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Assembly of a 20-nm Protein Cage by Escherichia coli 2-Hydroxypentadienoic Acid Hydratase
Authors:M.G. Montgomery  A.R. Coker  S.P. Wood
Affiliation:1 Centre for Amyloidosis and Acute Phase Proteins, Division of Medicine, UCL Medical School, Royal Free Campus, Rowland Hill Street, London NW3 2PF, UK
2 MRC National Institute for Medical Research, The Ridgeway, Mill Hill, London NW7 1AA, UK
Abstract:
The pentameric Escherichia coli enzyme 2-hydroxypentadienoic acid hydratase assembles to form a 20-nm-diameter particle comprising 60 protein subunits, arranged with 532 symmetry when crystallised at low pH in the presence of phosphate or sulphate ions. The particles form rapidly and are stable in solution during gel filtration at low pH. They are probably formed through trimers of pentamers, which are stabilised by the interaction of two phosphate ions with residues of the N-terminal domains of subunits at the 3-fold axis. Once the particles are formed at high concentrations of phosphate (or sulphate), they remain stable in solution at 20-fold lower concentrations of the anion. Guest molecules can be trapped within the hollow protein shell during assembly. The C-termini of the subunits are freely accessible on the surface of the protein cage and thus are ideal sites for addition of affinity tags or other modifications. These particles offer a convenient model system for studying the assembly of large symmetrical structures and a novel protein nanoparticle for encapsulation and cargo delivery.
Keywords:MhpD, 2-hydroxypentadienoic acid hydratase   HPD, 2-hydroxypenta-2,4-dienoic acid   PDB, Protein Data Bank   HpcG, 2-oxohept-3-ene-1,7-dioate hydratase   SEC-MALLS, size-exclusion chromatography-multiangle laser light scattering   NTD, N-terminal domain   CTD, C-terminal domain   CA, capsid protein   4-OD, 4-oxalocrotonate decarboxylase   CPK, Corey, Pauling and Koltun
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