Biological catalysts (enzymes) speed up reactions by many orders of magnitude using fundamental physical processes to increase chemical reactivity. Hydrogen tunnelling has increasingly been found to contribute to enzyme reactions at room temperature1. Tunnelling is the phenomenon by which a particle transfers through a reaction barrier as a result of its wave-like property1–3. In reactions involving small molecules, the relative importance of tunnelling increases as the temperature is reduced4.We have now investigated whether hydrogen tunnelling occurs at elevated temperatures in a biological system that functions physiologically under such conditions. Using a thermophilic alcohol dehydrogenase (ADH), we find that hydrogen tunnelling makes a significant contribution at 65 8C; this is analogous to previous findings with mesophilic ADH at 25 8C (ref. 5). Contrary to predictions for tunnelling through a rigid barrier, the tunnelling with the thermophilic ADH decreases at and below room temperature. These findings provide experimental evidence for a role of thermally excited enzyme fluctuations in modulating enzyme catalysed bond cleavage.

Enzyme dynamics and hydrogen tunneling in a thermophilic alcohol dehydrogenase / Kohen, A.; Cannio, R.; Bartolucci, Simonetta; Klinman, J. P.. - In: NATURE. - ISSN 0028-0836. - STAMPA. - 399:(1999), pp. 496-499. [10.1038/20981]

Enzyme dynamics and hydrogen tunneling in a thermophilic alcohol dehydrogenase.

BARTOLUCCI, SIMONETTA;
1999

Abstract

Biological catalysts (enzymes) speed up reactions by many orders of magnitude using fundamental physical processes to increase chemical reactivity. Hydrogen tunnelling has increasingly been found to contribute to enzyme reactions at room temperature1. Tunnelling is the phenomenon by which a particle transfers through a reaction barrier as a result of its wave-like property1–3. In reactions involving small molecules, the relative importance of tunnelling increases as the temperature is reduced4.We have now investigated whether hydrogen tunnelling occurs at elevated temperatures in a biological system that functions physiologically under such conditions. Using a thermophilic alcohol dehydrogenase (ADH), we find that hydrogen tunnelling makes a significant contribution at 65 8C; this is analogous to previous findings with mesophilic ADH at 25 8C (ref. 5). Contrary to predictions for tunnelling through a rigid barrier, the tunnelling with the thermophilic ADH decreases at and below room temperature. These findings provide experimental evidence for a role of thermally excited enzyme fluctuations in modulating enzyme catalysed bond cleavage.
1999
Enzyme dynamics and hydrogen tunneling in a thermophilic alcohol dehydrogenase / Kohen, A.; Cannio, R.; Bartolucci, Simonetta; Klinman, J. P.. - In: NATURE. - ISSN 0028-0836. - STAMPA. - 399:(1999), pp. 496-499. [10.1038/20981]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/132245
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