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Catabolism of Branched Chain Amino Acids Contributes Significantly to Synthesis of Odd-Chain and Even-Chain Fatty Acids in 3T3-L1 Adipocytes

机译:支链氨基酸的分解代谢对3T3-L1脂肪细胞中奇数链和偶数链脂肪酸的合成有重要贡献

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摘要

The branched chain amino acids (BCAA) valine, leucine and isoleucine have been implicated in a number of diseases including obesity, insulin resistance, and type 2 diabetes mellitus, although the mechanisms are still poorly understood. Adipose tissue plays an important role in BCAA homeostasis by actively metabolizing circulating BCAA. In this work, we have investigated the link between BCAA catabolism and fatty acid synthesis in 3T3-L1 adipocytes using parallel 13C-labeling experiments, mass spectrometry and model-based isotopomer data analysis. Specifically, we performed parallel labeling experiments with four fully 13C-labeled tracers, [U-13C]valine, [U-13C]leucine, [U-13C]isoleucine and [U-13C]glutamine. We measured mass isotopomer distributions of fatty acids and intracellular metabolites by GC-MS and analyzed the data using the isotopomer spectral analysis (ISA) framework. We demonstrate that 3T3-L1 adipocytes accumulate significant amounts of even chain length (C14:0, C16:0 and C18:0) and odd chain length (C15:0 and C17:0) fatty acids under standard cell culture conditions. Using a novel GC-MS method, we demonstrate that propionyl-CoA acts as the primer on fatty acid synthase for the production of odd chain fatty acids. BCAA contributed significantly to the production of all fatty acids. Leucine and isoleucine contributed at least 25% to lipogenic acetyl-CoA pool, and valine and isoleucine contributed 100% to lipogenic propionyl-CoA pool. Our results further suggest that low activity of methylmalonyl-CoA mutase and mass action kinetics of propionyl-CoA on fatty acid synthase result in high rates of odd chain fatty acid synthesis in 3T3-L1 cells. Overall, this work provides important new insights into the connection between BCAA catabolism and fatty acid synthesis in adipocytes and underscores the high capacity of adipocytes for metabolizing BCAA.
机译:支链氨基酸(BCAA)缬氨酸,亮氨酸和异亮氨酸与多种疾病有关,包括肥胖,胰岛素抵抗和2型糖尿病,尽管其机理尚不清楚。脂肪组织通过主动代谢循环中的BCAA在BCAA稳态中发挥重要作用。在这项工作中,我们使用平行的 13 C标记实验,质谱法和基于模型的同位素数据分析,研究了3T3-L1脂肪细胞中BCAA分解代谢与脂肪酸合成之间的联系。具体来说,我们使用四个完全 13 C标记的示踪剂[U- 13 C]缬氨酸,[U- 13 C ]亮氨酸,[U- 13 C]异亮氨酸和[U- 13 C]谷氨酰胺。我们通过GC-MS测量了脂肪酸和细胞内代谢物的质量同位素异构体分布,并使用同位素异构体光谱分析(ISA)框架分析了数据。我们证明了3T3-L1脂肪细胞在标准细胞培养条件下积累了大量的偶数链长(C14:0,C16:0和C18:0)和奇数链长(C15:0和C17:0)脂肪酸。使用一种新颖的GC-MS方法,我们证明了丙酰辅酶A充当脂肪酸合酶的引物,用于生产奇数链脂肪酸。 BCAA显着促进了所有脂肪酸的产生。亮氨酸和异亮氨酸至少占促脂基乙酰辅酶A库的25%,缬氨酸和异亮氨酸占促脂基丙酰辅酶A库的100%。我们的结果进一步表明,甲基丙二酰辅酶A突变酶的低活性和丙酰辅酶A对脂肪酸合酶的质量动力学,导致3T3-L1细胞中奇数链脂肪酸合成的速率很高。总体而言,这项工作为脂肪细胞中BCAA分解代谢与脂肪酸合成之间的联系提供了重要的新见识,并强调了脂肪细胞具有高代谢BCAA的能力。

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