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首页> 外文期刊>American Journal of Physiology >FOXO1 activates glutamine synthetase gene in mouse skeletal muscles through a region downstream of 3'-UTR: possible contribution to ammonia detoxification
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FOXO1 activates glutamine synthetase gene in mouse skeletal muscles through a region downstream of 3'-UTR: possible contribution to ammonia detoxification

机译:FOXO1通过3'-UTR下游的区域激活小鼠骨骼肌中的谷氨酰胺合成酶基因:可能对氨解毒的可能贡献

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摘要

Skeletal muscle is a reservoir of energy in the form of protein, which is degraded under catabolic conditions, resulting in the formation of amino acids and ammonia as a byproduct. The expression of FOXO1, a forkhead-type transcription factor, increases during starvation and exercise. In agreement, transgenic FOXOl-Tg mice that overexpress FOXO1 in skeletal muscle exhibit muscle atrophy. The aim of this study was to examine the role of FOXO1 in amino acid metabolism. The mRNA and protein expressions of glutamine synthetase (GS) were increased in skeletal muscle of FOXOl-Tg mice. Fasting induced FOXO1 and GS expression in wild-type mice but hardly increased GS expression in muscle-specific FOXO1 knockout (FOXO1-KO) mice. Activation of FOXO1 also increased GS mRNA and protein expression in C2C12 myoblasts. Using a transient transfection reporter assay, we observed that FOXO1 activated the GS reporter construct. Mutation of a putative FOXO1-binding consensus sequence in the downstream genomic region of GS decreased basal and FOXO1-dependent reporter activity significantly. A chromatin immunoprecipitation assay showed that FOXO1 was recruited to the 3' region of GS in C2C12 myoblasts. These results suggest that FOXO1 directly upregulates GS expression. GS is considered to mediate ammonia clearance in skeletal muscle. In agreement, an intravenous ammonia challenge increased blood ammonia concentrations to a twofold higher level in FOXO1-KO than in wild-type mice, demonstrating that the capacity for ammonia disposal correlated inversely with the expression of GS in muscle. These data indicate that FOXO1 plays a role in amino acid metabolism during protein degradation in skeletal muscle.
机译:骨骼肌是蛋白质形式的能量储层,其在分解代谢条件下降解,导致氨基酸和氨作为副产物的形成。 FOXO1,叉头型转录因子,在饥饿和运动期间增加。在一致中,转基因Foxol-Tg小鼠在骨骼肌中过表达FoxO1表现出肌肉萎缩。本研究的目的是检查FOXO1在氨基酸代谢中的作用。在Foxol-Tg小鼠的骨骼肌中增加谷氨酰胺合成酶(GS)的mRNA和蛋白表达。在野生型小鼠中捕获诱导的FoxO1和GS表达,但在肌肉特异性FoxO1敲除(Foxo1-Ko)小鼠中几乎没有增加GS表达。 FOXO1的活化也增加了C2C12肌细胞中的GS mRNA和蛋白质表达。使用瞬态转染报告器测定,我们观察到FOXO1激活了GS报告器构建体。 GS下游基因组区域中推定的FoxO1结合共识序列的突变显着降低了基础和FoxO1依赖性报告活性。染色质免疫沉淀测定结果表明,在C2C12肌细胞中募集到GS的3'区的FOXO1。这些结果表明FOXO1直接上调GS表达。 GS被认为是骨骼肌中的氨间隙。在一致中,静脉氨症挑战血尿浓度增加到Foxo1-Ko的双蛋白浓度高于野生型小鼠,表明氨处置的能力与肌肉中Gs的表达相反。这些数据表明FOXO1在骨骼肌中蛋白质降解期间在氨基酸代谢中起着作用。

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