Publikation:

Synthesis of Nanophase Iron Oxide in Lumazine Synthase Capsids

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2001

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Shenton, Wayne
Mann, Stephen
Bacher, Adelbert
Fischer, Markus

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Angewandte Chemie International Edition. 2001, 40(2), pp. 442-445. ISSN 1433-7851. eISSN 1521-3773. Available under: doi: 10.1002/1521-3773(20010119)40:2<442::AID-ANIE442>3.0.CO;2-2

Zusammenfassung

An enzyme-based bio-nanoreactor: By acting as a mineralization template, lumazine synthase, a 60-subunit enzyme complex which has a hollow porous shell, can fabricate nanocrystalline iron oxide. Fe ions can permeate the capsid through hydrophilic funnel-shaped channels lined with glutamic acid residues (see picture) and become encapsulated in the cavity as FeIII oxide. The capsid increases in size from 15 to 30 nm in diameter through formation of a higher order structure as the concentration of FeIII increases.

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540 Chemie

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ISO 690SHENTON, Wayne, Stephen MANN, Helmut CÖLFEN, Adelbert BACHER, Markus FISCHER, 2001. Synthesis of Nanophase Iron Oxide in Lumazine Synthase Capsids. In: Angewandte Chemie International Edition. 2001, 40(2), pp. 442-445. ISSN 1433-7851. eISSN 1521-3773. Available under: doi: 10.1002/1521-3773(20010119)40:2<442::AID-ANIE442>3.0.CO;2-2
BibTex
@article{Shenton2001-01-19Synth-40524,
  year={2001},
  doi={10.1002/1521-3773(20010119)40:2<442::AID-ANIE442>3.0.CO;2-2},
  title={Synthesis of Nanophase Iron Oxide in Lumazine Synthase Capsids},
  number={2},
  volume={40},
  issn={1433-7851},
  journal={Angewandte Chemie International Edition},
  pages={442--445},
  author={Shenton, Wayne and Mann, Stephen and Cölfen, Helmut and Bacher, Adelbert and Fischer, Markus}
}
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    <dcterms:abstract xml:lang="eng">An enzyme-based bio-nanoreactor: By acting as a mineralization template, lumazine synthase, a 60-subunit enzyme complex which has a hollow porous shell, can fabricate nanocrystalline iron oxide. Fe ions can permeate the capsid through hydrophilic funnel-shaped channels lined with glutamic acid residues (see picture) and become encapsulated in the cavity as Fe&lt;sup&gt;III&lt;/sup&gt; oxide. The capsid increases in size from 15 to 30 nm in diameter through formation of a higher order structure as the concentration of Fe&lt;sup&gt;III&lt;/sup&gt; increases.</dcterms:abstract>
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