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USP19 去泛素化酶敲除可通过调节胰岛素和糖皮质激素信号预防肌肉减少症。

Knockout of USP19 Deubiquitinating Enzyme Prevents Muscle Wasting by Modulating Insulin and Glucocorticoid Signaling.

机构信息

Department of Biochemistry, McGill University and McGill University Health Centre, Montreal, Quebec, Canada.

Department of Medicine, McGill University, Montreal, Quebec, Canada.

出版信息

Endocrinology. 2018 Aug 1;159(8):2966-2977. doi: 10.1210/en.2018-00290.

Abstract

Muscle atrophy arises because of many chronic illnesses, as well as from prolonged glucocorticoid treatment and nutrient deprivation. We previously demonstrated that the USP19 deubiquitinating enzyme plays an important role in chronic glucocorticoid- and denervation-induced muscle wasting. However, the mechanisms by which USP19 exerts its effects remain unknown. To explore this further, we fasted mice for 48 hours to try to identify early differences in the response of wild-type and USP19 knockout (KO) mice that could yield insights into the mechanisms of USP19 action. USP19 KO mice manifested less myofiber atrophy in response to fasting due to increased rates of protein synthesis. Insulin signaling was enhanced in the KO mice, as revealed by lower circulating insulin levels, increased insulin-stimulated glucose disposal and phosphorylation of Akt and S6K in muscle, and improved overall glucose tolerance. Glucocorticoid signaling, which is essential in many conditions of atrophy, was decreased in KO muscle, as revealed by decreased expression of glucocorticoid receptor (GR) target genes upon both fasting and glucocorticoid treatment. This decreased GR signaling was associated with lower GR protein levels in the USP19 KO muscle. Restoring the GR levels in USP19-deficient muscle was sufficient to abolish the protection from myofiber atrophy. Expression of GR target genes also correlated with that of USP19 in human muscle samples. Thus, USP19 modulates GR levels and in so doing may modulate both insulin and glucocorticoid signaling, two critical pathways that control protein turnover in muscle and overall glucose homeostasis.

摘要

肌肉萎缩是由许多慢性疾病引起的,也与长期糖皮质激素治疗和营养缺乏有关。我们之前的研究表明,USP19 去泛素化酶在慢性糖皮质激素和去神经诱导的肌肉萎缩中起着重要作用。然而,USP19 发挥作用的机制仍不清楚。为了进一步探索这一点,我们让小鼠禁食 48 小时,试图确定野生型和 USP19 敲除(KO)小鼠在反应上的早期差异,这些差异可以深入了解 USP19 的作用机制。由于蛋白质合成率的增加,USP19 KO 小鼠在禁食时表现出较少的肌纤维萎缩。KO 小鼠的胰岛素信号增强,表现为循环胰岛素水平降低、胰岛素刺激的葡萄糖摄取增加以及肌肉中 Akt 和 S6K 的磷酸化增加,并且整体葡萄糖耐量得到改善。在许多萎缩情况下至关重要的糖皮质激素信号在 KO 肌肉中降低,这表现为在禁食和糖皮质激素处理时,糖皮质激素受体(GR)靶基因的表达降低。这种降低的 GR 信号与 USP19 KO 肌肉中的 GR 蛋白水平降低有关。在 USP19 缺陷肌肉中恢复 GR 水平足以消除对肌纤维萎缩的保护。GR 靶基因的表达也与人类肌肉样本中的 USP19 表达相关。因此,USP19 调节 GR 水平,从而可能调节控制肌肉蛋白质周转和整体葡萄糖稳态的胰岛素和糖皮质激素信号两条关键途径。

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