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Turkey Tail, Yun Zhi · 2017 · Research Support, Non U.S. Gov'T

Low relevance

Molecular Understanding of Laccase Adsorption on Charged Self-Assembled Monolayers.

Trametes versicolor

OncologyImmune support
SpeciesTurkey Tail, Yun Zhi
JournalThe journal of physical chemistry. B
Year2017

Key points

  • Controlling the orientation of laccase on electrodes is crucial for the achievement of fast direct electron transfer
  • It is important to find a short pathway between the T1 copper site of laccase and a substrate during the laccase immobilization
  • In this work, we studied the adsorption orientation and conformation of Trametes versicolor laccase (TvL) on two kinds of charged self-assembled monolayers (SAMs), including NH 2 -SAM and COOH-SAM, by parallel tempering Monte Carlo and all-atom molecular dynamics simulations
  • On the positively charged surface, T1 copper site of TvL is closer to the surface
  • Results show that native structures of TvL are well preserved when it adsorbs on the charged surfaces
  • This work provides atomistic insight into the mechanism of TvL adsorption on charged surface and is helpful for the design and development of laccase-based electrodes

Metadata-grounded summary

Citation abstract

Controlling the orientation of laccase on electrodes is crucial for the achievement of fast direct electron transfer. It is important to find a short pathway between the T1 copper site of laccase and a substrate during the laccase immobilization. In this work, we studied the adsorption orientation and conformation of Trametes versicolor laccase (TvL) on two kinds of charged self-assembled monolayers (SAMs), including NH 2 -SAM and COOH-SAM, by parallel tempering Monte Carlo and all-atom molecular dynamics simulations. TvL adsorbs on positively and negatively charged surface with "end-on" and "lying" orientation, respectively. On the positively charged surface, T1 copper site of TvL is closer to the surface. The orientation of TvL on positively charged surface is narrower than that on negatively charged surface. Thus, the positively charged surface is more conducive to the immobilization of TvL. The conformational changes of TvL on the charged surfaces are analyzed by RMSD, superimposed structures, dipole moment, gyration radius, and eccentricity. Results show that native structures of TvL are well preserved when it adsorbs on the charged surfaces. This work provides atomistic insight into the mechanism of TvL adsorption on charged surface and is helpful for the design and development of laccase-based electrodes.

Citation

Liu J, Xie Y, Peng C, Yu G, Zhou J (2017). Molecular Understanding of Laccase Adsorption on Charged Self-Assembled Monolayers. The journal of physical chemistry. B https://doi.org/10.1021/acs.jpcb.7b08738 PMID: 29096059

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