Rpn1 provides adjacent receptor sites for substrate binding and deubiquitination by the proteasome

Hundreds of pathways for degradation converge at ubiquitin recognition by a proteasome. Here, we found that the five known proteasomal ubiquitin receptors in yeast are collectively nonessential for ubiquitin recognition and identified a sixth receptor, Rpn1. A site ( T1: ) in the Rpn1 toroid recogni...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2016-02, Vol.351 (6275), p.831-831
Hauptverfasser: Shi, Yuan, Chen, Xiang, Elsasser, Suzanne, Stocks, Bradley B., Tian, Geng, Lee, Byung-Hoon, Shi, Yanhong, Zhang, Naixia, de Poot, Stefanie A. H., Tuebing, Fabian, Sun, Shuangwu, Vannoy, Jacob, Tarasov, Sergey G., Engen, John R., Finley, Daniel, Walters, Kylie J.
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Sprache:eng
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Zusammenfassung:Hundreds of pathways for degradation converge at ubiquitin recognition by a proteasome. Here, we found that the five known proteasomal ubiquitin receptors in yeast are collectively nonessential for ubiquitin recognition and identified a sixth receptor, Rpn1. A site ( T1: ) in the Rpn1 toroid recognized ubiquitin and ubiquitin-like ( UBL: ) domains of substrate shuttling factors. T1 structures with monoubiquitin or lysine 48 diubiquitin show three neighboring outer helices engaging two ubiquitins. T1 contributes a distinct substrate-binding pathway with preference for lysine 48-linked chains. Proximal to T1 within the Rpn1 toroid is a second UBL-binding site ( T2: ) that assists in ubiquitin chain disassembly, by binding the UBL of deubiquitinating enzyme Ubp6. Thus, a two-site recognition domain intrinsic to the proteasome uses distinct ubiquitin-fold ligands to assemble substrates, shuttling factors, and a deubiquitinating enzyme.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.aad9421