucose from the circulation, but how BAT accommodates large influx of multiple substrates is not well defined. The purpose of this work was to assess the metabolic fluxes in brown adipocytes during β3-adrenergic receptor (β3-AR) activation.T37i murine preadipocytes were differentiated into brown adipocytes and we used Seahorse respirometry employing a set of specific substrate inhibitors in the presence or absence of β3-AR agonist CL316,243. The main substrate used by these brown adipocytes were fatty acids, which were oxidized equally during activation as well as during resting condition. [U-13C]-glucose tracer-based metabolomics revealed that the flux through the TCA cycle was enhanced and regulated by pyruvate dehydrogenase (PDH) activity. Based on 13C-tracer incorporation in lipids, it appeared that most glucose was oxidized via TCA cycle activity, while some was utilized for glycerol-3-phosphate synthesis to replenish the triglyceride pool. Collectively, we show that while fatty acids are the main substrates for oxidation, glucose is also oxidized to meet the increased energy demand during short term β3-AR activation. PDH plays an important role in directing glucose carbons towards oxidation.
机译:棕色脂肪组织(BAT)的激活通过能量以热量的形式消散而有助于人体总能量消耗。活化的BAT增加了循环中脂质和葡萄糖的清除率,但是BAT如何容纳大量底物的大量吸收尚不清楚。这项工作的目的是评估在β3-肾上腺素受体(β3-AR)激活期间棕色脂肪细胞中的代谢通量.T37i鼠前脂肪细胞被分化为棕色脂肪细胞,我们使用Seahorse呼吸测定法,在存在或不存在的情况下使用一组特定的底物抑制剂缺少β3-AR激动剂CL316,243。这些棕色脂肪细胞使用的主要底物是脂肪酸,它们在活化以及静息状态下均被氧化。 [U- 13 C]-葡萄糖示踪剂的代谢组学研究表明,通过丙酮酸脱氢酶(PDH)活性增强并调节了TCA循环的通量。基于脂质中 13 C-示踪剂的掺入,似乎大多数葡萄糖通过TCA循环活性被氧化,而有些则被用于合成3-磷酸甘油酯以补充甘油三酸酯库。总的来说,我们表明,尽管脂肪酸是氧化的主要底物,但葡萄糖也被氧化以满足短期β3-AR活化过程中增加的能量需求。 PDH在引导葡萄糖碳趋于氧化中起重要作用。

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