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PDB: 4 results

6EF0
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BU of 6ef0 by Molmil
Yeast 26S proteasome bound to ubiquitinated substrate (1D* motor state)
Descriptor: 26S proteasome regulatory subunit 4 homolog, 26S proteasome regulatory subunit 6A, 26S proteasome regulatory subunit 6B homolog, ...
Authors:de la Pena, A.H, Goodall, E.A, Gates, S.N, Lander, G.C, Martin, A.
Deposit date:2018-08-15
Release date:2018-10-17
Last modified:2024-03-13
Method:ELECTRON MICROSCOPY (4.43 Å)
Cite:Substrate-engaged 26Sproteasome structures reveal mechanisms for ATP-hydrolysis-driven translocation.
Science, 362, 2018
6EF2
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BU of 6ef2 by Molmil
Yeast 26S proteasome bound to ubiquitinated substrate (5T motor state)
Descriptor: 26S proteasome regulatory subunit 4 homolog, 26S proteasome regulatory subunit 6A, 26S proteasome regulatory subunit 6B homolog, ...
Authors:de la Pena, A.H, Goodall, E.A, Gates, S.N, Lander, G.C, Martin, A.
Deposit date:2018-08-15
Release date:2018-10-17
Last modified:2024-03-13
Method:ELECTRON MICROSCOPY (4.27 Å)
Cite:Substrate-engaged 26Sproteasome structures reveal mechanisms for ATP-hydrolysis-driven translocation.
Science, 362, 2018
6EF3
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BU of 6ef3 by Molmil
Yeast 26S proteasome bound to ubiquitinated substrate (4D motor state)
Descriptor: 26S proteasome regulatory subunit 4 homolog, 26S proteasome regulatory subunit 6A, 26S proteasome regulatory subunit 6B homolog, ...
Authors:de la Pena, A.H, Goodall, E.A, Gates, S.N, Lander, G.C, Martin, A.
Deposit date:2018-08-15
Release date:2018-10-17
Last modified:2020-01-08
Method:ELECTRON MICROSCOPY (4.17 Å)
Cite:Substrate-engaged 26Sproteasome structures reveal mechanisms for ATP-hydrolysis-driven translocation.
Science, 362, 2018
6EF1
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BU of 6ef1 by Molmil
Yeast 26S proteasome bound to ubiquitinated substrate (5D motor state)
Descriptor: 26S proteasome regulatory subunit 4 homolog, 26S proteasome regulatory subunit 6A, 26S proteasome regulatory subunit 6B homolog, ...
Authors:de la Pena, A.H, Goodall, E.A, Gates, S.N, Lander, G.C, Martin, A.
Deposit date:2018-08-15
Release date:2018-10-17
Last modified:2024-03-13
Method:ELECTRON MICROSCOPY (4.73 Å)
Cite:Substrate-engaged 26Sproteasome structures reveal mechanisms for ATP-hydrolysis-driven translocation.
Science, 362, 2018

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