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2C7E

REVISED ATOMIC STRUCTURE FITTING INTO A GROEL(D398A)-ATP7 CRYO-EM MAP (EMD 1047)

Replaces:  1GR6
Summary for 2C7E
Entry DOI10.2210/pdb2c7e/pdb
Related1PF9 1SS8 1SVT 1SX3 1SX4 1XCK
EMDB information1047
Descriptor60 KDA CHAPERONIN, POTASSIUM ION, MAGNESIUM ION, ... (5 entities in total)
Functional Keywordscell cycle, atp-binding, chaperone, chaperonin, d398a, hp60 class, cell division, nucleotide-binding, phosphorylation
Biological sourceESCHERICHIA COLI
Total number of polymer chains14
Total formula weight804631.83
Authors
Ranson, N.A.,Farr, G.W.,Roseman, A.M.,Gowen, B.,Fenton, W.A.,Horwich, A.L.,Saibil, H.R. (deposition date: 2005-11-22, release date: 2006-02-16, Last modification date: 2024-05-08)
Primary citationRanson, N.A.,Farr, G.W.,Roseman, A.M.,Gowen, B.,Fenton, W.A.,Horwich, A.L.,Saibil, H.R.
ATP-Bound States of Groel Captured by Cryo-Electron Microscopy
Cell(Cambridge,Mass.), 107:869-, 2001
Cited by
PubMed Abstract: The chaperonin GroEL drives its protein-folding cycle by cooperatively binding ATP to one of its two rings, priming that ring to become folding-active upon GroES binding, while simultaneously discharging the previous folding chamber from the opposite ring. The GroEL-ATP structure, determined by cryo-EM and atomic structure fitting, shows that the intermediate domains rotate downward, switching their intersubunit salt bridge contacts from substrate binding to ATP binding domains. These observations, together with the effects of ATP binding to a GroEL-GroES-ADP complex, suggest structural models for the ATP-induced reduction in affinity for polypeptide and for cooperativity. The model for cooperativity, based on switching of intersubunit salt bridge interactions around the GroEL ring, may provide general insight into cooperativity in other ring complexes and molecular machines.
PubMed: 11779463
DOI: 10.1016/S0092-8674(01)00617-1
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (14.9 Å)
Structure validation

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