Critical role of tyrosine-20 in formation of gold nanoclusters within lysozyme: a molecular dynamics study
Lysozyme is one of the most commonly used proteins for encapsulating gold nanoclusters, yielding Ly-AuNC complexes. While possible applications of Ly-AuNCs in environmental, biological and trace metal sensing in solution have been demonstrated, there is currently a poor understanding of the physical...
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Veröffentlicht in: | Physical chemistry chemical physics : PCCP 2019-02, Vol.21 (9), p.497-4911 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Lysozyme is one of the most commonly used proteins for encapsulating gold nanoclusters, yielding Ly-AuNC complexes. While possible applications of Ly-AuNCs in environmental, biological and trace metal sensing in solution have been demonstrated, there is currently a poor understanding of the physical characteristics of the Ly-AuNC complex. In this study we have employed fully atomistic molecular dynamics simulations to gain an understanding of the formation of Au clusters within the protein. It was found that in order to form AuNCs in the simulations, an approach of targeted insertion of Au atoms at a critical surface residue was needed. Tyrosine is known to be crucial for the reduction of Au salts experimentally, and our simulations showed that Tyr20 is the key residue for the formation of an AuNC beneath the protein surface in the α-helical domain. It is hoped these observations will aid future improvements and modification of Ly-AuNCs
via
alterations of the alpha-helix domain or Tyr20.
Only gold atom initial reaction with Tyr20 results in the formation of gold nanoclusters within lysozyme. |
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ISSN: | 1463-9076 1463-9084 |
DOI: | 10.1039/c8cp06374e |