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3WHK

Crystal structure of PAN-Rpt5C chimera

Summary for 3WHK
Entry DOI10.2210/pdb3whk/pdb
Related2DZN 3ACP 3H4M 3VLD 3VLE 3VLF 3WHJ 3WHL
DescriptorProteasome-activating nucleotidase, 26S protease regulatory subunit 6A, ADENOSINE-5'-TRIPHOSPHATE (3 entities in total)
Functional Keywordsfour-helix bundle, proteasome atpase subunit, atp binding, hydrolase
Biological sourcePyrococcus furiosus (yeast)
More
Cellular locationCytoplasm : P33297
Total number of polymer chains8
Total formula weight244243.62
Authors
Satoh, T.,Saeki, Y.,Hiromoto, T.,Wang, Y.-H.,Uekusa, Y.,Yagi, H.,Yoshihara, H.,Yagi-Utsumi, M.,Mizushima, T.,Tanaka, K.,Kato, K. (deposition date: 2013-08-26, release date: 2014-03-26, Last modification date: 2023-11-08)
Primary citationSatoh, T.,Saeki, Y.,Hiromoto, T.,Wang, Y.H.,Uekusa, Y.,Yagi, H.,Yoshihara, H.,Yagi-Utsumi, M.,Mizushima, T.,Tanaka, K.,Kato, K.
Structural basis for proteasome formation controlled by an assembly chaperone nas2.
Structure, 22:731-743, 2014
Cited by
PubMed Abstract: Proteasome formation does not occur due to spontaneous self-organization but results from a highly ordered process assisted by several assembly chaperones. The assembly of the proteasome ATPase subunits is assisted by four client-specific chaperones, of which three have been structurally resolved. Here, we provide the structural basis for the working mechanisms of the last, hereto structurally uncharacterized assembly chaperone, Nas2. We revealed that Nas2 binds to the Rpt5 subunit in a bivalent mode: the N-terminal helical domain of Nas2 masks the Rpt1-interacting surface of Rpt5, whereas its C-terminal PDZ domain caps the C-terminal proteasome-activating motif. Thus, Nas2 operates as a proteasome activation blocker, offering a checkpoint during the formation of the 19S ATPase prior to its docking onto the proteolytic 20S core particle.
PubMed: 24685148
DOI: 10.1016/j.str.2014.02.014
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.6 Å)
Structure validation

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건을2024-11-06부터공개중

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