In this work the thermophilic trehalose/maltose-binding protein from Thermococcus litoralis is presented as a probe for the design of a high stable fluorescence biosensor for glucose. In particular, we show the possibility of modulating the protein specificity by changing temperature. In addition to glucose sensing, we also report on the possibility of utilizing odorant-binding proteins as a probe for the development of optical sensors for analytes of environmental interests
The trehalose/maltose-binding protein (MalE1) is one component of trehalose and maltose uptake syste...
Considerable insight has been gained on Periplasmic Binding proteins from E.coli as novel candidates...
AbstractA genetically encoded maltose biosensor was constructed, comprising maltose binding protein ...
In this work the thermophilic trehalose/maltose-binding protein from Thermococcus litoralis is prese...
ABSTRACT: Advancements in biotechnology have allowed for the preparation of designer proteins with a...
WOS: 000325959600003PubMed ID: 24152100Circularly permuted green fluorescent protein (cGFP) was inse...
Advancements in biotechnology have allowed for the preparation of designer proteins with a wide spec...
<p>Biosensors incorporating proteins as molecular recognition elements for analytes are used in clin...
Fluorescent protein biosensors, which exhibit a significant change in fluorescence based on the phys...
In this work, we used fluorescence spectroscopy, molecular dynamics simulation, and Fourier transfor...
Periplasmic binding proteins provide gram-negative bacteria with mechanisms for nutrient uptake and ...
Accurate assignment of protein function from sequence remains a fascinating and difficult challenge....
There is an urgent need to develop technology for continuous in vivo glucose monitoring in subjects ...
We review recent progress in our laboratories towards developing in vivo glucose sensors for diabete...
Proteins possess a broad range of structural and functional properties and, therefore, can be employ...
The trehalose/maltose-binding protein (MalE1) is one component of trehalose and maltose uptake syste...
Considerable insight has been gained on Periplasmic Binding proteins from E.coli as novel candidates...
AbstractA genetically encoded maltose biosensor was constructed, comprising maltose binding protein ...
In this work the thermophilic trehalose/maltose-binding protein from Thermococcus litoralis is prese...
ABSTRACT: Advancements in biotechnology have allowed for the preparation of designer proteins with a...
WOS: 000325959600003PubMed ID: 24152100Circularly permuted green fluorescent protein (cGFP) was inse...
Advancements in biotechnology have allowed for the preparation of designer proteins with a wide spec...
<p>Biosensors incorporating proteins as molecular recognition elements for analytes are used in clin...
Fluorescent protein biosensors, which exhibit a significant change in fluorescence based on the phys...
In this work, we used fluorescence spectroscopy, molecular dynamics simulation, and Fourier transfor...
Periplasmic binding proteins provide gram-negative bacteria with mechanisms for nutrient uptake and ...
Accurate assignment of protein function from sequence remains a fascinating and difficult challenge....
There is an urgent need to develop technology for continuous in vivo glucose monitoring in subjects ...
We review recent progress in our laboratories towards developing in vivo glucose sensors for diabete...
Proteins possess a broad range of structural and functional properties and, therefore, can be employ...
The trehalose/maltose-binding protein (MalE1) is one component of trehalose and maltose uptake syste...
Considerable insight has been gained on Periplasmic Binding proteins from E.coli as novel candidates...
AbstractA genetically encoded maltose biosensor was constructed, comprising maltose binding protein ...