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大鼠骨骼肌中19S复合物亚基及PA28激活剂的表达

Expression of subunits of the 19S complex and of the PA28 activator in rat skeletal muscle.

作者信息

Attaix D, Taillandier D, Combaret L, Rallière C, Larbaud D, Aurousseau E, Tanaka K

机构信息

Institut National de la Recherche Agronomique and Centre de Recherche en Nutrition Humaine de Clermont-Ferrand, Theix, Ceyrat, France.

出版信息

Mol Biol Rep. 1997 Mar;24(1-2):95-8. doi: 10.1023/a:1006806103675.

Abstract

A precise knowledge of the role of subunits of the 19S complex and the PA28 regulator, which associate with the 20S proteasome and regulate its peptidase activities, may contribute to design new therapeutic approaches for preventing muscle wasting in human diseases. The proteasome is mainly responsible for the muscle wasting of tumor-bearing and unweighted rats. The expression of some ATPase (MSS1, P45) and non ATPase (P112-L, P31) subunits of the 19S complex, and of the two subunits of the PA28 regulator, was studied in such atrophying muscles. The mRNA levels for all studied subunits increased in unweighted rats, and analysis of MSS1 mRNA distribution profile in polyribosomes showed that this subunit entered active translation. By contrast, only the mRNA levels for MSS1 increased in the muscles from cancer rats. Thus, gene expression of the proteasome regulatory subunits depends on a given catabolic state. Torbafylline, a xanthine derivative which inhibits tumor necrosis factor production, prevented the activation of protein breakdown and the increased expression of 20S proteasome subunits in cancer rats, without reducing the elevated MSS1 mRNA levels. Thus, the increased expression of MSS1 is regulated independently of 20S proteasome subunits, and did not result in accelerated proteolysis.

摘要

19S复合物亚基和PA28调节因子与20S蛋白酶体结合并调节其肽酶活性,精确了解它们的作用可能有助于设计新的治疗方法,以预防人类疾病中的肌肉萎缩。蛋白酶体主要负责荷瘤大鼠和失重大鼠的肌肉萎缩。研究了19S复合物的一些ATP酶(MSS1、P45)和非ATP酶(P112-L、P31)亚基以及PA28调节因子的两个亚基在这种萎缩肌肉中的表达。所有研究亚基的mRNA水平在失重大鼠中均升高,对多核糖体中MSS1 mRNA分布谱的分析表明该亚基进入了活跃翻译。相比之下,在癌症大鼠的肌肉中只有MSS1的mRNA水平升高。因此,蛋白酶体调节亚基的基因表达取决于特定的分解代谢状态。托巴茶碱是一种抑制肿瘤坏死因子产生的黄嘌呤衍生物,可防止癌症大鼠蛋白质分解的激活和20S蛋白酶体亚基表达的增加,而不会降低升高的MSS1 mRNA水平。因此,MSS1表达的增加是独立于20S蛋白酶体亚基进行调节的,并且不会导致蛋白水解加速。

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