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Quantitative live-cell imaging reveals spatio-temporal dynamics and cytoplasmic assembly of the 26S proteasome

机译:定量活细胞成像揭示了26S蛋白酶体的时空动态和细胞质组装

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摘要

The 26S proteasome is a 2.5-MDa multisubunit protease complex that degrades polyubiquitylated proteins. Although its functions and structure have been extensively characterized, little is known about its dynamics in living cells. Here, we investigate the absolute concentration, spatio-temporal dynamics and complex formation of the proteasome in living cells using fluorescence correlation spectroscopy. We find that the 26S proteasome complex is highly mobile, and that almost all proteasome subunits throughout the cell are stably incorporated into 26S proteasomes. The interaction between 19S and 20S particles is stable even in an importin-alpha mutant, suggesting that the 26S proteasome is assembled in the cytoplasm. Furthermore, a genetically stabilized 26S proteasome mutant is able to enter the nucleus. These results suggest that the 26S proteasome completes its assembly process in the cytoplasm and translocates into the nucleus through the nuclear pore complex as a holoenzyme.
机译:26S蛋白酶体是2.5-MDa多亚基蛋白酶复合物,可降解多泛素化蛋白。尽管已对其功能和结构进行了广泛表征,但对其在活细胞中的动力学了解甚少。在这里,我们使用荧光相关光谱技术研究了活细胞中蛋白酶体的绝对浓度,时空动力学和复杂的形成。我们发现26S蛋白酶体复合物是高度可移动的,并且整个细胞中几乎所有的蛋白酶体亚基都稳定地掺入26S蛋白酶体中。即使在importin-alpha突变体中,19S和20S颗粒之间的相互作用也是稳定的,这表明26S蛋白酶体组装在细胞质中。此外,遗传稳定的26S蛋白酶体突变体能够进入细胞核。这些结果表明26S蛋白酶体完成了其在细胞质中的组装过程,并通过核孔复合体作为全酶转运到细胞核中。

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