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Research articles
Research articles
Peptides-assisted charge transfers in proteins:
relay mechanism and its controllability
Author information
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Center for Modeling &
Simulation Chemistry, Institute of Theoretical Chemistry, Shandong
University, Jinan 250100, China;
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History
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Published |
05 Sep 2010 |
Issue Date |
05 Sep 2010 |
Abstract
This feature article addresses several novel aspects regarding the peptide-mediated charge migrations, including: i) radical exchanges with tunable radical types (σ-radical versus π-radical) and electron-transfer (ET)-channel-tunable cooperative proton-coupled ET (PCET) mechanism, including hydrogen-atom transfer (HAT), single ET-channel PCET, double ET channel PCET, and channel-type-tunable (σ-channel versus π-channel) PCET; ii) hole hopping migration between the active groups in the side-chains and its controllability; iii) hole hopping through stepping-stones via a solvated “hole” form; and iv) electron hopping through positively charged groups as stepping-stones via a solvated electron state. In particular, the controllability of the ET channels (pathways and types) and solvated-“hole”/“electron”-based relay mechanisms are mainly mentioned. Clearly, this is an important addition to the well-documented mechanisms for charge migration in proteins. In view of the complexity of protein charge migration, further exploration on details of the stepping-stone-based relay mechanisms, by considering the properties and structures of the redox active centers, their intercalators, and the real surroundings, is still needed.
Keywords
peptides-assisting charge migration /
hole hopping mechanism /
electron hopping mechanism /
proton-coupled charge transfer /
channel-tunable electron transfer
Cite this article
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Yuxiang BU,.
Peptides-assisted charge transfers in proteins:
relay mechanism and its controllability. Front. Chem. China, 2010, 5(3): 309‒324 https://doi.org/10.1007/s11458-010-0217-2
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