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Assessment of substrate-stabilizing factors for DnaK on the folding of aggregation-prone proteins

Cited 13 time in Web of Science Cited 13 time in Scopus
Authors

Ryu, Kisun; Kim, Chul Woo; Kim, Byung Hee; Han, Kyoung Sim; Kim, Kyun-Hwan; Choi, Seong Il; Seong, Baik L.

Issue Date
2008-06-12
Publisher
Elsevier
Citation
Biochem. Biophys. Res. Commun. 373 (2008) 74-79
Keywords
Hydrophobic interactionsMolecular chaperonesAggregationDnaKSubstrate stabilization
Abstract
Hydrophobic interactions between molecular chaperones and their nonnative substrates have been believed to be mainly responsible for both substrate recognition and stabilization against aggregation. However, the hydrophobic contact area between DnaK and its substrate proteins is very limited and other factors of DnaK for the substrate stabilization could not be excluded. Here, we covalently fused DnaK to the N-termini of aggregation-prone proteins in vivo. In the context of a fusion protein, DnaK has the ability to efficiently solubilize its linked proteins. The point mutation of the residue of DnaK critical for the substrate recognition and the deletion of the C-terminal substrate-binding domain did not have significant effect on the solubilizing ability of DnaK. The results imply that other factors of DnaK, distinct from the hydrophobic shielding of folding intermediates, also contributes to stabilization of its noncovalently bound substrates against aggregation. Elucidation of the nature of these factors would further enhance our understanding of the substrate stabilization of DnaK for expedited protein folding.
ISSN
0006-291X
Language
English
URI
https://hdl.handle.net/10371/3703
DOI
https://doi.org/10.1016/j.bbrc.2008.05.186
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