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糖皮质激素并不调节库欣综合征患者骨骼肌中蛋白水解基因的表达。

Glucocorticoids do not regulate the expression of proteolytic genes in skeletal muscle from Cushing's syndrome patients.

作者信息

Rallière C, Tauveron I, Taillandier D, Guy L, Boiteux J P, Giraud B, Attaix D, Thiéblot P

机构信息

Institut Natíonal de Recherche Agronomique, Unité d'Etude du Métabolisme Azoté, Ceyrat, France.

出版信息

J Clin Endocrinol Metab. 1997 Sep;82(9):3161-4. doi: 10.1210/jcem.82.9.4221.

Abstract

Glucocorticoids signal enhanced proteolysis in various instances of muscle atrophy and increased gene expression of components of the lysosomal, Ca(2+)-dependent, and/or ubiquitin-proteasome proteolytic pathways in both rat skeletal muscle and myotubes. Cushing's syndrome is characterized by chronic excessive glucocorticoid production, which results in muscle wasting. We report here no change in messenger RNA levels for cathepsin D (a lysosomal proteinase), m-calpain (a Ca(2+)-activated proteinase), ubiquitin, 14-kDa ubiquitin-activating enzyme E2, and 20S proteasome subunits (i.e. critical components of the ubiquitin-proteasome proteolytic process) in skeletal muscle from such patients. Thus, in striking contrast with animal studies, glucocorticoids did not regulate the expression of muscle proteolytic genes in Cushing's syndrome. In humans, messenger RNA levels, for at least ubiquitin and proteasome subunits, are elevated in acute situations of muscle wasting, such as head trauma or sepsis. Because Cushing's syndrome is a chronic catabolic condition, we suggest that the lack of regulation of proteolytic genes in such patients may represent an adaptive regulatory mechanisms, preventing sustained increased protein breakdown and avoiding rapid muscle wasting.

摘要

糖皮质激素在多种肌肉萎缩情况下均表明蛋白水解增强,且在大鼠骨骼肌和肌管中,溶酶体、钙依赖性和/或泛素-蛋白酶体蛋白水解途径的组分基因表达增加。库欣综合征的特征是慢性糖皮质激素分泌过多,会导致肌肉萎缩。我们在此报告,此类患者骨骼肌中组织蛋白酶D(一种溶酶体蛋白酶)、m-钙蛋白酶(一种钙激活蛋白酶)、泛素、14 kDa泛素激活酶E2和20S蛋白酶体亚基(即泛素-蛋白酶体蛋白水解过程的关键组分)的信使核糖核酸水平没有变化。因此,与动物研究形成鲜明对比的是,糖皮质激素在库欣综合征中并未调节肌肉蛋白水解基因的表达。在人类中,至少泛素和蛋白酶体亚基的信使核糖核酸水平在肌肉萎缩的急性情况下会升高,如头部创伤或脓毒症。由于库欣综合征是一种慢性分解代谢状况,我们认为此类患者蛋白水解基因缺乏调节可能代表一种适应性调节机制,可防止蛋白质分解持续增加并避免肌肉快速萎缩。

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