Bacterial systems are being extensively studied and modified for energy, sensors, and industrial chemistry; yet, their molecular scale structure and activity are poorly understood. Designing efficient bioengineered bacteria requires cellular understanding of enzyme expression and activity. An atomic force microscope (AFM) was modified to detect and analyze the activity of redox active enzymes expressed on the surface of <i>E. coli</i>. An insulated gold-coated metal microwire with only the tip conducting was used as an AFM cantilever and a working electrode in a three-electrode electrochemical cell. Bacteria were engineered such that alcohol dehydrogenase II (ADHII) was surface displayed. A quinone, an electron transfer mediator, was covale...
Oxidoreductase enzymes catalyze single- or multi-electron reduction/oxidation reactions of small mol...
Biological electron transfer is fundamental to life on earth. Photosynthesis, respiration and many o...
Living organisms are characterized by the ability to process energy (all release heat). Redox reacti...
Bacterial systems are being extensively studied and modified for energy, sensors, and industrial che...
International audienceRedox enzymes, that catalyze electron transfer reactions in living organisms, ...
International audienceHow the redox proteins and enzymes involved in bioenergetic pathways are organ...
Although they were first discovered more than a century ago, modern enzymatic electrodes used in enz...
An understanding of dynamic processes of proteins on the electrode surface could enhance the efficie...
<div><p>An understanding of dynamic processes of proteins on the electrode surface could enhance the...
Enzymatic fuel cells (EFCs) are bioelectronic devices based on redox enzymes, which convert chemical...
Bioelectrocatalytic systems are based on biological entities, such as enzymes, whole cells, parts of...
2015-06-19Metal‐reducing bacteria gain energy by extracellular electron transfer to external solids,...
This thesis centers around a novel fluorescence based method that allows to monitor the activity of ...
An understanding of dynamic processes of proteins on the electrode surface could enhance the efficie...
Electron Transfer (ET) plays essential roles in crucial biological processes such as cell respiratio...
Oxidoreductase enzymes catalyze single- or multi-electron reduction/oxidation reactions of small mol...
Biological electron transfer is fundamental to life on earth. Photosynthesis, respiration and many o...
Living organisms are characterized by the ability to process energy (all release heat). Redox reacti...
Bacterial systems are being extensively studied and modified for energy, sensors, and industrial che...
International audienceRedox enzymes, that catalyze electron transfer reactions in living organisms, ...
International audienceHow the redox proteins and enzymes involved in bioenergetic pathways are organ...
Although they were first discovered more than a century ago, modern enzymatic electrodes used in enz...
An understanding of dynamic processes of proteins on the electrode surface could enhance the efficie...
<div><p>An understanding of dynamic processes of proteins on the electrode surface could enhance the...
Enzymatic fuel cells (EFCs) are bioelectronic devices based on redox enzymes, which convert chemical...
Bioelectrocatalytic systems are based on biological entities, such as enzymes, whole cells, parts of...
2015-06-19Metal‐reducing bacteria gain energy by extracellular electron transfer to external solids,...
This thesis centers around a novel fluorescence based method that allows to monitor the activity of ...
An understanding of dynamic processes of proteins on the electrode surface could enhance the efficie...
Electron Transfer (ET) plays essential roles in crucial biological processes such as cell respiratio...
Oxidoreductase enzymes catalyze single- or multi-electron reduction/oxidation reactions of small mol...
Biological electron transfer is fundamental to life on earth. Photosynthesis, respiration and many o...
Living organisms are characterized by the ability to process energy (all release heat). Redox reacti...