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Proteomic analysis of rat soleus muscle undergoing hindlimb suspension-induced atrophy and reweighting hypertrophy

机译:大鼠比目鱼肌后肢悬吊引起的萎缩和增重肥大的蛋白质组学分析

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A proteomic analysis was performed comparing normal rat soleus muscle to soleus muscle that had undergone either 0.5, 1, 2, 4, 7, 10 and 14 days of hindlimb suspension-induced atrophy or hindlimb suspension-induced atrophied soleus muscle that had undergone 1 hour, 8 hour, 1 day, 2 day, 4 day and 7 days of reweighting-induced hypertrophy. Muscle mass measurements demonstrated continual loss of soleus mass occurred throughout the 21 days of hindlimb suspension; following reweighting, atrophied soleus muscle mass increased dramatically between 8 hours and 1 day post reweighting. Proteomic analysis of normal and atrophied soleus muscle demonstrated statistically significant changes in the relative levels of 29 soleus proteins. Reweighting following atrophy demonstrated statistically significant changes in the relative levels of 15 soleus proteins. Protein identification using mass spectrometry was attempted for all differentially regulated proteins from both atrophied and hypertrophied soleus muscle. Five differentially regulated proteins from the hindlimb suspended atrophied soleus muscle were identified while five proteins were identified in the reweighting-induced hypertrophied soleus muscles. The identified proteins could be generally grouped together as metabolic proteins, chaperone proteins and contractile apparatus proteins. Together these data demonstrate that coordinated temporally regulated changes in the skeletal muscle proteome occur during disuse-induced soleus muscle atrophy and reweighting hypertrophy.
机译:进行了蛋白质组学分析,比较了正常大鼠的比目鱼肌与已经历0.5小时,1、2、4、7、10和14天的后肢悬吊引起的萎缩或后肢悬吊引起的比目鱼萎缩的比目鱼肌肉(已经历1小时) ,体重增加引起的8小时,1天,2天,4天和7天。肌肉质量测量结果显示,在后肢悬吊的21天中,比目鱼肌质量持续丧失。体重增加后,比重增加后8小时至1天之间,比目鱼肌萎缩程度明显增加。正常和萎缩的比目鱼肌的蛋白质组学分析表明,29种比目鱼蛋白的相对水平在统计学上具有显着变化。萎缩后的体重增加证明了15个比目鱼蛋白质相对水平的统计学上显着变化。对于来自萎缩和肥大比目鱼肌的所有差异调节蛋白,都尝试使用质谱进行蛋白质鉴定。从后肢悬浮的比目鱼萎缩肌中鉴定出5种差异调节蛋白,而在体重增加引起的比目鱼肥大肌中鉴定出5种蛋白。鉴定出的蛋白质通常可以分为代谢蛋白质,伴侣蛋白质和收缩装置蛋白质。这些数据加在一起表明,骨骼肌蛋白质组的时间调控协调性改变是在废用性比目鱼肌萎缩和体重增加肥大过程中发生的。

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