Massive quantum regions for simulations on bio-nanomaterials: Synthetic ferritin nanocages

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Abstract

QM/MM molecular dynamics simulations on the 4His-ΔC∗ protein cage have been performed using multiple active zones (up to 86 quantum regions). The regulation and nanocage stability exerted by the divalent transition metal ions in the monomer-to-cage conversion have been understood by comparing high level quantum trajectories obtained using Cu2+ and Ni2+ coordination ions.

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Torras, J., & Alemán, C. (2018). Massive quantum regions for simulations on bio-nanomaterials: Synthetic ferritin nanocages. Chemical Communications, 54(17), 2118–2121. https://doi.org/10.1039/c7cc09512k

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