Heng A E, Ventadour S, Jarzaguet M, Pouch-Pélissier M N, Guezennec C Y, Bigard X, Attaix D, Taillandier D
INRA and Human Nutrition Research Center of Clermont-Ferrand, UMR 1019, 63122 Ceyrat, France.
Int J Biochem Cell Biol. 2008;40(11):2544-52. doi: 10.1016/j.biocel.2008.04.013. Epub 2008 May 15.
Catabolic stimuli induce a coordinate expression of the 20S proteasome subunits in skeletal muscles. However, contradictory data have been obtained for the 19S regulatory complex (RC) subunits, which could reflect differential regulation at the transcriptional and/or translational level. To address this point we used a well-established model of muscle atrophy (hindlimb suspension) and determined the mRNA levels for 19S subunits belonging to both the base (non-ATPase S1, ATPases S7 and S8) and the lid (S14) of the 19S RC. Concomitant increased mRNA levels were observed for all studied subunits in rat soleus muscles after 9 days of unloading. In addition, analysis of polysome profiles showed a similar proportion of actively translated mRNA (50%) in unloaded and control soleus muscle. Furthermore, the repressed pool of messenger ribonucleoparticles (mRNPs) was low in both control (14%) and unloaded (15%) animals. Our data show that representative 19S subunits (S7 and S8) were efficiently translated, suggesting a coordinate production of 19S RC subunits. The 19S RC is responsible for the binding of polyubiquitin conjugates that are subsequently degraded inside the 20S proteasome core particle. We observed that soleus muscle atrophy was accompanied by an accumulation of ubiquitin conjugates. Purification of ubiquitin conjugates using the S5a 19S subunit followed by deubiquitination identified telethonin as a 26S proteasome substrate. In conclusion, muscle atrophy induces a concomitant expression of 26S proteasome subunits. Substrates to be degraded include a protein required for maintaining the structural integrity of sarcomeres.
分解代谢刺激可诱导骨骼肌中20S蛋白酶体亚基的协同表达。然而,关于19S调节复合体(RC)亚基的数据却相互矛盾,这可能反映了转录和/或翻译水平上的差异调节。为了解决这一问题,我们使用了一个成熟的肌肉萎缩模型(后肢悬吊),并测定了属于19S RC基部(非ATP酶S1、ATP酶S7和S8)和盖子(S14)的19S亚基的mRNA水平。卸载9天后,在大鼠比目鱼肌中观察到所有研究亚基的mRNA水平同时升高。此外,多核糖体谱分析显示,卸载的和对照比目鱼肌中活跃翻译的mRNA比例相似(50%)。此外,在对照动物(14%)和卸载动物(15%)中,信使核糖核蛋白颗粒(mRNP)的抑制池都很低。我们的数据表明,代表性的19S亚基(S7和S8)能够有效翻译,这表明19S RC亚基是协同产生的。19S RC负责多聚泛素缀合物的结合,这些缀合物随后在20S蛋白酶体核心颗粒内被降解。我们观察到比目鱼肌萎缩伴随着泛素缀合物的积累。使用S5a 19S亚基纯化泛素缀合物,然后进行去泛素化,确定了肌联蛋白是26S蛋白酶体底物。总之,肌肉萎缩诱导26S蛋白酶体亚基的协同表达。待降解的底物包括维持肌节结构完整性所需的一种蛋白质。