Mycobacterium tuberculosis chaperonin 10 heptamers self-associate through their biologically active loops
Mycobacterium tuberculosis chaperonin 10 heptamers self-associate through their biologically active loops
The crystal structure of Mycobacterium tuberculosis chaperonin 10 (cpn10Mt) has been determined to a resolution of 2.8 Å. Two dome-shaped cpn10Mt heptamers complex through loops at their bases to form a tetradecamer with 72 symmetry and a spherical cage-like structure. The hollow interior enclosed by the tetradecamer is lined with hydrophilic residues and has dimensions of 30 Å perpendicular to and 60 Å along the sevenfold axis. Tetradecameric cpn10Mt has also been observed in solution by dynamic light scattering. Through its base loop sequence cpn10Mt is known to be the agent in the bacterium responsible for bone resorption and for the contribution towards its strong T-cell immunogenicity. Superimposition of the cpn10Mt sequences 26 to 32 and 66 to 72 and E. coli GroES 25 to 31 associated with bone resorption activity shows them to have similar conformations and structural features, suggesting that there may be a common receptor for the bone resorption sequences. The base loops of cpn10s in general also attach to the corresponding chaperonin 60 (cpn60) to enclose unfolded protein and to facilitate its correct folding in vivo. Electron density corresponding to a partially disordered protein subunit appears encapsulated within the interior dome cavity of each heptamer. This suggests that the binding of substrates to cpn10 is possible in the absence of cpn60.
4172-4185
Roberts, M.M.
12a654b2-533e-4cbc-a579-9719993cfaee
Coker, A.R.
0a992f86-46af-48c9-be7b-7d3e215cc158
Fossati, G.
c53382ce-0504-4e7e-9a04-1fbc8a3f5677
Mascagni, P.
3afbb212-88ce-414f-a148-5bba6e63fbbf
Coates, A.R.M.
c60f45be-2ea0-4157-9362-c51275591bf6
Wood, S.P.
430faabf-7f5c-4cf6-9bcc-5955f5e09566
July 2003
Roberts, M.M.
12a654b2-533e-4cbc-a579-9719993cfaee
Coker, A.R.
0a992f86-46af-48c9-be7b-7d3e215cc158
Fossati, G.
c53382ce-0504-4e7e-9a04-1fbc8a3f5677
Mascagni, P.
3afbb212-88ce-414f-a148-5bba6e63fbbf
Coates, A.R.M.
c60f45be-2ea0-4157-9362-c51275591bf6
Wood, S.P.
430faabf-7f5c-4cf6-9bcc-5955f5e09566
Roberts, M.M., Coker, A.R., Fossati, G., Mascagni, P., Coates, A.R.M. and Wood, S.P.
(2003)
Mycobacterium tuberculosis chaperonin 10 heptamers self-associate through their biologically active loops.
Journal of Bacteriology, 185 (14), .
(doi:10.1128/JB.185.14.4172–4185.2003).
Abstract
The crystal structure of Mycobacterium tuberculosis chaperonin 10 (cpn10Mt) has been determined to a resolution of 2.8 Å. Two dome-shaped cpn10Mt heptamers complex through loops at their bases to form a tetradecamer with 72 symmetry and a spherical cage-like structure. The hollow interior enclosed by the tetradecamer is lined with hydrophilic residues and has dimensions of 30 Å perpendicular to and 60 Å along the sevenfold axis. Tetradecameric cpn10Mt has also been observed in solution by dynamic light scattering. Through its base loop sequence cpn10Mt is known to be the agent in the bacterium responsible for bone resorption and for the contribution towards its strong T-cell immunogenicity. Superimposition of the cpn10Mt sequences 26 to 32 and 66 to 72 and E. coli GroES 25 to 31 associated with bone resorption activity shows them to have similar conformations and structural features, suggesting that there may be a common receptor for the bone resorption sequences. The base loops of cpn10s in general also attach to the corresponding chaperonin 60 (cpn60) to enclose unfolded protein and to facilitate its correct folding in vivo. Electron density corresponding to a partially disordered protein subunit appears encapsulated within the interior dome cavity of each heptamer. This suggests that the binding of substrates to cpn10 is possible in the absence of cpn60.
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Submitted date: 3 February 2003
Published date: July 2003
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Local EPrints ID: 24095
URI: http://eprints.soton.ac.uk/id/eprint/24095
ISSN: 0021-9193
PURE UUID: aa0a1200-5d98-48e6-a92f-6f8b8b401c04
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Date deposited: 22 Mar 2006
Last modified: 15 Mar 2024 06:52
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Author:
M.M. Roberts
Author:
A.R. Coker
Author:
G. Fossati
Author:
P. Mascagni
Author:
A.R.M. Coates
Author:
S.P. Wood
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