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年轻和衰老骨骼肌中糖皮质激素敏感转录组的收缩调节。

Contractile regulation of the glucocorticoid-sensitive transcriptome in young and aged skeletal muscle.

机构信息

Department of Health, Nutrition and Food Sciences, Florida State University, Tallahassee, Florida, United States.

Department of Biology, University of North Florida, Jacksonville, Florida, United States.

出版信息

Am J Physiol Endocrinol Metab. 2024 Nov 1;327(5):E636-E652. doi: 10.1152/ajpendo.00223.2024. Epub 2024 Sep 11.

Abstract

Elevated glucocorticoids alter the skeletal muscle transcriptome to induce a myopathy characterized by muscle atrophy, muscle weakness, and decreased metabolic function. These effects are more likely to occur and be more severe in aged muscles. Resistance exercise can blunt the development of glucocorticoid myopathy in young muscle, but the potential to oppose the signals initiating myopathy in aged muscle is unknown. To answer this, young (4-mo-old) and aged (24-to 25-mo-old) male C57BL/6 mice were randomized to receive either an intraperitoneal (IP) injection of dexamethasone (DEX; 2 mg/kg) or saline as a control. Two hours postinjections, the tibialis anterior (TA) muscles of mice were subjected to unilateral high-force contractions. Muscles were harvested 4 h later. The glucocorticoid- and contraction-sensitive genes were determined by RNA sequencing. The number of glucocorticoid-sensitive genes was similar between young and aged muscle. Contractions opposed changes to more glucocorticoid-sensitive genes in aged muscle, with this outcome primarily occurring when hormone levels were elevated. Glucocorticoid-sensitive gene programs opposed by contractions were primarily related to metabolism in young mice and muscle size regulation and inflammation in aged mice. In silico analysis implied peroxisome proliferator-activated receptor gamma-1 (PPARG) contributed to the contraction-induced opposition of glucocorticoid-sensitive genes in aged muscle. Increasing PPARG expression in the TA of aged mice using adeno-associated virus serotype 9 partially counteracted the glucocorticoid-induced reduction in runt-related transcription factor 1 () mRNA content, recapitulating the effects observed by contractions. Overall, these data contribute to our understanding of the contractile regulation of the glucocorticoid transcriptome in aged skeletal muscle. We establish the extent to which muscle contractions oppose changes to the glucocorticoid-sensitive transcriptome in both young and aged muscle. We also identify peroxisome proliferator-activated receptor gamma (PPARG) as a transcription factor likely contributing to contraction-induced opposition to the glucocorticoid transcriptome in aged muscle. Overall, these data contribute to our understanding of the contractile regulation of the glucocorticoid transcriptome.

摘要

糖皮质激素水平升高会改变骨骼肌转录组,导致肌肉萎缩、肌肉无力和代谢功能下降的肌病。这些影响在老年肌肉中更可能发生且更为严重。阻力运动可以减轻年轻肌肉中糖皮质激素肌病的发展,但在老年肌肉中对抗引发肌病的信号的潜力尚不清楚。为了解决这个问题,将年轻(4 月龄)和老年(24-25 月龄)雄性 C57BL/6 小鼠随机分为腹腔(IP)注射地塞米松(DEX;2mg/kg)或生理盐水作为对照。注射后 2 小时,对小鼠的比目鱼肌(TA)进行单侧高力收缩。4 小时后收获肌肉。通过 RNA 测序确定糖皮质激素和收缩敏感基因。年轻和老年肌肉中的糖皮质激素敏感基因数量相似。收缩作用对抗了更多的糖皮质激素敏感基因在老年肌肉中的变化,这种结果主要发生在激素水平升高时。被收缩作用对抗的糖皮质激素敏感基因程序主要与年轻小鼠的代谢和老年小鼠的肌肉大小调节和炎症有关。计算机分析表明过氧化物酶体增殖物激活受体 γ-1(PPARG)有助于收缩作用对抗老年肌肉中糖皮质激素敏感基因。通过腺相关病毒血清型 9 在老年小鼠的 TA 中增加 PPARG 的表达部分抵消了糖皮质激素诱导的 runt 相关转录因子 1()mRNA 含量的减少,再现了收缩作用观察到的效果。总的来说,这些数据有助于我们理解收缩对老年骨骼肌中糖皮质激素转录组的调节。我们确定了肌肉收缩在年轻和老年肌肉中对抗糖皮质激素敏感转录组变化的程度。我们还确定过氧化物酶体增殖物激活受体 γ(PPARG)作为一种转录因子,可能有助于收缩作用对抗老年肌肉中糖皮质激素转录组的作用。总的来说,这些数据有助于我们理解收缩对老年骨骼肌中糖皮质激素转录组的调节。

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