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首页> 外文期刊>American Journal of Physiology >Biotinylation: a novel posttranslational modification linking cell autonomous circadian clocks with metabolism
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Biotinylation: a novel posttranslational modification linking cell autonomous circadian clocks with metabolism

机译:生物素化:用新陈代谢连接细胞自主昼夜昼夜时钟的新型后期改性

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Circadian clocks are critical modulators of metabolism. However, mechanistic links between cell autonomous clocks and metabolic processes remain largely unknown. Here, we report that expression of the biotin transporter slc5a6 gene is decreased in hearts of two distinct genetic mouse models of cardiomyocyte-specific circadian clock disruption [i.e., cardiomyocyte-specific CLOCK mutant (CCM) and cardiomyocyte-specific BMAL1 knockout (CBK) mice]. Biotinylation is an obligate posttranslational modification for five mammalian carboxy-lases: acetyl-CoA carboxylase alpha (ACCalpha), ACCbeta, pyruvate carboxy-lase (PC), methylcrotonyl-CoA carboxylase (MCC), and propionyl-CoA carboxylase (PCC). We therefore hypothesized that the cardio-myocyte circadian clock impacts metabolism through biotinylation. Consistent with decreased slc5a6 expression, biotinylation of all carboxylases is significantly decreased (10-46%) in CCM and CBK hearts. In association with decreased biotinylated ACC, oleate oxidation rates are increased in both CCM and CBK hearts. Consistent with decreased biotinylated MCC, leucine oxidation rates are significantly decreased in both CCM and CBK hearts, whereas rates of protein synthesis are increased. Importantly, feeding CBK mice with a biotin-enriched diet for 6 wk normalized myocardial 1) ACC biotinylation and oleate oxidation rates; 2) PCC/MCC biotinylation (and partially restored leucine oxidation rates); and 3) net protein synthesis rates. Furthermore, data suggest that the RRAGD/mTOR/4E-BP1 signaling axis is chronically activated in CBK and CCM hearts. Finally we report that the hepatocyte circadian clock also regulates both slc5a6 expression and protein biotinylation in the liver. Collectively, these findings suggest that biotinylation is a novel mechanism by which cell autonomous circadian clocks influence metabolic pathways.
机译:昼夜节奏是新陈代谢的关键调节剂。然而,细胞自主钟和代谢过程之间的机械链接仍然很大程度上是未知的。在这里,我们认为生物素转运蛋白SLC5a6基因的表达在心肌细胞特异性昼夜节日中断的两个不同遗传小鼠模型的心脏中减少[即,心肌细胞特异性钟突变体(CCM)和心肌细胞特异性BMAL1敲除(CBK)小鼠]。生物素化是五种哺乳动物羧基溶液的迫使后改性:乙酰-CoA羧化酶α(亚弧),AccBeta,丙酮酸羧基溶液(PC),甲基丙烯酰基-CoA羧化酶(MCC)和丙酰基-CoA羧化酶(PCC)。因此,我们假设心肌细胞昼夜节日时钟通过生物素化会影响代谢。与降低的SLC5A6表达一致,所有羧酸酯的生物素化在CCM和CBK心中显着降低(10-46%)。与生物素化的ACC减小相关,CCM和CBK心中的油酸氧化率增加。与生物素化的MCC降低一致,CCM和CBK心中的亮氨酸氧化率显着降低,而蛋白质合成的速率增加。重要的是,将CBK小鼠用生物素富集的饮食喂养6WK标准化心肌1)Acc生物素化和含油氧化率; 2)PCC / MCC生物素化(部分恢复的亮氨酸氧化率); 3)净蛋白质合成率。此外,数据表明RRAGD / MTOR / 4E-BP1信令轴在CBK和CCM心中慢性激活。最后我们报告肝细胞昼夜节日时钟还调节肝脏中的SLC5A6表达和蛋白生物素化。总的来说,这些发现表明生物素化是一种新的机制,通过该机制,细胞自主昼夜昼夜时钟会影响代谢途径。

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