bioRxiv · 10.1101/393223
Structures of the substrate-engaged 26S proteasome reveal the mechanisms for ATP hydrolysis-driven translocation
Abstract
The 26S proteasome is the primary eukaryotic degradation machine and thus critically involved in numerous cellular processes. The hetero-hexameric ATPase motor of the proteasome unfolds and translocates targeted protein substrates into the open gate of a proteolytic core, while a proteasomal deubiquitinase concomitantly removes substrate-attached ubiquitin chains. However, the mechanisms by which ATP hydrolysis drives the conformational changes responsible for these processes have remained elusive. Here we present the cryo-EM structures of four distinct conformational states of the actively ATP-hydrolyzing, substrate-engaged 26S proteasome. These structures reveal how mechanical substrate translocation accelerates deubiquitination, and how ATP-binding, hydrolysis, and phosphate-release events are coordinated within the AAA+ motor to induce conformational changes and propel the substrate through the central pore.
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de la Pena, A. H., Goodall, E. A., Gates, S. N., Lander, G. C., Martin, A.. 2018-08-16. Structures of the substrate-engaged 26S proteasome reveal the mechanisms for ATP hydrolysis-driven translocation. https://doi.org/10.1101/393223
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