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Modification of Enzyme Activity by Vibrational Strong Coupling of Water.


ABSTRACT: Vibrational strong coupling (VSC) has recently emerged as a completely new tool for influencing chemical reactivity. It harnesses electromagnetic vacuum fluctuations through the creation of hybrid states of light and matter, called polaritonic states, in an optical cavity resonant to a molecular absorption band. Here, we investigate the effect of vibrational strong coupling of water on the enzymatic activity of pepsin, where a water molecule is directly involved in the enzyme's chemical mechanism. We observe an approximately 4.5-fold decrease of the apparent second-order rate constant kcat /Km when coupling the water stretching vibration, whereas no effect was detected for the strong coupling of the bending vibration. The possibility of modifying enzymatic activity by coupling water demonstrates the potential of VSC as a new tool to study biochemical reactivity.

SUBMITTER: Vergauwe RMA 

PROVIDER: S-EPMC6856831 | biostudies-literature | 2019 Oct

REPOSITORIES: biostudies-literature

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Modification of Enzyme Activity by Vibrational Strong Coupling of Water.

Vergauwe Robrecht M A RMA   Thomas Anoop A   Nagarajan Kalaivanan K   Shalabney Atef A   Shalabney Atef A   George Jino J   Chervy Thibault T   Chervy Thibault T   Seidel Marcus M   Devaux Eloïse E   Torbeev Vladimir V   Ebbesen Thomas W TW  

Angewandte Chemie (International ed. in English) 20190917 43


Vibrational strong coupling (VSC) has recently emerged as a completely new tool for influencing chemical reactivity. It harnesses electromagnetic vacuum fluctuations through the creation of hybrid states of light and matter, called polaritonic states, in an optical cavity resonant to a molecular absorption band. Here, we investigate the effect of vibrational strong coupling of water on the enzymatic activity of pepsin, where a water molecule is directly involved in the enzyme's chemical mechanis  ...[more]

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