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Caspase-3 Cleaves Specific 19 S Proteasome Subunits in Skeletal Muscle Stimulating Proteasome Activity

机译:Caspase-3在骨骼肌中刺激蛋白酶体活性的特定19 S蛋白酶体亚基。

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摘要

With muscle wasting, caspase-3 activation and the ubiquitin-proteasome system act synergistically to increase the degradation of muscle proteins. Whether proteasome activity is also elevated in response to catabolic conditions is unknown. We find that caspase-3 increases proteasome activity in myotubes but not in myoblasts. This difference is related to the cleavage of specific 19 S proteasome subunits. In mouse muscle or myotubes, caspase-3 cleaves Rpt2 and Rpt6 increasing proteasome activity. In myoblasts, caspase-3 cleaves Rpt5 to decrease proteasome activity. To confirm the caspase-3 dependence, caspase-3 cleavage sites in Rpt2, Rpt6, or Rpt5 were mutated. This prevented the cleavage of these subunits by caspase-3 as well as the changes in proteasome activity. During differentiation of myoblasts to myotubes, there is an obligatory, transient increase in caspase-3 activity, accompanied by a corresponding increase in proteasome activity and cleavage of Rpt2 and Rpt6. Therefore, differentiation changes the proteasome type from sensitivity of Rpt5 to caspase-3 in myoblasts to sensitivity of Rpt2 and Rpt6 in myotubes. This novel mechanism identifies a feed-forward amplification that augments muscle proteolysis in catabolic conditions. Indeed, we found that in mice with a muscle wasting condition, chronic kidney disease, there was cleavage of subunits Rpt2 and Rpt6 and stimulation of proteasome activity.
机译:随着肌肉的浪费,caspase-3激活和泛素-蛋白酶体系统协同作用,以增加肌肉蛋白的降解。蛋白酶体活性是否响应分解代谢条件而升高也未知。我们发现胱天蛋白酶3增加肌管中的蛋白酶体活性,但不增加成肌细胞中的蛋白酶体活性。这种差异与特定的19 S蛋白酶体亚基的切割有关。在小鼠肌肉或肌管中,caspase-3裂解Rpt2和Rpt6增加蛋白酶体的活性。在成肌细胞中,caspase-3裂解Rpt5以降低蛋白酶体的活性。为了确认caspase-3依赖性,对Rpt2,Rpt6或Rpt5中的caspase-3切割位点进行了突变。这阻止了caspase-3对这些亚基的切割以及蛋白酶体活性的改变。在成肌细胞分化为肌管的过程中,caspase-3活性有必要的暂时性增加,同时伴随着蛋白酶体活性的相应增加和Rpt2和Rpt6的裂解。因此,分化将蛋白酶体的类型从成肌细胞中Rpt5对caspase-3的敏感性改变为成肌管中Rpt2和Rpt6的敏感性。这种新颖的机制确定了前馈扩增,可增强分解代谢条件下的肌肉蛋白水解。确实,我们发现在肌肉萎缩状态,慢性肾脏疾病的小鼠中,存在Rpt2和Rpt6亚基的裂解和蛋白酶体活性的刺激。

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