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Number of items: 4.

donor-acceptor distance

Pudney, Christopher R., McGrory, Tom, Lafite, Pierre, Pang, Jiayun ORCID: 0000-0003-0689-8440 , Hay, Sam, Leys, David, Sutcliffe, Michael J. and Scrutton, Nigel S. (2009) Parallel pathways and free-energy landscapes for enzymatic hydride transfer probed by hydrostatic pressure. ChemBioChem, 10 (8). pp. 1379-1384. ISSN 1439-4227 (Print), 1439-7633 (Online) (doi:https://doi.org/10.1002/cbic.200900071)

hydride transfer

Pudney, Christopher R., McGrory, Tom, Lafite, Pierre, Pang, Jiayun ORCID: 0000-0003-0689-8440 , Hay, Sam, Leys, David, Sutcliffe, Michael J. and Scrutton, Nigel S. (2009) Parallel pathways and free-energy landscapes for enzymatic hydride transfer probed by hydrostatic pressure. ChemBioChem, 10 (8). pp. 1379-1384. ISSN 1439-4227 (Print), 1439-7633 (Online) (doi:https://doi.org/10.1002/cbic.200900071)

hydrostatic pressure

Pudney, Christopher R., McGrory, Tom, Lafite, Pierre, Pang, Jiayun ORCID: 0000-0003-0689-8440 , Hay, Sam, Leys, David, Sutcliffe, Michael J. and Scrutton, Nigel S. (2009) Parallel pathways and free-energy landscapes for enzymatic hydride transfer probed by hydrostatic pressure. ChemBioChem, 10 (8). pp. 1379-1384. ISSN 1439-4227 (Print), 1439-7633 (Online) (doi:https://doi.org/10.1002/cbic.200900071)

MD simulations

Pudney, Christopher R., McGrory, Tom, Lafite, Pierre, Pang, Jiayun ORCID: 0000-0003-0689-8440 , Hay, Sam, Leys, David, Sutcliffe, Michael J. and Scrutton, Nigel S. (2009) Parallel pathways and free-energy landscapes for enzymatic hydride transfer probed by hydrostatic pressure. ChemBioChem, 10 (8). pp. 1379-1384. ISSN 1439-4227 (Print), 1439-7633 (Online) (doi:https://doi.org/10.1002/cbic.200900071)

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