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Mammalian 26S Proteasomes Remain Intact during Protein Degradation

机译:哺乳动物26S蛋白酶体在蛋白质降解过程中保持完整。

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It has been suggested that degradation of polyubiquitylated proteins is coupled to dissociation of 26S proteasomes. In contrast, using several independent types of experiments, we find that mammalian proteasomes can degrade polyubiquitylated proteins without disassembling. Thus, immobilized, 35 S-labeled 26S proteasomes degraded polyubiquitylated Sic1 and c-IAP1 without releasing any subunits. In addition, it is predicted that if 26S proteasomes dissociate into 20S proteasomes and regulatory complexes during a degradation cycle, the reassembly rate would be limiting at low proteasome concentrations. However, the rate with which each proteasome degraded polyubiquitylated Sic1 was independent of the proteasome concentration. Likewise, substrate-dependent dissociation of 26S proteasomes could not be detected by nondenaturing electrophoresis. Lastly, epoxomicin-inhibited 20S proteasomes can trap released regulatory complexes, forming inactive 26S proteasomes, but addition of epoxomicin-inhibited 20S proteasomes had no effect on the degradation of either polyubiquitylated Sic1 or UbcH10 by 26S proteasomes or of endogenous substrates in cell extracts.
机译:已经提出,多泛素化蛋白的降解与26S蛋白酶体的解离有关。相反,使用几种独立类型的实验,我们发现哺乳动物蛋白酶体可以降解多泛素化蛋白而不会分解。因此,固定的35 S标记的26S蛋白酶体降解了多泛素化的Sic1和c-IAP1,而没有释放任何亚基。此外,据预测,如果在降解周期中26S蛋白酶体分解为20S蛋白酶体和调节复合物,则重组率在低蛋白酶体浓度下将受到限制。但是,每个蛋白酶体降解多泛素化Sic1的速率与蛋白酶体浓度无关。同样,不能通过非变性电泳检测到26S蛋白酶体的底物依赖性解离。最后,环氧霉素抑制的20S蛋白酶体可以捕获释放的调节复合物,形成失活的26S蛋白酶体,但是添加环氧霉素抑制的20S蛋白酶体对26S蛋白酶体或细胞提取物中内源性底物对多泛素化Sic1或UbcH10的降解没有影响。

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