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Molecular Microbiology|April 20, 2001
Genetic dissection of the roles of chaperones and proteases in protein folding and degradation in the Escherichia coli cytosolT Tomoyasu, A Mogk, H Langen, et al.Nucleic Acids Research|January 24, 1986
The enigma of the gene coding for ribosomal protein S12 in the chloroplasts of NicotianaH Fromm, M Edelman, B Koller, et al.Proceedings of the National Academy of Sciences of the United States of America|November 26, 1999
Sequential mechanism of solubilization and refolding of stable protein aggregates by a bichaperone networkP Goloubinoff, A Mogk, A P Zvi, et al.Plant Molecular Biology|November 26, 2013
Characterization of the photosystem II 32 kDa protein in Synechococcus PCC7942P Goloubinoff, J Brusslan, S S Golden, et al.Nature|December 21, 1989
Reconstitution of active dimeric ribulose bisphosphate carboxylase from an unfoleded state depends on two chaperonin proteins and Mg-ATPP Goloubinoff, J T Christeller, A A Gatenby, et al.Proceedings of the National Academy of Sciences of the United States of America|December 23, 1998
Minimal and optimal mechanisms for GroE-mediated protein foldingA P Ben-Zvi, J Chatellier, A R Fersht, et al.Journal of Molecular Biology|December 22, 2000
From minichaperone to GroEL 3: properties of an active single-ring mutant of GroELJ Chatellier, F Hill, N W Foster, et al.The EMBO Journal|December 22, 1999
Identification of thermolabile Escherichia coli proteins: prevention and reversion of aggregation by DnaK and ClpBA Mogk, T Tomoyasu, P Goloubinoff, et al.Proceedings of the National Academy of Sciences of the United States of America|March 18, 1997
Evidence for a lipochaperonin: association of active protein-folding GroESL oligomers with lipids can stabilize membranes under heat shock conditionsZ Török, I Horváth, P Goloubinoff, et al.Biochemistry|June 19, 1990
Chaperonin-facilitated refolding of ribulosebisphosphate carboxylase and ATP hydrolysis by chaperonin 60 (groEL) are K+ dependentP V Viitanen, T H Lubben, J Reed, et al.Pageof 4