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3ES3

Directing Noble Metal Ion Chemistry within a Designed Ferritin Protein. The Complex with Gold ions. Ferritin H8-H9x Mutant

Summary for 3ES3
Entry DOI10.2210/pdb3es3/pdb
Related2Z6M 3ERZ
DescriptorFerritin heavy chain, GOLD ION, CALCIUM ION, ... (4 entities in total)
Functional Keywordsnanoparticle synthesis, gold ions, ferritin, mutant, iron, iron storage, metal-binding, oxidoreductase, phosphoprotein
Biological sourceHomo sapiens (human)
Total number of polymer chains1
Total formula weight21991.52
Authors
Di Costanzo, L.,Christianson, D.W. (deposition date: 2008-10-03, release date: 2008-10-21, Last modification date: 2023-09-06)
Primary citationButts, C.A.,Swift, J.,Kang, S.G.,Di Costanzo, L.,Christianson, D.W.,Saven, J.G.,Dmochowski, I.J.
Directing noble metal ion chemistry within a designed ferritin protein.
Biochemistry, 47:12729-12739, 2008
Cited by
PubMed Abstract: Human H ferritin (HuHF) assembles from 24 four-helix bundles to form an approximately 500 kDa protein with an 8 nm internal cavity. HuHF provides a useful model for studying the transport of metal ions in solution to buried reaction sites in proteins. In this study, HuHF was redesigned to facilitate noble metal ion (Au(3+), Ag(+)) binding, reduction, and nanoparticle formation within the cavity. Computationally determined amino acid substitutions were targeted at four external and four internal surface sites. A variant with a total of 96 cysteines and histidines removed from the exterior surface and 96 non-native cysteines added to the interior surface retained wild-type stability and structure, as confirmed by X-ray crystallography, and promoted the formation of silver or gold nanoparticles within the protein cavity. Crystallographic studies with HuHF variants provide insight into how ferritins control access of metal ions to interior residues that perform chemistry.
PubMed: 18991401
DOI: 10.1021/bi8016735
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.795 Å)
Structure validation

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