首页> 外文期刊>Molecular Metabolism >Branched-chain amino acid restriction in Zucker-fatty rats improves muscle insulin sensitivity by enhancing efficiency of fatty acid oxidation and acyl-glycine export
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Branched-chain amino acid restriction in Zucker-fatty rats improves muscle insulin sensitivity by enhancing efficiency of fatty acid oxidation and acyl-glycine export

机译:Zucker-fatty大鼠中的支链氨基酸限制可通过增强脂肪酸氧化和酰基甘氨酸输出的效率来提高肌肉胰岛素敏感性

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Objective: A branched-chain amino acid (BCAA)-related metabolic signature is strongly associated with insulin resistance and predictive of incident diabetes and intervention outcomes. To better understand the role that this metabolite cluster plays in obesity-related metabolic dysfunction, we studied the impact of BCAA restriction in a rodent model of obesity in which BCAA metabolism is perturbed in ways that mirror the human condition. Methods: Zucker-lean rats (ZLR) and Zucker-fatty rats (ZFR) were fed either a custom control, low fat (LF) diet, or an isonitrogenous, isocaloric LF diet in which all three BCAA (Leu, Ile, Val) were reduced by 45% (LF-RES). We performed comprehensive metabolic and physiologic profiling to characterize the effects of BCAA restriction on energy balance, insulin sensitivity, and glucose, lipid and amino acid metabolism. Results: LF-fed ZFR had higher levels of circulating BCAA and lower levels of glycine compared to LF-fed ZLR. Feeding ZFR with the LF-RES diet lowered circulating BCAA to levels found in LF-fed ZLR. Activity of the rate limiting enzyme in the BCAA catabolic pathway, branched chain keto acid dehydrogenase (BCKDH), was lower in liver but higher in skeletal muscle of ZFR compared to ZLR and was not responsive to diet in either tissue. BCAA restriction had very little impact on metabolites studied in liver of ZFR where BCAA content was low, and BCKDH activity was suppressed. However, in skeletal muscle of LF-fed ZFR compared to LF-fed ZLR, where BCAA content and BCKDH activity were increased, accumulation of fatty acyl CoAs was completely normalized by dietary BCAA restriction. BCAA restriction also normalized skeletal muscle glycine content and increased urinary acetyl glycine excretion in ZFR. These effects were accompanied by lower RER and improved skeletal muscle insulin sensitivity in LF-RES fed ZFR as measured by hyperinsulinemic-isoglycemic clamp. Conclusions: Our data are consistent with a model wherein elevated circulating BCAA contribute to development of obesity-related insulin resistance by interfering with lipid oxidation in skeletal muscle. BCAA-dependent lowering of the skeletal muscle glycine pool appears to contribute to this effect by slowing acyl-glycine export to the urine.
机译:目的:与支链氨基酸(BCAA)相关的代谢特征与胰岛素抵抗密切相关,并能预测糖尿病的发生和干预效果。为了更好地了解这种代谢物簇在肥胖相关的代谢功能障碍中的作用,我们研究了在啮齿类肥胖模型中BCAA限制的影响,在该模型中,BCAA代谢以与人体状况相似的方式受到干扰。方法:给Zucker瘦大鼠(ZLR)和Zucker脂肪大鼠(ZFR)喂食定制的对照低脂(LF)饮食,或等氮,等热量的LF饮食,其中所有三种BCAA(Leu,Ile,Val)减少了45%(LF-RES)。我们进行了全面的代谢和生理学分析,以表征BCAA限制对能量平衡,胰岛素敏感性以及葡萄糖,脂质和氨基酸代谢的影响。结果:LF喂养的ZFR与LF喂养的ZLR相比,循环BCAA含量更高,甘氨酸含量更低。用LF-RES饮食喂养ZFR可使循环BCAA降至LF喂养的ZLR中发现的水平。与ZLR相比,ZFR的BCAA分解代谢途径中的限速酶,支链酮酸脱氢酶(BCKDH)在肝脏中较低,但在骨骼肌中较高,并且对两种组织的饮食均无反应。限制BCAA对ZFR肝脏中研究的代谢产物影响很小,ZFR的肝脏中BCAA含量低,并且BCKDH活性受到抑制。然而,与LF喂养的ZLR相比,LF喂养的ZFR的骨骼肌中BCAA含量和BCKDH活性增加,脂肪酰基辅酶A的积累通过饮食中的BCAA限制而完全归一化。 BCAA限制还可以使ZFR中的骨骼肌甘氨酸含量正常化,并增加尿中乙酰基甘氨酸的排泄。这些影响伴随着低胰岛素抵抗(RER)降低和LF-RES饲喂ZFR的骨骼肌胰岛素敏感性提高(如通过高胰岛素-等血糖钳夹测量)。结论:我们的数据与一个模型相符,其中升高的循环BCAA通过干扰骨骼肌中的脂质氧化来促进肥胖相关胰岛素抵抗的发展。骨骼肌甘氨酸池的依赖BCAA的降低似乎通过减慢酰基甘氨酸向尿液的出口而促进了这种作用。

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